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description Publicationkeyboard_double_arrow_right Article , Journal 2021Embargo end date: 23 Feb 2021 Switzerland, United StatesPublisher:Springer Science and Business Media LLC Funded by:NSF | Collaborative Research: ..., NSF | Belmont Forum Collaborati...NSF| Collaborative Research: Combining NEON and remotely sensed habitats to determine climate impacts on community dynamics ,NSF| Belmont Forum Collaborative Research: Scenarios of Biodiversity and Ecosystem ServiceAuthors: Orrin Myers; Georges Kunstler;Jalene M. LaMontagne;
Jalene M. LaMontagne
Jalene M. LaMontagne in OpenAIREJames A. Lutz;
+60 AuthorsJames A. Lutz
James A. Lutz in OpenAIREOrrin Myers; Georges Kunstler;Jalene M. LaMontagne;
Jalene M. LaMontagne
Jalene M. LaMontagne in OpenAIREJames A. Lutz;
James A. Lutz
James A. Lutz in OpenAIREIstem Fer;
Jordan Luongo;Istem Fer
Istem Fer in OpenAIRERenata Poulton-Kamakura;
Renata Poulton-Kamakura
Renata Poulton-Kamakura in OpenAIREJanneke HilleRisLambers;
Yassine Messaoud; Sam Pearse;Janneke HilleRisLambers
Janneke HilleRisLambers in OpenAIREGregory S. Gilbert;
Natalie L. Cleavitt; C. D. Reid; Inés Ibáñez; Michael A. Steele; Miranda D. Redmond; Susan L. Cohen; Jerry F. Franklin; Benoît Courbaud; Don C. Bragg; Ethan Ready; C. Lane Scher; Andreas P. Wion; William H. Schlesinger;Gregory S. Gilbert
Gregory S. Gilbert in OpenAIREShubhi Sharma;
Robert R. Parmenter; Amanda M. Schwantes;Shubhi Sharma
Shubhi Sharma in OpenAIREScott M. Pearson;
Thomas G. Whitham;Scott M. Pearson
Scott M. Pearson in OpenAIREThomas T. Veblen;
Thomas T. Veblen
Thomas T. Veblen in OpenAIREChristopher L. Kilner;
Christopher L. Kilner
Christopher L. Kilner in OpenAIRESamantha Sutton;
Chase L. Nuñez;Samantha Sutton
Samantha Sutton in OpenAIREEmily V. Moran;
Emily V. Moran
Emily V. Moran in OpenAIRENathan L. Stephenson;
Nathan L. Stephenson
Nathan L. Stephenson in OpenAIREAdrian J. Das;
Jennifer J. Swenson; Cathryn H. Greenberg; Roman Zlotin;Adrian J. Das
Adrian J. Das in OpenAIREJames S. Clark;
James S. Clark;James S. Clark
James S. Clark in OpenAIREWalter D. Koenig;
Robert A. Andrus; Amy V. Whipple;Walter D. Koenig
Walter D. Koenig in OpenAIREJill F. Johnstone;
Eliot J. B. McIntire;Jill F. Johnstone
Jill F. Johnstone in OpenAIREKyle C. Rodman;
Timothy J. Fahey; Erin Shanahan; Jonathan Myers; Johannes M. H. Knops; Catherine A. Gehring; Diana Macias;Kyle C. Rodman
Kyle C. Rodman in OpenAIREQinfeng Guo;
Qinfeng Guo
Qinfeng Guo in OpenAIREChristopher M. Moore;
Christopher M. Moore
Christopher M. Moore in OpenAIREMichael Dietze;
Mélaine Aubry-Kientz; Dale G. Brockway;Michael Dietze
Michael Dietze in OpenAIREMichał Bogdziewicz;
Michał Bogdziewicz
Michał Bogdziewicz in OpenAIREKai Zhu;
Kai Zhu
Kai Zhu in OpenAIREYves Bergeron;
Robert Daley;Yves Bergeron
Yves Bergeron in OpenAIREMargaret Swift;
Kristin Legg;Margaret Swift
Margaret Swift in OpenAIREpmc: PMC7902660
AbstractIndirect climate effects on tree fecundity that come through variation in size and growth (climate-condition interactions) are not currently part of models used to predict future forests. Trends in species abundances predicted from meta-analyses and species distribution models will be misleading if they depend on the conditions of individuals. Here we find from a synthesis of tree species in North America that climate-condition interactions dominate responses through two pathways, i) effects of growth that depend on climate, and ii) effects of climate that depend on tree size. Because tree fecundity first increases and then declines with size, climate change that stimulates growth promotes a shift of small trees to more fecund sizes, but the opposite can be true for large sizes. Change the depresses growth also affects fecundity. We find a biogeographic divide, with these interactions reducing fecundity in the West and increasing it in the East. Continental-scale responses of these forests are thus driven largely by indirect effects, recommending management for climate change that considers multiple demographic rates.
Nature Communication... arrow_drop_down add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-020-20836-3&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 59 citations 59 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Nature Communication... arrow_drop_down add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-020-20836-3&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2017 Qatar, Norway, United Kingdom, Denmark, Qatar, United Kingdom, United KingdomPublisher:Springer Science and Business Media LLC Funded by:NSERC, UKRI | The role of Arctic sea ic..., AKA | RESILIENCE IN SOCIAL-ECOL... +6 projectsNSERC ,UKRI| The role of Arctic sea ice in climatic and ecological processes ,AKA| RESILIENCE IN SOCIAL-ECOLOGICAL SYSTEMS IN IN NORTHWEST EURASIA (RISES) ,RCN| Understanding ecosystem functionality, expansion and retreat of species in the Scandinavian mountain tundra under multiple drivers of change ,UKRI| Permafrost catchments in transition: hydrological controls on carbon cycling and greenhouse gas budgets ,AKA| Consequences of climate-driven changes in background below- and aboveground herbivory for tree growth, forest productivity, and ecosystem functions ,[no funder available] ,EC| INTERACT ,NWO| Feedbacks of vegetation change to permafrost thawing, soil nutrient availability and carbon storage in tundra ecosystemsAuthors: Signe Normand; Maite Gartzia;Philip A. Wookey;
Maja K. Sundqvist; +61 AuthorsPhilip A. Wookey
Philip A. Wookey in OpenAIRESigne Normand; Maite Gartzia;Philip A. Wookey;
Maja K. Sundqvist; Maja K. Sundqvist;Philip A. Wookey
Philip A. Wookey in OpenAIREMartin Wilmking;
Martin Wilmking
Martin Wilmking in OpenAIREJuha M. Alatalo;
Alexander Sokolov; James D. M. Speed; Anna Skoracka;Juha M. Alatalo
Juha M. Alatalo in OpenAIREDagmar Egelkraut;
Lee Ann Fishback; Ashley L. Asmus;Dagmar Egelkraut
Dagmar Egelkraut in OpenAIREC. Guillermo Bueno;
Timo Kumpula; Dorothee Ehrich;C. Guillermo Bueno
C. Guillermo Bueno in OpenAIREAgata Buchwal;
Agata Buchwal;Agata Buchwal
Agata Buchwal in OpenAIREElina Kaarlejärvi;
Elina Kaarlejärvi; Toke T. Høye; Martin Hallinger; Vitali Zverev; Milena Holmgren;Elina Kaarlejärvi
Elina Kaarlejärvi in OpenAIREMariska te Beest;
Mariska te Beest
Mariska te Beest in OpenAIREEeva M. Soininen;
Eeva M. Soininen
Eeva M. Soininen in OpenAIREJean-Pierre Tremblay;
Jean-Pierre Tremblay
Jean-Pierre Tremblay in OpenAIREKari Anne Bråthen;
Sergey A. Uvarov; Natalya A. Sokolova; Elin Lindén; Judith Sitters; Judith Sitters;Kari Anne Bråthen
Kari Anne Bråthen in OpenAIREIsla H. Myers-Smith;
Johan Olofsson; Katherine S. Christie; Eric Post; Cynthia Y.M.J.G. Lange;Isla H. Myers-Smith
Isla H. Myers-Smith in OpenAIREEsther Lévesque;
Esther Lévesque
Esther Lévesque in OpenAIREIngibjörg S. Jónsdóttir;
Ingibjörg S. Jónsdóttir; Juul Limpens; Paul Grogan; Yulia V. Denisova;Ingibjörg S. Jónsdóttir
Ingibjörg S. Jónsdóttir in OpenAIRETommi Andersson;
Marc Macias-Fauria;Tommi Andersson
Tommi Andersson in OpenAIREDavid A. Watts;
David A. Watts
David A. Watts in OpenAIREHeike Zimmermann;
Adrian V. Rocha;Heike Zimmermann
Heike Zimmermann in OpenAIREDiane C. Huebner;
Diane C. Huebner
Diane C. Huebner in OpenAIREJulia Boike;
Julia Boike
Julia Boike in OpenAIREDavid S. Hik;
Otso Suominen; Christine Urbanowicz;David S. Hik
David S. Hik in OpenAIREIsabel C. Barrio;
Isabel C. Barrio
Isabel C. Barrio in OpenAIRENikita Tananaev;
Annika Hofgaard;Nikita Tananaev
Nikita Tananaev in OpenAIREJelena Lange;
Jelena Lange
Jelena Lange in OpenAIREBruce C. Forbes;
John P. Bryant; Lorna E. Street; Monique M. P. D. Heijmans; Mikhail V. Kozlov;Bruce C. Forbes
Bruce C. Forbes in OpenAIREErik J. van Nieukerken;
Erik J. van Nieukerken
Erik J. van Nieukerken in OpenAIRENiels Martin Schmidt;
Niels Martin Schmidt
Niels Martin Schmidt in OpenAIREChronic, low intensity herbivory by invertebrates, termed background herbivory, has been understudied in tundra, yet its impacts are likely to increase in a warmer Arctic. The magnitude of these changes is however hard to predict as we know little about the drivers of current levels of invertebrate herbivory in tundra. We assessed the intensity of invertebrate herbivory on a common tundra plant, the dwarf birch (Betula glandulosa-nana complex), and investigated its relationship to latitude and climate across the tundra biome. Leaf damage by defoliating, mining and gall-forming invertebrates was measured in samples collected from 192 sites at 56 locations. Our results indicate that invertebrate herbivory is nearly ubiquitous across the tundra biome but occurs at low intensity. On average, invertebrates damaged 11.2% of the leaves and removed 1.4% of total leaf area. The damage was mainly caused by external leaf feeders, and most damaged leaves were only slightly affected (12% leaf area lost). Foliar damage was consistently positively correlated with mid-summer (July) temperature and, to a lesser extent, precipitation in the year of data collection, irrespective of latitude. Our models predict that, on average, foliar losses to invertebrates on dwarf birch are likely to increase by 6--7% over the current levels with a 1 textdegreeC increase in summer temperatures. Our results show that invertebrate herbivory on dwarf birch is small in magnitude but given its prevalence and dependence on climatic variables, background invertebrate herbivory should be included in predictions of climate change impacts on tundra ecosystems.
CORE arrow_drop_down University of Copenhagen: ResearchArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)University of Stirling: Stirling Digital Research RepositoryArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)Qatar University: QU Institutional RepositoryArticleData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1007/s00300-017-2139-7&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 49 citations 49 popularity Top 10% influence Top 10% impulse Top 10% Powered by BIP!
download 63download downloads 63 Powered bymore_vert CORE arrow_drop_down University of Copenhagen: ResearchArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)University of Stirling: Stirling Digital Research RepositoryArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)Qatar University: QU Institutional RepositoryArticleData sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1007/s00300-017-2139-7&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article 2023 New Zealand, Denmark, Spain, United States, New ZealandPublisher:American Association for the Advancement of Science (AAAS) Authors:Wu-Bing Xu;
Wu-Bing Xu
Wu-Bing Xu in OpenAIREWen-Yong Guo;
Wen-Yong Guo
Wen-Yong Guo in OpenAIREJosep M. Serra-Diaz;
Josep M. Serra-Diaz
Josep M. Serra-Diaz in OpenAIREFranziska Schrodt;
+55 AuthorsFranziska Schrodt
Franziska Schrodt in OpenAIREWu-Bing Xu;
Wu-Bing Xu
Wu-Bing Xu in OpenAIREWen-Yong Guo;
Wen-Yong Guo
Wen-Yong Guo in OpenAIREJosep M. Serra-Diaz;
Josep M. Serra-Diaz
Josep M. Serra-Diaz in OpenAIREFranziska Schrodt;
Franziska Schrodt
Franziska Schrodt in OpenAIREWolf L. Eiserhardt;
Wolf L. Eiserhardt
Wolf L. Eiserhardt in OpenAIREBrian J. Enquist;
Brian J. Enquist
Brian J. Enquist in OpenAIREBrian S. Maitner;
Cory Merow; Cyrille Violle;Brian S. Maitner
Brian S. Maitner in OpenAIREMadhur Anand;
Madhur Anand
Madhur Anand in OpenAIREMichaël Belluau;
Michaël Belluau
Michaël Belluau in OpenAIREHans Henrik Bruun;
Hans Henrik Bruun
Hans Henrik Bruun in OpenAIREChaeho Byun;
Chaeho Byun
Chaeho Byun in OpenAIREJane A. Catford;
Jane A. Catford
Jane A. Catford in OpenAIREBruno E. L. Cerabolini;
Bruno E. L. Cerabolini
Bruno E. L. Cerabolini in OpenAIREEduardo Chacón-Madrigal;
Eduardo Chacón-Madrigal
Eduardo Chacón-Madrigal in OpenAIREDaniela Ciccarelli;
Daniela Ciccarelli
Daniela Ciccarelli in OpenAIREJ. Hans C. Cornelissen;
Anh Tuan Dang-Le;J. Hans C. Cornelissen
J. Hans C. Cornelissen in OpenAIREAngel de Frutos;
Angel de Frutos
Angel de Frutos in OpenAIREArildo S. Dias;
Arildo S. Dias
Arildo S. Dias in OpenAIREAelton B. Giroldo;
Aelton B. Giroldo
Aelton B. Giroldo in OpenAIREAlvaro G. Gutiérrez;
Alvaro G. Gutiérrez
Alvaro G. Gutiérrez in OpenAIREWesley Hattingh;
Wesley Hattingh
Wesley Hattingh in OpenAIRETianhua He;
Tianhua He
Tianhua He in OpenAIREPeter Hietz;
Peter Hietz
Peter Hietz in OpenAIRENate Hough-Snee;
Nate Hough-Snee
Nate Hough-Snee in OpenAIRESteven Jansen;
Steven Jansen
Steven Jansen in OpenAIREJens Kattge;
Benjamin Komac;Jens Kattge
Jens Kattge in OpenAIRENathan J. B. Kraft;
Nathan J. B. Kraft
Nathan J. B. Kraft in OpenAIREKoen Kramer;
Koen Kramer
Koen Kramer in OpenAIRESandra Lavorel;
Sandra Lavorel
Sandra Lavorel in OpenAIREChristopher H. Lusk;
Christopher H. Lusk
Christopher H. Lusk in OpenAIREAdam R. Martin;
Adam R. Martin
Adam R. Martin in OpenAIREKe-Ping Ma;
Ke-Ping Ma
Ke-Ping Ma in OpenAIREMaurizio Mencuccini;
Maurizio Mencuccini
Maurizio Mencuccini in OpenAIRESean T. Michaletz;
Vanessa Minden;Sean T. Michaletz
Sean T. Michaletz in OpenAIREAkira S. Mori;
Akira S. Mori
Akira S. Mori in OpenAIREÜlo Niinemets;
Yusuke Onoda;Ülo Niinemets
Ülo Niinemets in OpenAIRERenske E. Onstein;
Renske E. Onstein
Renske E. Onstein in OpenAIREJosep Peñuelas;
Josep Peñuelas
Josep Peñuelas in OpenAIREValério D. Pillar;
Valério D. Pillar
Valério D. Pillar in OpenAIREJan Pisek;
Jan Pisek
Jan Pisek in OpenAIREMatthew J. Pound;
Matthew J. Pound
Matthew J. Pound in OpenAIREBjorn J. M. Robroek;
Brandon Schamp;Bjorn J. M. Robroek
Bjorn J. M. Robroek in OpenAIREMartijn Slot;
Martijn Slot
Martijn Slot in OpenAIREMiao Sun;
Miao Sun
Miao Sun in OpenAIREÊnio E. Sosinski;
Ênio E. Sosinski
Ênio E. Sosinski in OpenAIRENadejda A. Soudzilovskaia;
Nadejda A. Soudzilovskaia
Nadejda A. Soudzilovskaia in OpenAIRENelson Thiffault;
Nelson Thiffault
Nelson Thiffault in OpenAIREPeter M. van Bodegom;
Fons van der Plas;Peter M. van Bodegom
Peter M. van Bodegom in OpenAIREJingming Zheng;
Jingming Zheng
Jingming Zheng in OpenAIREJens-Christian Svenning;
Jens-Christian Svenning
Jens-Christian Svenning in OpenAIREAlejandro Ordonez;
Alejandro Ordonez
Alejandro Ordonez in OpenAIREAs Earth’s climate has varied strongly through geological time, studying the impacts of past climate change on biodiversity helps to understand the risks from future climate change. However, it remains unclear how paleoclimate shapes spatial variation in biodiversity. Here, we assessed the influence of Quaternary climate change on spatial dissimilarity in taxonomic, phylogenetic, and functional composition among neighboring 200-kilometer cells (beta-diversity) for angiosperm trees worldwide. We found that larger glacial-interglacial temperature change was strongly associated with lower spatial turnover (species replacements) and higher nestedness (richness changes) components of beta-diversity across all three biodiversity facets. Moreover, phylogenetic and functional turnover was lower and nestedness higher than random expectations based on taxonomic beta-diversity in regions that experienced large temperature change, reflecting phylogenetically and functionally selective processes in species replacement, extinction, and colonization during glacial-interglacial oscillations. Our results suggest that future human-driven climate change could cause local homogenization and reduction in taxonomic, phylogenetic, and functional diversity of angiosperm trees worldwide.
The University of Wa... arrow_drop_down The University of Waikato: Research CommonsArticle . 2023License: CC BYFull-Text: https://hdl.handle.net/10289/15686Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2023License: CC BYData sources: Recolector de Ciencia Abierta, RECOLECTADiposit Digital de Documents de la UABArticle . 2023License: CC BYData sources: Diposit Digital de Documents de la UABUniversity of Copenhagen: ResearchArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1126/sciadv.add8553&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 21 citations 21 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert The University of Wa... arrow_drop_down The University of Waikato: Research CommonsArticle . 2023License: CC BYFull-Text: https://hdl.handle.net/10289/15686Data sources: Bielefeld Academic Search Engine (BASE)Recolector de Ciencia Abierta, RECOLECTAArticle . 2023License: CC BYData sources: Recolector de Ciencia Abierta, RECOLECTADiposit Digital de Documents de la UABArticle . 2023License: CC BYData sources: Diposit Digital de Documents de la UABUniversity of Copenhagen: ResearchArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1126/sciadv.add8553&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2019 Germany, France, Spain, United Kingdom, France, Spain, United States, Australia, AustraliaPublisher:Proceedings of the National Academy of Sciences Funded by:EC | BIGSEA, NSERC, EC | MERCES +1 projectsEC| BIGSEA ,NSERC ,EC| MERCES ,EC| CERESAuthors:David A. Carozza;
Steve Mackinson;David A. Carozza
David A. Carozza in OpenAIREJeroen Steenbeek;
Jeroen Steenbeek
Jeroen Steenbeek in OpenAIREVilly Christensen;
+37 AuthorsVilly Christensen
Villy Christensen in OpenAIREDavid A. Carozza;
Steve Mackinson;David A. Carozza
David A. Carozza in OpenAIREJeroen Steenbeek;
Jeroen Steenbeek
Jeroen Steenbeek in OpenAIREVilly Christensen;
Philippe Verley;Villy Christensen
Villy Christensen in OpenAIRESusa Niiranen;
Susa Niiranen
Susa Niiranen in OpenAIREAndrea Bryndum-Buchholz;
Andrea Bryndum-Buchholz
Andrea Bryndum-Buchholz in OpenAIREMatthias Büchner;
Matthias Büchner
Matthias Büchner in OpenAIREDerek P. Tittensor;
Derek P. Tittensor; Jan Volkholz; John P. Dunne; Elizabeth A. Fulton;Derek P. Tittensor
Derek P. Tittensor in OpenAIREJulia L. Blanchard;
Julia L. Blanchard
Julia L. Blanchard in OpenAIRERicardo Oliveros-Ramos;
Ricardo Oliveros-Ramos
Ricardo Oliveros-Ramos in OpenAIREJacob Schewe;
Jacob Schewe
Jacob Schewe in OpenAIRESimon Jennings;
Simon Jennings; Manuel Barange;Simon Jennings
Simon Jennings in OpenAIRECharles A. Stock;
Charles A. Stock
Charles A. Stock in OpenAIREBoris Worm;
Miranda C. Jones;Boris Worm
Boris Worm in OpenAIRENicola D. Walker;
Nicola D. Walker
Nicola D. Walker in OpenAIRELaurent Bopp;
Olivier Maury; Olivier Maury; William W. L. Cheung;Laurent Bopp
Laurent Bopp in OpenAIRETiago H. Silva;
Tiago H. Silva
Tiago H. Silva in OpenAIREDaniele Bianchi;
Daniele Bianchi
Daniele Bianchi in OpenAIREHeike K. Lotze;
Tilla Roy;Heike K. Lotze
Heike K. Lotze in OpenAIRECatherine M. Bulman;
Tyler D. Eddy; Tyler D. Eddy;Catherine M. Bulman
Catherine M. Bulman in OpenAIRENicolas Barrier;
Nicolas Barrier
Nicolas Barrier in OpenAIREMarta Coll;
Eric D. Galbraith; Eric D. Galbraith;Marta Coll
Marta Coll in OpenAIREJose A. Fernandes;
Jose A. Fernandes
Jose A. Fernandes in OpenAIREYunne-Jai Shin;
Yunne-Jai Shin;Yunne-Jai Shin
Yunne-Jai Shin in OpenAIREWhile the physical dimensions of climate change are now routinely assessed through multimodel intercomparisons, projected impacts on the global ocean ecosystem generally rely on individual models with a specific set of assumptions. To address these single-model limitations, we present standardized ensemble projections from six global marine ecosystem models forced with two Earth system models and four emission scenarios with and without fishing. We derive average biomass trends and associated uncertainties across the marine food web. Without fishing, mean global animal biomass decreased by 5% (±4% SD) under low emissions and 17% (±11% SD) under high emissions by 2100, with an average 5% decline for every 1 °C of warming. Projected biomass declines were primarily driven by increasing temperature and decreasing primary production, and were more pronounced at higher trophic levels, a process known as trophic amplification. Fishing did not substantially alter the effects of climate change. Considerable regional variation featured strong biomass increases at high latitudes and decreases at middle to low latitudes, with good model agreement on the direction of change but variable magnitude. Uncertainties due to variations in marine ecosystem and Earth system models were similar. Ensemble projections performed well compared with empirical data, emphasizing the benefits of multimodel inference to project future outcomes. Our results indicate that global ocean animal biomass consistently declines with climate change, and that these impacts are amplified at higher trophic levels. Next steps for model development include dynamic scenarios of fishing, cumulative human impacts, and the effects of management measures on future ocean biomass trends.
CIRAD: HAL (Agricult... arrow_drop_down CIRAD: HAL (Agricultural Research for Development)Article . 2019License: CC BY NC NDFull-Text: https://hal.umontpellier.fr/hal-02272161Data sources: Bielefeld Academic Search Engine (BASE)Université de Bretagne Occidentale: HALArticle . 2019License: CC BY NC NDFull-Text: https://hal.umontpellier.fr/hal-02272161Data sources: Bielefeld Academic Search Engine (BASE)University of East Anglia: UEA Digital RepositoryArticle . 2019License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2019License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)Proceedings of the National Academy of SciencesArticle . 2019 . Peer-reviewedLicense: CC BY NC NDData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2019Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019License: CC BY NC NDData sources: Recolector de Ciencia Abierta, RECOLECTADiposit Digital de Documents de la UABArticle . 2019License: CC BY NC NDData sources: Diposit Digital de Documents de la UABProceedings of the National Academy of SciencesArticle . 2019 . Peer-reviewedData sources: European Union Open Data PortalUniversity of Tasmania: UTas ePrintsArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1073/pnas.1900194116&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 397 citations 397 popularity Top 0.1% influence Top 1% impulse Top 0.1% Powered by BIP!
visibility 30visibility views 30 download downloads 97 Powered bymore_vert CIRAD: HAL (Agricult... arrow_drop_down CIRAD: HAL (Agricultural Research for Development)Article . 2019License: CC BY NC NDFull-Text: https://hal.umontpellier.fr/hal-02272161Data sources: Bielefeld Academic Search Engine (BASE)Université de Bretagne Occidentale: HALArticle . 2019License: CC BY NC NDFull-Text: https://hal.umontpellier.fr/hal-02272161Data sources: Bielefeld Academic Search Engine (BASE)University of East Anglia: UEA Digital RepositoryArticle . 2019License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)Publication Database PIK (Potsdam Institute for Climate Impact Research)Article . 2019License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)Proceedings of the National Academy of SciencesArticle . 2019 . Peer-reviewedLicense: CC BY NC NDData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2019Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2019License: CC BY NC NDData sources: Recolector de Ciencia Abierta, RECOLECTADiposit Digital de Documents de la UABArticle . 2019License: CC BY NC NDData sources: Diposit Digital de Documents de la UABProceedings of the National Academy of SciencesArticle . 2019 . Peer-reviewedData sources: European Union Open Data PortalUniversity of Tasmania: UTas ePrintsArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1073/pnas.1900194116&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Conference object , Journal 2017 United StatesPublisher:American Chemical Society (ACS) Funded by:DFG | INUIT - Ice Nuclei resear...,DFG| INUIT - Ice Nuclei research UnIT ,[no funder available]Authors:Senchao Lai;
Senchao Lai
Senchao Lai in OpenAIREMichael G. Weller;
Iris Bellinghausen; Kira Ziegler; +17 AuthorsMichael G. Weller
Michael G. Weller in OpenAIRESenchao Lai;
Senchao Lai
Senchao Lai in OpenAIREMichael G. Weller;
Iris Bellinghausen; Kira Ziegler; Kurt Lucas;Michael G. Weller
Michael G. Weller in OpenAIREPascale S. J. Lakey;
Pascale S. J. Lakey
Pascale S. J. Lakey in OpenAIREManabu Shiraiwa;
Manabu Shiraiwa
Manabu Shiraiwa in OpenAIREJanine Fröhlich-Nowoisky;
Joachim Saloga; Rossella Sgarbanti;Janine Fröhlich-Nowoisky
Janine Fröhlich-Nowoisky in OpenAIRENaama Lang-Yona;
Detlef Schuppan; Detlef Schuppan;Naama Lang-Yona
Naama Lang-Yona in OpenAIREKathrin Reinmuth-Selzle;
Kathrin Reinmuth-Selzle
Kathrin Reinmuth-Selzle in OpenAIREChristopher J. Kampf;
Christopher J. Kampf
Christopher J. Kampf in OpenAIREFangxia Shen;
Fangxia Shen
Fangxia Shen in OpenAIREBettina Weber;
Anna T. Kunert;Bettina Weber
Bettina Weber in OpenAIREFobang Liu;
Fobang Liu
Fobang Liu in OpenAIREAlbert Duschl;
Albert Duschl
Albert Duschl in OpenAIREUlrich Pöschl;
Ulrich Pöschl
Ulrich Pöschl in OpenAIREAir pollution and climate change are potential drivers for the increasing burden of allergic diseases. The molecular mechanisms by which air pollutants and climate parameters may influence allergic diseases, however, are complex and elusive. This article provides an overview of physical, chemical and biological interactions between air pollution, climate change, allergens, adjuvants and the immune system, addressing how these interactions may promote the development of allergies. We reviewed and synthesized key findings from atmospheric, climate, and biomedical research. The current state of knowledge, open questions, and future research perspectives are outlined and discussed. The Anthropocene, as the present era of globally pervasive anthropogenic influence on planet Earth and, thus, on the human environment, is characterized by a strong increase of carbon dioxide, ozone, nitrogen oxides, and combustion- or traffic-related particulate matter in the atmosphere. These environmental factors can enhance the abundance and induce chemical modifications of allergens, increase oxidative stress in the human body, and skew the immune system toward allergic reactions. In particular, air pollutants can act as adjuvants and alter the immunogenicity of allergenic proteins, while climate change affects the atmospheric abundance and human exposure to bioaerosols and aeroallergens. To fully understand and effectively mitigate the adverse effects of air pollution and climate change on allergic diseases, several challenges remain to be resolved. Among these are the identification and quantification of immunochemical reaction pathways involving allergens and adjuvants under relevant environmental and physiological conditions.
Environmental Scienc... arrow_drop_down Harvard University: DASH - Digital Access to Scholarship at HarvardArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1021/acs.est.6b04908&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 221 citations 221 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Environmental Scienc... arrow_drop_down Harvard University: DASH - Digital Access to Scholarship at HarvardArticle . 2017Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1021/acs.est.6b04908&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2017Embargo end date: 01 Jan 2018 United States, SwitzerlandPublisher:Wiley Guowei Liu; Johannes Pfeifer; Rita de Brito Francisco; Aurelia Emonet;Marina Stirnemann;
Marina Stirnemann
Marina Stirnemann in OpenAIREChristian Gübeli;
Olivier Hutter; Joëlle Sasse; Christian Mattheyer;Christian Gübeli
Christian Gübeli in OpenAIREErnst Stelzer;
Ernst Stelzer
Ernst Stelzer in OpenAIREAchim Walter;
Enrico Martinoia;Achim Walter
Achim Walter in OpenAIRELorenzo Borghi;
Lorenzo Borghi
Lorenzo Borghi in OpenAIRESummary Strigolactones (SLs) are carotenoid‐derived phytohormones shaping plant architecture and inducing the symbiosis with endomycorrhizal fungi. In Petunia hybrida, SL transport within the plant and towards the rhizosphere is driven by the ABCG‐class protein PDR1. PDR1 expression is regulated by phytohormones and by the soil phosphate abundance, and thus SL transport integrates plant development with nutrient conditions. We overexpressed PDR1 (PDR1 OE) to investigate whether increased endogenous SL transport is sufficient to improve plant nutrition and productivity. Phosphorus quantification and nondestructive X‐ray computed tomography were applied. Morphological and gene expression changes were quantified at cellular and whole tissue levels via time‐lapse microscopy and quantitative PCR. PDR1 OE significantly enhanced phosphate uptake and plant biomass production on phosphate‐poor soils. PDR1 OE plants showed increased lateral root formation, extended root hair elongation, faster mycorrhization and reduced leaf senescence. PDR1 overexpression allowed considerable SL biosynthesis by releasing SL biosynthetic genes from an SL‐dependent negative feedback. The increased endogenous SL transport/biosynthesis in PDR1 OE plants is a powerful tool to improve plant growth on phosphate‐poor soils. We propose PDR1 as an as yet unexplored trait to be investigated for crop production. The overexpression of PDR1 is a valuable strategy to investigate SL functions and transport routes.
New Phytologist arrow_drop_down eScholarship - University of CaliforniaArticle . 2018Data sources: eScholarship - University of Californiaadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1111/nph.14847&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 50 citations 50 popularity Top 10% influence Top 10% impulse Top 10% Powered by BIP!
more_vert New Phytologist arrow_drop_down eScholarship - University of CaliforniaArticle . 2018Data sources: eScholarship - University of Californiaadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1111/nph.14847&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2019 Germany, France, United Kingdom, United States, Ireland, United StatesPublisher:Springer Science and Business Media LLC Publicly fundedFunded by:ARC | ARC Centres of Excellence..., EC | QUINCYARC| ARC Centres of Excellences - Grant ID: CE170100023 ,EC| QUINCYAuthors: Christian Werner;Bertrand Guenet;
Bertrand Guenet
Bertrand Guenet in OpenAIREShinichi Asao;
Shinichi Asao
Shinichi Asao in OpenAIREJianyang Xia;
+25 AuthorsJianyang Xia
Jianyang Xia in OpenAIREChristian Werner;Bertrand Guenet;
Bertrand Guenet
Bertrand Guenet in OpenAIREShinichi Asao;
Shinichi Asao
Shinichi Asao in OpenAIREJianyang Xia;
Jianyang Xia
Jianyang Xia in OpenAIREThomas Hickler;
Colleen M. Iversen;Thomas Hickler
Thomas Hickler in OpenAIREBelinda E. Medlyn;
Belinda E. Medlyn
Belinda E. Medlyn in OpenAIREJ. Patrick Megonigal;
Richard J. Norby; K. A. Luus; Yiqi Luo; Alan F. Talhelm;J. Patrick Megonigal
J. Patrick Megonigal in OpenAIREAnthony P. Walker;
Anthony P. Walker
Anthony P. Walker in OpenAIREMeng Lu;
Meng Lu;Bai Yang;
Bai Yang
Bai Yang in OpenAIRESönke Zaehle;
Sönke Zaehle
Sönke Zaehle in OpenAIREAtul K. Jain;
Ram Oren; Ram Oren; Xingjie Lu;Atul K. Jain
Atul K. Jain in OpenAIREAnna B. Harper;
Anna B. Harper
Anna B. Harper in OpenAIREMartin G. De Kauwe;
Martin G. De Kauwe
Martin G. De Kauwe in OpenAIREYing-Ping Wang;
Ying-Ping Wang
Ying-Ping Wang in OpenAIREJeffrey M. Warren;
Jeffrey M. Warren
Jeffrey M. Warren in OpenAIREDonald R. Zak;
Donald R. Zak
Donald R. Zak in OpenAIREShijie Shu;
Shijie Shu
Shijie Shu in OpenAIREEdmund Ryan;
Edmund Ryan
Edmund Ryan in OpenAIREBruce A. Hungate;
Bruce A. Hungate
Bruce A. Hungate in OpenAIREpmid: 30765702
pmc: PMC6376023
AbstractIncreasing atmospheric CO2 stimulates photosynthesis which can increase net primary production (NPP), but at longer timescales may not necessarily increase plant biomass. Here we analyse the four decade-long CO2-enrichment experiments in woody ecosystems that measured total NPP and biomass. CO2 enrichment increased biomass increment by 1.05 ± 0.26 kg C m−2 over a full decade, a 29.1 ± 11.7% stimulation of biomass gain in these early-secondary-succession temperate ecosystems. This response is predictable by combining the CO2 response of NPP (0.16 ± 0.03 kg C m−2 y−1) and the CO2-independent, linear slope between biomass increment and cumulative NPP (0.55 ± 0.17). An ensemble of terrestrial ecosystem models fail to predict both terms correctly. Allocation to wood was a driver of across-site, and across-model, response variability and together with CO2-independence of biomass retention highlights the value of understanding drivers of wood allocation under ambient conditions to correctly interpret and predict CO2 responses.
Hyper Article en Lig... arrow_drop_down Dublin Institute of Technology: ARROW@DIT (Archiving Research Resources on he Web)Article . 2019License: CC BY ND SAFull-Text: https://arrow.tudublin.ie/scschbioart/203Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2019Full-Text: https://hal.science/hal-02374049Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2019Full-Text: https://hal.science/hal-02374049Data sources: Bielefeld Academic Search Engine (BASE)Hochschulschriftenserver - Universität Frankfurt am MainArticle . 2019Data sources: Hochschulschriftenserver - Universität Frankfurt am MainUniversity of Bristol: Bristol ResearchArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)University of Western Sydney (UWS): Research DirectArticle . 2019License: CC BYData sources: Bielefeld Academic Search Engine (BASE)Publication Server of Goethe University Frankfurt am MainArticle . 2019License: CC BYData sources: Bielefeld Academic Search Engine (BASE)Duke University Libraries: DukeSpaceArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-019-08348-1&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 74 citations 74 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Hyper Article en Lig... arrow_drop_down Dublin Institute of Technology: ARROW@DIT (Archiving Research Resources on he Web)Article . 2019License: CC BY ND SAFull-Text: https://arrow.tudublin.ie/scschbioart/203Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2019Full-Text: https://hal.science/hal-02374049Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2019Full-Text: https://hal.science/hal-02374049Data sources: Bielefeld Academic Search Engine (BASE)Hochschulschriftenserver - Universität Frankfurt am MainArticle . 2019Data sources: Hochschulschriftenserver - Universität Frankfurt am MainUniversity of Bristol: Bristol ResearchArticle . 2019Data sources: Bielefeld Academic Search Engine (BASE)University of Western Sydney (UWS): Research DirectArticle . 2019License: CC BYData sources: Bielefeld Academic Search Engine (BASE)Publication Server of Goethe University Frankfurt am MainArticle . 2019License: CC BYData sources: Bielefeld Academic Search Engine (BASE)Duke University Libraries: DukeSpaceArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-019-08348-1&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2019 United States, United Kingdom, Belgium, AustraliaPublisher:Springer Science and Business Media LLC Funded by:NIH | Quantifying Heterogeneiti..., NIH | An Approach for Estimatin..., WT | Estimating the burden of ... +2 projectsNIH| Quantifying Heterogeneities in Dengue Virus Transmission Dynamics ,NIH| An Approach for Estimating Foodborne Illnesses and Assessing Risk Factors ,WT| Estimating the burden of dengue, chikungunya and Zika in Latin America ,NIH| Research Training in Pediatric Emergency Medicine ,NIH| A Platform for Modeling the Global Impact of Climate Change on Infectious DiseaseAuthors:Laurie B. Marczak;
Thomas Jaenisch; Robert Reiner;Laurie B. Marczak
Laurie B. Marczak in OpenAIREMoritz U. G. Kraemer;
+18 AuthorsMoritz U. G. Kraemer
Moritz U. G. Kraemer in OpenAIRELaurie B. Marczak;
Thomas Jaenisch; Robert Reiner;Laurie B. Marczak
Laurie B. Marczak in OpenAIREMoritz U. G. Kraemer;
Moritz U. G. Kraemer; Moritz U. G. Kraemer;Moritz U. G. Kraemer
Moritz U. G. Kraemer in OpenAIRESimon I. Hay;
Simon I. Hay
Simon I. Hay in OpenAIRESarah E Ray;
Sarah E Ray
Sarah E Ray in OpenAIREFreya M Shearer;
Peter A. Jones; Raman Velayudhan;Freya M Shearer
Freya M Shearer in OpenAIRENick Golding;
Shreya Shirude; Lucas Earl; William Wint; Kimberly B. Johnson; David M. Pigott; Marius Gilbert;Nick Golding
Nick Golding in OpenAIRENicole Davis Weaver;
Nicole Davis Weaver
Nicole Davis Weaver in OpenAIREOliver J. Brady;
Thomas W. Scott;Oliver J. Brady
Oliver J. Brady in OpenAIREJane P. Messina;
Jane P. Messina
Jane P. Messina in OpenAIREpmid: 31182801
pmc: PMC6784886
AbstractDengue is a mosquito-borne viral infection that has spread throughout the tropical world over the past 60 years and now affects over half the world’s population. The geographical range of dengue is expected to further expand due to ongoing global phenomena including climate change and urbanization. We applied statistical mapping techniques to the most extensive database of case locations to date to predict global environmental suitability for the virus as of 2015. We then made use of climate, population and socioeconomic projections for the years 2020, 2050 and 2080 to project future changes in virus suitability and human population at risk. This study is the first to consider the spread of Aedes mosquito vectors to project dengue suitability. Our projections provide a key missing piece of evidence for the changing global threat of vector-borne disease and will help decision-makers worldwide to better prepare for and respond to future changes in dengue risk.
CORE arrow_drop_down The University of Melbourne: Digital RepositoryArticle . 2019License: CC BYFull-Text: http://hdl.handle.net/11343/245925Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41564-019-0476-8&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 729 citations 729 popularity Top 0.1% influence Top 1% impulse Top 0.01% Powered by BIP!
visibility 9visibility views 9 download downloads 569 Powered bymore_vert CORE arrow_drop_down The University of Melbourne: Digital RepositoryArticle . 2019License: CC BYFull-Text: http://hdl.handle.net/11343/245925Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41564-019-0476-8&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2023 FrancePublisher:Springer Science and Business Media LLC Publicly fundedFunded by:EC | MRV4SOC, RCN | Climate smart use of Norw...EC| MRV4SOC ,RCN| Climate smart use of Norwegian organic soilsAuthors:Junbin Zhao;
Junbin Zhao
Junbin Zhao in OpenAIRESimon Weldon;
Alexandra Barthelmes;Simon Weldon
Simon Weldon in OpenAIREErin Swails;
+6 AuthorsErin Swails
Erin Swails in OpenAIREJunbin Zhao;
Junbin Zhao
Junbin Zhao in OpenAIRESimon Weldon;
Alexandra Barthelmes;Simon Weldon
Simon Weldon in OpenAIREErin Swails;
Kristell Hergoualc'h;Erin Swails
Erin Swails in OpenAIREÜlo Mander;
Ülo Mander
Ülo Mander in OpenAIREChunjing Qiu;
Chunjing Qiu
Chunjing Qiu in OpenAIREJohn Connolly;
John Connolly
John Connolly in OpenAIREWhendee L. Silver;
Whendee L. Silver
Whendee L. Silver in OpenAIREDavid I. Campbell;
David I. Campbell
David I. Campbell in OpenAIREhandle: 10568/135827
AbstractGreenhouse gas (GHGs) emissions from peatlands contribute significantly to ongoing climate change because of human land use. To develop reliable and comprehensive estimates and predictions of GHG emissions from peatlands, it is necessary to have GHG observations, including carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O), that cover different peatland types globally. We synthesize published peatland studies with field GHG flux measurements to identify gaps in observations and suggest directions for future research. Although GHG flux measurements have been conducted at numerous sites globally, substantial gaps remain in current observations, encompassing various peatland types, regions and GHGs. Generally, there is a pressing need for additional GHG observations in Africa, Latin America and the Caribbean regions. Despite widespread measurements of CO2 and CH4, studies quantifying N2O emissions from peatlands are scarce, particularly in natural ecosystems. To expand the global coverage of peatland data, it is crucial to conduct more eddy covariance observations for long-term monitoring. Automated chambers are preferable for plot-scale observations to produce high temporal resolution data; however, traditional field campaigns with manual chamber measurements remain necessary, particularly in remote areas. To ensure that the data can be further used for modeling purposes, we suggest that chamber campaigns should be conducted at least monthly for a minimum duration of one year with no fewer than three replicates and measure key environmental variables. In addition, further studies are needed in restored peatlands, focusing on identifying the most effective restoration approaches for different ecosystem types, conditions, climates, and land use histories.
Université de Versai... arrow_drop_down Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)CIRAD: HAL (Agricultural Research for Development)Article . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)CGIAR CGSpace (Consultative Group on International Agricultural Research)Article . 2023License: CC BYFull-Text: https://hdl.handle.net/10568/135827Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 4 citations 4 popularity Average influence Average impulse Average Powered by BIP!
more_vert Université de Versai... arrow_drop_down Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)CIRAD: HAL (Agricultural Research for Development)Article . 2023Full-Text: https://hal.science/hal-04246164Data sources: Bielefeld Academic Search Engine (BASE)CGIAR CGSpace (Consultative Group on International Agricultural Research)Article . 2023License: CC BYFull-Text: https://hdl.handle.net/10568/135827Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2020Publisher:Frontiers Media SA Authors:A. Cagle;
A. Cagle
A. Cagle in OpenAIREDellena E. Bloom;
Dellena E. Bloom
Dellena E. Bloom in OpenAIREJoshua S. Caplan;
Joshua S. Caplan
Joshua S. Caplan in OpenAIREChong Seok Choi;
+2 AuthorsChong Seok Choi
Chong Seok Choi in OpenAIREA. Cagle;
A. Cagle
A. Cagle in OpenAIREDellena E. Bloom;
Dellena E. Bloom
Dellena E. Bloom in OpenAIREJoshua S. Caplan;
Joshua S. Caplan
Joshua S. Caplan in OpenAIREChong Seok Choi;
Jordan Macknick;Chong Seok Choi
Chong Seok Choi in OpenAIRESujith Ravi;
Sujith Ravi
Sujith Ravi in OpenAIRESolar photovoltaic (PV) technology is being deployed at an unprecedented rate. However, utility-scale solar energy development is land intensive and its large-scale installation can have negative impacts on the environment. In particular, solar energy infrastructure can require extensive landscape modification that transforms soil ecological functions, thereby impacting hydrologic, vegetative, and carbon dynamics. However, reintroducing native vegetation to solar PV sites may be a means of restoring their soils. To this end, we investigated critical soil physical and chemical parameters at a revegetated photovoltaic array and an adjacent reference grassland in Colorado, United States. Seven years after revegetation, we found that carbon and nitrogen remained lower in the PV soil than in the reference soil and contained a greater fraction of coarse particles. We also found that the PV modules introduced heterogeneity in the soil moisture distribution, with precipitation accumulating along the lower edges of panels. The redistribution of soil moisture by panel arrays could potentially be used in concert with planting strategies to maximize plant growth or minimize soil erosion, and should be considered when evaluating the potential to co-locate vegetation with solar infrastructure.
Frontiers in Environ... arrow_drop_down Frontiers in Environmental ScienceArticle . 2020 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess Routesgold 65 citations 65 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Frontiers in Environ... arrow_drop_down Frontiers in Environmental ScienceArticle . 2020 . Peer-reviewedLicense: CC BYData sources: Crossrefadd ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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