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description Publicationkeyboard_double_arrow_right Article , Other literature type , Journal 2018 Germany, SwitzerlandPublisher:Springer Science and Business Media LLC Authors:Thomas Guillaume;
Thomas Guillaume; Thomas Guillaume; Dietrich Hertel; +6 AuthorsThomas Guillaume
Thomas Guillaume in OpenAIREThomas Guillaume;
Thomas Guillaume; Thomas Guillaume; Dietrich Hertel;Thomas Guillaume
Thomas Guillaume in OpenAIREValentyna Krashevska;
Valentyna Krashevska
Valentyna Krashevska in OpenAIREMartyna M. Kotowska;
Martyna M. Kotowska
Martyna M. Kotowska in OpenAIREYakov Kuzyakov;
Stefan Scheu;Yakov Kuzyakov
Yakov Kuzyakov in OpenAIREAlexander Knohl;
Kukuh Murtilaksono;Alexander Knohl
Alexander Knohl in OpenAIREAbstractLand-use intensification in the tropics plays an important role in meeting global demand for agricultural commodities but generates high environmental costs. Here, we synthesize the impacts of rainforest conversion to tree plantations of increasing management intensity on carbon stocks and dynamics. Rainforests in Sumatra converted to jungle rubber, rubber, and oil palm monocultures lost 116 Mg C ha−1, 159 Mg C ha−1, and 174 Mg C ha−1, respectively. Up to 21% of these carbon losses originated from belowground pools, where soil organic matter still decreases a decade after conversion. Oil palm cultivation leads to the highest carbon losses but it is the most efficient land use, providing the lowest ratio between ecosystem carbon storage loss or net primary production (NPP) decrease and yield. The imbalanced sharing of NPP between short-term human needs and maintenance of long-term ecosystem functions could compromise the ability of plantations to provide ecosystem services regulating climate, soil fertility, water, and nutrient cycles.
Nature Communication... arrow_drop_down Göttingen Research Online PublicationsArticle . 2019License: CC BYData sources: Göttingen Research Online Publicationsadd 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/s41467-018-04755-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 129 citations 129 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Nature Communication... arrow_drop_down Göttingen Research Online PublicationsArticle . 2019License: CC BYData sources: Göttingen Research Online Publicationsadd 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/s41467-018-04755-y&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2015 GermanyPublisher:Wiley Funded by:DFGDFGAuthors:Kotowska, Martyna M.;
Leuschner, Christoph;Kotowska, Martyna M.
Kotowska, Martyna M. in OpenAIRETriadiati, Triadiati;
Triadiati, Triadiati
Triadiati, Triadiati in OpenAIREMeriem, Selis;
+1 AuthorsMeriem, Selis
Meriem, Selis in OpenAIREKotowska, Martyna M.;
Leuschner, Christoph;Kotowska, Martyna M.
Kotowska, Martyna M. in OpenAIRETriadiati, Triadiati;
Triadiati, Triadiati
Triadiati, Triadiati in OpenAIREMeriem, Selis;
Hertel, Dietrich;Meriem, Selis
Meriem, Selis in OpenAIREdoi: 10.1111/gcb.12979
pmid: 25980371
AbstractNatural forests in South‐East Asia have been extensively converted into other land‐use systems in the past decades and still show high deforestation rates. Historically, lowland forests have been converted into rubber forests, but more recently, the dominant conversion is into oil palm plantations. While it is expected that the large‐scale conversion has strong effects on the carbon cycle, detailed studies quantifying carbon pools and total net primary production (NPPtotal) in above‐ and belowground tree biomass in land‐use systems replacing rainforest (incl. oil palm plantations) are rare so far. We measured above‐ and belowground carbon pools in tree biomass together with NPPtotal in natural old‐growth forests, ‘jungle rubber’ agroforests under natural tree cover, and rubber and oil palm monocultures in Sumatra. In total, 32 stands (eight plot replicates per land‐use system) were studied in two different regions. Total tree biomass in the natural forest (mean: 384 Mg ha−1) was more than two times higher than in jungle rubber stands (147 Mg ha−1) and >four times higher than in monoculture rubber and oil palm plantations (78 and 50 Mg ha−1). NPPtotal was higher in the natural forest (24 Mg ha−1 yr−1) than in the rubber systems (20 and 15 Mg ha−1 yr−1), but was highest in the oil palm system (33 Mg ha−1 yr−1) due to very high fruit production (15–20 Mg ha−1 yr−1). NPPtotal was dominated in all systems by aboveground production, but belowground productivity was significantly higher in the natural forest and jungle rubber than in plantations. We conclude that conversion of natural lowland forest into different agricultural systems leads to a strong reduction not only in the biomass carbon pool (up to 166 Mg C ha−1) but also in carbon sequestration as carbon residence time (i.e. biomass‐C:NPP‐C) was 3–10 times higher in the natural forest than in rubber and oil palm plantations.
Publikationenserver ... arrow_drop_down Publikationenserver der Georg-August-Universität GöttingenArticle . 2018Global Change BiologyArticle . 2015 . Peer-reviewedLicense: Wiley Online Library User AgreementData 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.
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/gcb.12979&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen 153 citations 153 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Publikationenserver ... arrow_drop_down Publikationenserver der Georg-August-Universität GöttingenArticle . 2018Global Change BiologyArticle . 2015 . Peer-reviewedLicense: Wiley Online Library User AgreementData 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.
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/gcb.12979&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2021 GermanyPublisher:Wiley Authors:Kuppler, Jonas;
Kuppler, Jonas
Kuppler, Jonas in OpenAIREKotowska, Martyna M.;
Kotowska, Martyna M.; 2Plant Ecology and Ecosystems Research University of Göttingen Göttingen Germany;Kotowska, Martyna M.
Kotowska, Martyna M. in OpenAIREdoi: 10.1111/gcb.15621
pmid: 33774883
AbstractAlterations in water availability and drought events as predicted by climate change scenarios will increasingly impact natural communities with effects already emerging at present. Water deficit leads to increasing physiological stress in plants, likely affecting floral development and causing changes in floral morphology, nectar and pollen production or scent. Understanding how these floral traits are altered by water deficit is necessary to predict changes in plant–pollinator interactions and how communities are impacted in the future. Here we employ a meta‐analysis approach to synthesize the current evidence of experimental water deficit on floral traits and plant–pollinator interactions. Furthermore, we explore experimental factors potentially increasing heterogeneity between studies and provide ideas how to enhance comparability between studies. In the end, we highlight future directions and knowledge gaps for floral traits and plant–pollinator interactions under water deficit. Our analysis showed consistent decreases in floral size, number of flowers and nectar volume to reduced water availability. Other floral traits such as the start of flowering or herkogamy showed no consistent pattern. This indicates that effects of reduced water availability differ between specific traits that are potentially involved in different functions such as pollinator attraction or efficiency. We found no general decreasing visitation rates with water deficit for flower–visitor interactions. Furthermore, the comparison of available studies suggests that increased reporting of plant stress severity and including more hydraulic and physiological measurements will improve the comparability across experiments and aid a more mechanistic understanding of plant–pollinator interactions under altered environmental conditions. Overall, our results show that water deficit has the potential to strongly affect plant–pollinator interactions via changes in specific floral traits. Linking these changes to pollination services and pollinator performance is one crucial step for understanding how changing water availability and drought events under climate change will alter plant and pollinator communities.
Global Change Biolog... arrow_drop_down Publikationenserver der Georg-August-Universität GöttingenArticle . 2021Göttingen Research Online PublicationsArticle . 2021Data sources: Göttingen Research Online Publicationsadd 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/gcb.15621&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 74 citations 74 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Global Change Biolog... arrow_drop_down Publikationenserver der Georg-August-Universität GöttingenArticle . 2021Göttingen Research Online PublicationsArticle . 2021Data sources: Göttingen Research Online Publicationsadd 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/gcb.15621&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type , Review , Preprint 2021Embargo end date: 01 Jan 2022 United Kingdom, Norway, United Kingdom, Norway, Italy, United Kingdom, Italy, Italy, Spain, Qatar, United Kingdom, Denmark, Italy, Denmark, Italy, Italy, Germany, Netherlands, Finland, Italy, Sweden, Netherlands, Germany, Netherlands, Spain, Spain, Netherlands, Spain, Italy, Lithuania, Germany, Norway, Spain, Italy, Germany, Norway, Netherlands, Germany, United Kingdom, Italy, United Kingdom, Italy, Netherlands, Switzerland, Netherlands, Spain, Italy, Belgium, Spain, Netherlands, Spain, Lithuania, France, Germany, Sweden, United States, Belgium, Germany, Italy, Italy, Netherlands, Germany, Netherlands, Qatar, United Kingdom, United KingdomPublisher:Wiley Funded by:EC | eLTER PLUS, EC | LEAP-AGRI, ARC | Discovery Early Career Re... +32 projectsEC| eLTER PLUS ,EC| LEAP-AGRI ,ARC| Discovery Early Career Researcher Award - Grant ID: DE180100570 ,EC| DESIRA ,ANR| ASICS ,SNSF| ICOS-CH Phase 2 ,NSF| Integrating species traits into species pools: A multi-scale approach to understanding community assembly ,EC| SUPER-G ,AKA| Atmosphere and Climate Competence Center (ACCC) ,UKRI| E3 - Edinburgh Earth and Environment - Doctoral Training Partnership ,UKRI| Climate as a driver of shrub expansion and tundra greening ,UKRI| SCORE: Supply Chain Optimisation for demand Response Efficiency ,EC| FORMICA ,RSF| The anatomical and physiological response of Scots pine xylem formation to variable water availability ,SNSF| Climate change impacts on biodiversity: From macro- to microclimate ,EC| AIAS ,NSERC ,RCN| Effects of herbivory and warming on tundra plant communities ,RCN| The role of Functional group interactions in mediating climate change impacts on the Carbon dynamics and Biodiversity of alpine ecosystems ,EC| AfricanBioServices ,EC| ECLAIRE ,ARC| Discovery Early Career Researcher Award - Grant ID: DE140101611 ,NWO| Specialists at work: how decomposers break down plant litter ,EC| PERMTHAW ,EC| ICOS ,EC| NICH ,SNSF| How does forest microclimate affect biodiversity dynamics? ,DFG| EarthShape: Earth Surface Shaping by Biota ,RCN| The effect of snow depth and snow melt timing on arctic terrestrial ecosystems. ,EC| SustainSAHEL ,UKRI| Forecasting the impacts of drought on human-modified tropical forests by integrating models with data ,UKRI| UK Status, Change and Projections of the Environment (UK-SCaPE) ,ANR| IMPRINT ,DFG| German Centre for Integrative Biodiversity Research - iDiv ,ANR| ODYSSEEAuthors:Winkler, Manuela;
Winkler, Manuela
Winkler, Manuela in OpenAIREPlichta, Roman;
Plichta, Roman
Plichta, Roman in OpenAIREBuysse, Pauline;
Buysse, Pauline
Buysse, Pauline in OpenAIRELohila, Annalea;
+196 AuthorsLohila, Annalea
Lohila, Annalea in OpenAIREWinkler, Manuela;
Winkler, Manuela
Winkler, Manuela in OpenAIREPlichta, Roman;
Plichta, Roman
Plichta, Roman in OpenAIREBuysse, Pauline;
Buysse, Pauline
Buysse, Pauline in OpenAIRELohila, Annalea;
Lohila, Annalea
Lohila, Annalea in OpenAIRESpicher, Fabien;
Spicher, Fabien
Spicher, Fabien in OpenAIREBoeckx, Pascal;
Boeckx, Pascal
Boeckx, Pascal in OpenAIREWild, Jan;
Wild, Jan
Wild, Jan in OpenAIREFeigenwinter, Iris;
Feigenwinter, Iris
Feigenwinter, Iris in OpenAIREOlejnik, Janusz;
Olejnik, Janusz
Olejnik, Janusz in OpenAIRERisch, Anita;
Risch, Anita
Risch, Anita in OpenAIREKhuroo, Anzar;
Khuroo, Anzar
Khuroo, Anzar in OpenAIRELynn, Joshua;
Lynn, Joshua
Lynn, Joshua in OpenAIREdi Cella, Umberto;
di Cella, Umberto
di Cella, Umberto in OpenAIRESchmidt, Marius;
Schmidt, Marius
Schmidt, Marius in OpenAIREUrbaniak, Marek;
Urbaniak, Marek
Urbaniak, Marek in OpenAIREMarchesini, Luca;
Marchesini, Luca
Marchesini, Luca in OpenAIREGovaert, Sanne;
Govaert, Sanne
Govaert, Sanne in OpenAIREUogintas, Domas;
Uogintas, Domas
Uogintas, Domas in OpenAIREAssis, Rafael;
Assis, Rafael
Assis, Rafael in OpenAIREMedinets, Volodymyr;
Medinets, Volodymyr
Medinets, Volodymyr in OpenAIREAbdalaze, Otar;
Abdalaze, Otar
Abdalaze, Otar in OpenAIREVarlagin, Andrej;
Varlagin, Andrej
Varlagin, Andrej in OpenAIREDolezal, Jiri;
Dolezal, Jiri
Dolezal, Jiri in OpenAIREMyers, Jonathan;
Myers, Jonathan
Myers, Jonathan in OpenAIRERandall, Krystal;
Randall, Krystal
Randall, Krystal in OpenAIREBauters, Marijn;
Bauters, Marijn
Bauters, Marijn in OpenAIREJimenez, Juan;
Jimenez, Juan
Jimenez, Juan in OpenAIREStoll, Stefan;
Stoll, Stefan
Stoll, Stefan in OpenAIREPetraglia, Alessandro;
Mazzolari, Ana;Petraglia, Alessandro
Petraglia, Alessandro in OpenAIREOgaya, Romà;
Ogaya, Romà
Ogaya, Romà in OpenAIRETyystjärvi, Vilna;
Tyystjärvi, Vilna
Tyystjärvi, Vilna in OpenAIREHammerle, Albin;
Hammerle, Albin
Hammerle, Albin in OpenAIREWipf, Sonja;
Wipf, Sonja
Wipf, Sonja in OpenAIRELorite, Juan;
Lorite, Juan
Lorite, Juan in OpenAIREFanin, Nicolas;
Fanin, Nicolas
Fanin, Nicolas in OpenAIREBenavides, Juan;
Benavides, Juan
Benavides, Juan in OpenAIREScholten, Thomas;
Scholten, Thomas
Scholten, Thomas in OpenAIREYu, Zicheng;
Veen, G.;Yu, Zicheng
Yu, Zicheng in OpenAIRETreier, Urs;
Treier, Urs
Treier, Urs in OpenAIRECandan, Onur;
Candan, Onur
Candan, Onur in OpenAIREBell, Michael;
Bell, Michael
Bell, Michael in OpenAIREHörtnagl, Lukas;
Siebicke, Lukas;Hörtnagl, Lukas
Hörtnagl, Lukas in OpenAIREVives-Ingla, Maria;
Vives-Ingla, Maria
Vives-Ingla, Maria in OpenAIREEugster, Werner;
Eugster, Werner
Eugster, Werner in OpenAIREGrelle, Achim;
Grelle, Achim
Grelle, Achim in OpenAIREStemkovski, Michael;
Stemkovski, Michael
Stemkovski, Michael in OpenAIRETheurillat, Jean-Paul;
Theurillat, Jean-Paul
Theurillat, Jean-Paul in OpenAIREMatula, Radim;
Matula, Radim
Matula, Radim in OpenAIREDorrepaal, Ellen;
Dorrepaal, Ellen
Dorrepaal, Ellen in OpenAIRESteinbrecher, Rainer;
Steinbrecher, Rainer
Steinbrecher, Rainer in OpenAIREAlatalo, Juha;
Alatalo, Juha
Alatalo, Juha in OpenAIREFenu, Giuseppe;
Fenu, Giuseppe
Fenu, Giuseppe in OpenAIREArzac, Alberto;
Arzac, Alberto
Arzac, Alberto in OpenAIREHomeier, Jürgen;
Homeier, Jürgen
Homeier, Jürgen in OpenAIREPorro, Francesco;
Porro, Francesco
Porro, Francesco in OpenAIRERobinson, Sharon;
Robinson, Sharon
Robinson, Sharon in OpenAIREGhosn, Dany;
Ghosn, Dany
Ghosn, Dany in OpenAIREHaugum, Siri;
Haugum, Siri
Haugum, Siri in OpenAIREZiemblińska, Klaudia;
Ziemblińska, Klaudia
Ziemblińska, Klaudia in OpenAIRECamargo, José;
Camargo, José
Camargo, José in OpenAIREZhao, Peng;
Zhao, Peng
Zhao, Peng in OpenAIRENiittynen, Pekka;
Niittynen, Pekka
Niittynen, Pekka in OpenAIRELiljebladh, Bengt;
Liljebladh, Bengt
Liljebladh, Bengt in OpenAIRENormand, Signe;
Normand, Signe
Normand, Signe in OpenAIREDias, Arildo;
Dias, Arildo
Dias, Arildo in OpenAIRELarson, Christian;
Larson, Christian
Larson, Christian in OpenAIREPeichl, Matthias;
Collier, Laura; Myers-Smith, Isla;Peichl, Matthias
Peichl, Matthias in OpenAIREZong, Shengwei;
Zong, Shengwei
Zong, Shengwei in OpenAIREKašpar, Vít;
Kašpar, Vít
Kašpar, Vít in OpenAIRECooper, Elisabeth;
Cooper, Elisabeth
Cooper, Elisabeth in OpenAIREHaider, Sylvia;
Haider, Sylvia
Haider, Sylvia in OpenAIREvon Oppen, Jonathan;
von Oppen, Jonathan
von Oppen, Jonathan in OpenAIRECutini, Maurizio;
Cutini, Maurizio
Cutini, Maurizio in OpenAIREBenito-Alonso, José-Luis;
Benito-Alonso, José-Luis
Benito-Alonso, José-Luis in OpenAIRELuoto, Miska;
Luoto, Miska
Luoto, Miska in OpenAIREKlemedtsson, Leif;
Higgens, Rebecca;Klemedtsson, Leif
Klemedtsson, Leif in OpenAIREZhang, Jian;
Speed, James;Zhang, Jian
Zhang, Jian in OpenAIRENijs, Ivan;
Nijs, Ivan
Nijs, Ivan in OpenAIREMacek, Martin;
Macek, Martin
Macek, Martin in OpenAIRESteinwandter, Michael;
Steinwandter, Michael
Steinwandter, Michael in OpenAIREPoyatos, Rafael;
Poyatos, Rafael
Poyatos, Rafael in OpenAIRENiedrist, Georg;
Niedrist, Georg
Niedrist, Georg in OpenAIRECurasi, Salvatore;
Curasi, Salvatore
Curasi, Salvatore in OpenAIREYang, Yan;
Yang, Yan
Yang, Yan in OpenAIREDengler, Jürgen;
Dengler, Jürgen
Dengler, Jürgen in OpenAIREGéron, Charly;
de Pablo, Miguel;Géron, Charly
Géron, Charly in OpenAIREXenakis, Georgios;
Xenakis, Georgios
Xenakis, Georgios in OpenAIREKreyling, Juergen;
Forte, Tai;Kreyling, Juergen
Kreyling, Juergen in OpenAIREBailey, Joseph;
Bailey, Joseph
Bailey, Joseph in OpenAIREKnohl, Alexander;
Knohl, Alexander
Knohl, Alexander in OpenAIREGoulding, Keith;
Goulding, Keith
Goulding, Keith in OpenAIREWilkinson, Matthew;
Wilkinson, Matthew
Wilkinson, Matthew in OpenAIREKljun, Natascha;
Kljun, Natascha
Kljun, Natascha in OpenAIRERoupsard, Olivier;
Roupsard, Olivier
Roupsard, Olivier in OpenAIREStiegler, Christian;
Stiegler, Christian
Stiegler, Christian in OpenAIREVerbruggen, Erik;
Verbruggen, Erik
Verbruggen, Erik in OpenAIREWingate, Lisa;
Wingate, Lisa
Wingate, Lisa in OpenAIRELamprecht, Andrea;
Lamprecht, Andrea
Lamprecht, Andrea in OpenAIREHamid, Maroof;
Hamid, Maroof
Hamid, Maroof in OpenAIRERossi, Graziano;
Rossi, Graziano
Rossi, Graziano in OpenAIREDescombes, Patrice;
Descombes, Patrice
Descombes, Patrice in OpenAIREHrbacek, Filip;
Hrbacek, Filip
Hrbacek, Filip in OpenAIREBjornsdottir, Katrin;
Bjornsdottir, Katrin
Bjornsdottir, Katrin in OpenAIREPoulenard, Jérôme;
Poulenard, Jérôme
Poulenard, Jérôme in OpenAIREMeeussen, Camille;
Meeussen, Camille
Meeussen, Camille in OpenAIREGuénard, Benoit;
Guénard, Benoit
Guénard, Benoit in OpenAIREVenn, Susanna;
Venn, Susanna
Venn, Susanna in OpenAIREDimarco, Romina;
Dimarco, Romina
Dimarco, Romina in OpenAIREMan, Matěj;
Man, Matěj
Man, Matěj in OpenAIREScharnweber, Tobias;
Scharnweber, Tobias
Scharnweber, Tobias in OpenAIREChown, Steven;
Chown, Steven
Chown, Steven in OpenAIREPio, Casimiro;
Way, Robert;Pio, Casimiro
Pio, Casimiro in OpenAIREErickson, Todd;
Erickson, Todd
Erickson, Todd in OpenAIREFernández-Pascual, Eduardo;
Fernández-Pascual, Eduardo
Fernández-Pascual, Eduardo in OpenAIREPușcaș, Mihai;
Pușcaș, Mihai
Pușcaș, Mihai in OpenAIREOrsenigo, Simone;
Orsenigo, Simone
Orsenigo, Simone in OpenAIREDi Musciano, Michele;
Enquist, Brian; Newling, Emily;Di Musciano, Michele
Di Musciano, Michele in OpenAIRETagesson, Torbern;
Tagesson, Torbern
Tagesson, Torbern in OpenAIREKemppinen, Julia;
Kemppinen, Julia
Kemppinen, Julia in OpenAIRESerra-Diaz, Josep;
Serra-Diaz, Josep
Serra-Diaz, Josep in OpenAIREGottschall, Felix;
Gottschall, Felix
Gottschall, Felix in OpenAIRESchuchardt, Max;
Schuchardt, Max
Schuchardt, Max in OpenAIREPitacco, Andrea;
Pitacco, Andrea
Pitacco, Andrea in OpenAIREJump, Alistair;
Exton, Dan;Jump, Alistair
Jump, Alistair in OpenAIRECarnicer, Jofre;
Carnicer, Jofre
Carnicer, Jofre in OpenAIREAschero, Valeria;
Aschero, Valeria
Aschero, Valeria in OpenAIREUrban, Anastasiya;
Daskalova, Gergana;Urban, Anastasiya
Urban, Anastasiya in OpenAIRESantos, Cinthya;
Santos, Cinthya
Santos, Cinthya in OpenAIREGoeckede, Mathias;
Goeckede, Mathias
Goeckede, Mathias in OpenAIREBruna, Josef;
Bruna, Josef
Bruna, Josef in OpenAIREAndrews, Christopher;
Andrews, Christopher
Andrews, Christopher in OpenAIREJónsdóttir, Ingibjörg;
Jónsdóttir, Ingibjörg
Jónsdóttir, Ingibjörg in OpenAIRECasanova-Katny, Angélica;
Casanova-Katny, Angélica
Casanova-Katny, Angélica in OpenAIREMoriana-Armendariz, Mikel;
Ewers, Robert;Moriana-Armendariz, Mikel
Moriana-Armendariz, Mikel in OpenAIREPärtel, Meelis;
Sagot, Clotilde; Herbst, Mathias;Pärtel, Meelis
Pärtel, Meelis in OpenAIREDe Frenne, Pieter;
De Frenne, Pieter
De Frenne, Pieter in OpenAIREMilbau, Ann;
Milbau, Ann
Milbau, Ann in OpenAIREGobin, Anne;
Gobin, Anne
Gobin, Anne in OpenAIREAlexander, Jake;
Alexander, Jake
Alexander, Jake in OpenAIREKopecký, Martin;
Kopecký, Martin
Kopecký, Martin in OpenAIREBuchmann, Nina;
Buchmann, Nina
Buchmann, Nina in OpenAIREKotowska, Martyna;
Kotowska, Martyna
Kotowska, Martyna in OpenAIREPuchalka, Radoslaw;
Puchalka, Radoslaw
Puchalka, Radoslaw in OpenAIREPenuelas, Josep;
Penuelas, Josep
Penuelas, Josep in OpenAIREGigauri, Khatuna;
Gigauri, Khatuna
Gigauri, Khatuna in OpenAIREProkushkin, Anatoly;
Prokushkin, Anatoly
Prokushkin, Anatoly in OpenAIREMoiseev, Pavel;
Moiseev, Pavel
Moiseev, Pavel in OpenAIREJentsch, Anke;
Jentsch, Anke
Jentsch, Anke in OpenAIREKlisz, Marcin;
Klisz, Marcin
Klisz, Marcin in OpenAIREBarrio, Isabel;
Barrio, Isabel
Barrio, Isabel in OpenAIREAmmann, Christof;
Panov, Alexey;Ammann, Christof
Ammann, Christof in OpenAIREVan Geel, Maarten;
Van Geel, Maarten
Van Geel, Maarten in OpenAIREFinckh, Manfred;
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Finckh, Manfred in OpenAIREVaccari, Francesco;
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Erschbamer, Brigitta in OpenAIRERobroek, Bjorn;
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Robroek, Bjorn in OpenAIRECampoe, Otávio;
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Campoe, Otávio in OpenAIREAhmadian, Negar;
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Ahmadian, Negar in OpenAIREBoike, Julia;
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Pauli, Harald in OpenAIREKollár, Jozef;
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de Cássia Guimarães Mesquita, Rita
de Cássia Guimarães Mesquita, Rita in OpenAIREMichaletz, Sean;
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Remmele, Sabine; Naujokaitis-Lewis, Ilona;Vitale, Luca
Vitale, Luca in OpenAIREMeusburger, Katrin;
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Svátek, Martin in OpenAIREAllonsius, Camille;
Høye, Toke;Allonsius, Camille
Allonsius, Camille in OpenAIREdoi: 10.1111/gcb.16060 , 10.32942/osf.io/pksqw , 10.3929/ethz-b-000523670 , 10.5445/ir/1000143688 , 10.21256/zhaw-24832 , 10.17863/cam.81331
pmid: 34967074
pmc: PMC9303923
handle: https://repository.ubn.ru.nl/handle/2066/286285 , 1871.1/b0fc7fdf-22e3-45ef-8d70-30d75b7f5fba , 20.500.11755/f67625de-3e1f-4112-899d-3dae951cfbfc , 11250/2986065 , 11250/2983746 , 10852/91639 , 10037/24329 , 10037/28344 , 20.500.14243/445619 , 10261/358672 , 2066/286285 , 10481/73202 , 10576/30034 , 11250/2979811 , 10067/1859610151162165141 , 10651/64961 , 1983/7aa6df09-efc2-4f70-8bec-268ab675f242 , 11590/476830 , 10449/74200 , 11584/332967 , 11695/119970 , 11697/178559 , 1854/LU-8743335 , 10017/50911 , 11381/2931752 , 11571/1450206 , 10044/1/107406 , 1893/33794 , 10900/135817
doi: 10.1111/gcb.16060 , 10.32942/osf.io/pksqw , 10.3929/ethz-b-000523670 , 10.5445/ir/1000143688 , 10.21256/zhaw-24832 , 10.17863/cam.81331
pmid: 34967074
pmc: PMC9303923
handle: https://repository.ubn.ru.nl/handle/2066/286285 , 1871.1/b0fc7fdf-22e3-45ef-8d70-30d75b7f5fba , 20.500.11755/f67625de-3e1f-4112-899d-3dae951cfbfc , 11250/2986065 , 11250/2983746 , 10852/91639 , 10037/24329 , 10037/28344 , 20.500.14243/445619 , 10261/358672 , 2066/286285 , 10481/73202 , 10576/30034 , 11250/2979811 , 10067/1859610151162165141 , 10651/64961 , 1983/7aa6df09-efc2-4f70-8bec-268ab675f242 , 11590/476830 , 10449/74200 , 11584/332967 , 11695/119970 , 11697/178559 , 1854/LU-8743335 , 10017/50911 , 11381/2931752 , 11571/1450206 , 10044/1/107406 , 1893/33794 , 10900/135817
AbstractResearch in global change ecology relies heavily on global climatic grids derived from estimates of air temperature in open areas at around 2 m above the ground. These climatic grids do not reflect conditions below vegetation canopies and near the ground surface, where critical ecosystem functions occur and most terrestrial species reside. Here, we provide global maps of soil temperature and bioclimatic variables at a 1‐km2resolution for 0–5 and 5–15 cm soil depth. These maps were created by calculating the difference (i.e. offset) between in situ soil temperature measurements, based on time series from over 1200 1‐km2pixels (summarized from 8519 unique temperature sensors) across all the world's major terrestrial biomes, and coarse‐grained air temperature estimates from ERA5‐Land (an atmospheric reanalysis by the European Centre for Medium‐Range Weather Forecasts). We show that mean annual soil temperature differs markedly from the corresponding gridded air temperature, by up to 10°C (mean = 3.0 ± 2.1°C), with substantial variation across biomes and seasons. Over the year, soils in cold and/or dry biomes are substantially warmer (+3.6 ± 2.3°C) than gridded air temperature, whereas soils in warm and humid environments are on average slightly cooler (−0.7 ± 2.3°C). The observed substantial and biome‐specific offsets emphasize that the projected impacts of climate and climate change on near‐surface biodiversity and ecosystem functioning are inaccurately assessed when air rather than soil temperature is used, especially in cold environments. The global soil‐related bioclimatic variables provided here are an important step forward for any application in ecology and related disciplines. Nevertheless, we highlight the need to fill remaining geographic gaps by collecting more in situ measurements of microclimate conditions to further enhance the spatiotemporal resolution of global soil temperature products for ecological applications.
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For further information contact us at helpdesk@openaire.eu188 citations 188 popularity Top 1% influence Top 10% impulse Top 0.1% Powered by BIP!
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2015 GermanyPublisher:Springer Science and Business Media LLC Funded by:DFGDFGAuthors:Kotowska, Martyna M.;
Leuschner, Christoph;Kotowska, Martyna M.
Kotowska, Martyna M. in OpenAIRETriadiati, Triadiati;
Hertel, Dietrich;Triadiati, Triadiati
Triadiati, Triadiati in OpenAIREpmid: 26546083
Tropical landscapes are not only rapidly transformed by ongoing land-use change, but are additionally confronted by increasing seasonal climate variation. There is an increasing demand for studies analyzing the effects and feedbacks on ecosystem functioning of large-scale conversions of tropical natural forest into intensively managed cash crop agriculture. We analyzed the seasonality of aboveground litterfall, fine root litter production, and aboveground woody biomass production (ANPP(woody)) in natural lowland forests, rubber agroforests under natural tree cover ("jungle rubber"), rubber and oil palm monocultures along a forest-to-agriculture transformation gradient in Sumatra. We hypothesized that the temporal fluctuation of litter production increases with increasing land-use intensity, while the associated nutrient fluxes and nutrient use efficiency (NUE) decrease. Indeed, the seasonal variation of aboveground litter production and ANPP(woody) increased from the natural forest to the plantations, while aboveground litterfall generally decreased. Nutrient return through aboveground litter was mostly highest in the natural forest; however, it was significantly lower only in rubber plantations. NUE of N, P and K was lowest in the oil palm plantations, with natural forest and the rubber systems showing comparably high values. Root litter production was generally lower than leaf litter production in all systems, while the root-to-leaf ratio of litter C flux increased along the land-use intensity gradient. Our results suggest that nutrient and C cycles are more directly affected by climate seasonality in species-poor agricultural systems than in species-rich forests, and therefore might be more susceptible to inter-annual climate fluctuation and climate change.
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.euAccess RoutesGreen 70 citations 70 popularity Top 1% influence Top 10% impulse Top 10% Powered by BIP!
more_vert 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.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 Belgium, United States, United Kingdom, France, Netherlands, United States, Germany, Belgium, Italy, United Kingdom, France, Switzerland, GermanyPublisher:Springer Science and Business Media LLC Funded by:DFG | Exploring mechanisms unde..., DFG | Ecological and socioecono..., NSF | Collaborative Research: M... +6 projectsDFG| Exploring mechanisms underlying the relationship between biodiversity and ecosystem functioning (Jena Experiment) ,DFG| Ecological and socioeconomic functions of tropical lowland rainforest transformation systems (Sumatra, Indonesia) ,NSF| Collaborative Research: Microbiome mediation of multi-trophic interactions in a tree diversity experiment ,NSF| LTER: Multi-decadal responses of prairie, savanna, and forest ecosystems to interacting environmental changes: insights from experiments, observations, and models ,DFG| German Centre for Integrative Biodiversity Research - iDiv ,ARC| Intervention ecology: managing ecosystems in the 21st century ,NSF| BII-Implementation: The causes and consequences of plant biodiversity across scales in a rapidly changing world ,NSF| Collaborative Research: MRA: Elucidating Plant and Mycorrhizal Fungal Relationships and Consequences Across Space and Time ,EC| EXCELLENTIAAuthors:Zheng, Liting;
Zheng, Liting
Zheng, Liting in OpenAIREBarry, Kathryn;
Barry, Kathryn
Barry, Kathryn in OpenAIREGuerrero-Ramírez, Nathaly;
Craven, Dylan; +68 AuthorsGuerrero-Ramírez, Nathaly
Guerrero-Ramírez, Nathaly in OpenAIREZheng, Liting;
Zheng, Liting
Zheng, Liting in OpenAIREBarry, Kathryn;
Barry, Kathryn
Barry, Kathryn in OpenAIREGuerrero-Ramírez, Nathaly;
Craven, Dylan;Guerrero-Ramírez, Nathaly
Guerrero-Ramírez, Nathaly in OpenAIREReich, Peter;
Verheyen, Kris;Reich, Peter
Reich, Peter in OpenAIREScherer-Lorenzen, Michael;
Scherer-Lorenzen, Michael
Scherer-Lorenzen, Michael in OpenAIREEisenhauer, Nico;
Barsoum, Nadia;Eisenhauer, Nico
Eisenhauer, Nico in OpenAIREBauhus, Jürgen;
Bauhus, Jürgen
Bauhus, Jürgen in OpenAIREBruelheide, Helge;
Bruelheide, Helge
Bruelheide, Helge in OpenAIRECavender-Bares, Jeannine;
Cavender-Bares, Jeannine
Cavender-Bares, Jeannine in OpenAIREDolezal, Jiri;
Dolezal, Jiri
Dolezal, Jiri in OpenAIREAuge, Harald;
Fagundes, Marina;Auge, Harald
Auge, Harald in OpenAIREFerlian, Olga;
Ferlian, Olga
Ferlian, Olga in OpenAIREFiedler, Sebastian;
Fiedler, Sebastian
Fiedler, Sebastian in OpenAIREForrester, David;
Forrester, David
Forrester, David in OpenAIREGanade, Gislene;
Gebauer, Tobias; Haase, Josephine;Ganade, Gislene
Ganade, Gislene in OpenAIREHajek, Peter;
Hajek, Peter
Hajek, Peter in OpenAIREHector, Andy;
Hector, Andy
Hector, Andy in OpenAIREHérault, Bruno;
Hérault, Bruno
Hérault, Bruno in OpenAIREHölscher, Dirk;
Hulvey, Kristin; Irawan, Bambang;Hölscher, Dirk
Hölscher, Dirk in OpenAIREJactel, Hervé;
Jactel, Hervé
Jactel, Hervé in OpenAIREKoricheva, Julia;
Koricheva, Julia
Koricheva, Julia in OpenAIREKreft, Holger;
Kreft, Holger
Kreft, Holger in OpenAIRELanta, Vojtech;
Lanta, Vojtech
Lanta, Vojtech in OpenAIRELeps, Jan;
Leps, Jan
Leps, Jan in OpenAIREMereu, Simone;
Mereu, Simone
Mereu, Simone in OpenAIREMessier, Christian;
Montagnini, Florencia; Mörsdorf, Martin;Messier, Christian
Messier, Christian in OpenAIREMüller, Sandra;
Muys, Bart;Müller, Sandra
Müller, Sandra in OpenAIRENock, Charles;
Nock, Charles
Nock, Charles in OpenAIREPaquette, Alain;
Parker, William;Paquette, Alain
Paquette, Alain in OpenAIREParker, John;
Parker, John
Parker, John in OpenAIREParrotta, John;
Parrotta, John
Parrotta, John in OpenAIREPaterno, Gustavo;
Paterno, Gustavo
Paterno, Gustavo in OpenAIREPerring, Michael;
Piotto, Daniel; Wayne Polley, H.;Perring, Michael
Perring, Michael in OpenAIREPonette, Quentin;
Ponette, Quentin
Ponette, Quentin in OpenAIREPotvin, Catherine;
Quosh, Julius;Potvin, Catherine
Potvin, Catherine in OpenAIRERewald, Boris;
Rewald, Boris
Rewald, Boris in OpenAIREGodbold, Douglas;
Godbold, Douglas
Godbold, Douglas in OpenAIREvan Ruijven, Jasper;
van Ruijven, Jasper
van Ruijven, Jasper in OpenAIREStandish, Rachel;
Stefanski, Artur; Sundawati, Leti; Urgoiti, Jon;Standish, Rachel
Standish, Rachel in OpenAIREWilliams, Laura;
Wilsey, Brian; Yang, Baiyu; Zhang, Li; Zhao, Zhao;Williams, Laura
Williams, Laura in OpenAIREYang, Yongchuan;
Sandén, Hans; Ebeling, Anne;Yang, Yongchuan
Yang, Yongchuan in OpenAIRESchmid, Bernhard;
Schmid, Bernhard
Schmid, Bernhard in OpenAIREFischer, Markus;
Fischer, Markus
Fischer, Markus in OpenAIREKotowska, Martyna;
Kotowska, Martyna
Kotowska, Martyna in OpenAIREPalmborg, Cecilia;
Palmborg, Cecilia
Palmborg, Cecilia in OpenAIRETilman, David;
Tilman, David
Tilman, David in OpenAIREYan, Enrong;
Yan, Enrong
Yan, Enrong in OpenAIREHautier, Yann;
Hautier, Yann
Hautier, Yann in OpenAIREpmid: 38453933
pmc: PMC10920907
AbstractPlant diversity effects on community productivity often increase over time. Whether the strengthening of diversity effects is caused by temporal shifts in species-level overyielding (i.e., higher species-level productivity in diverse communities compared with monocultures) remains unclear. Here, using data from 65 grassland and forest biodiversity experiments, we show that the temporal strength of diversity effects at the community scale is underpinned by temporal changes in the species that yield. These temporal trends of species-level overyielding are shaped by plant ecological strategies, which can be quantitatively delimited by functional traits. In grasslands, the temporal strengthening of biodiversity effects on community productivity was associated with increasing biomass overyielding of resource-conservative species increasing over time, and with overyielding of species characterized by fast resource acquisition either decreasing or increasing. In forests, temporal trends in species overyielding differ when considering above- versus belowground resource acquisition strategies. Overyielding in stem growth decreased for species with high light capture capacity but increased for those with high soil resource acquisition capacity. Our results imply that a diversity of species with different, and potentially complementary, ecological strategies is beneficial for maintaining community productivity over time in both grassland and forest ecosystems.
IRIS Cnr arrow_drop_down University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/245915Data sources: Bielefeld Academic Search Engine (BASE)Oxford University Research ArchiveArticle . 2024License: CC BYData sources: Oxford University Research ArchivePublikationenserver der Georg-August-Universität GöttingenArticle . 2024Bern Open Repository and Information System (BORIS)Article . 2024 . Peer-reviewedData sources: Bern Open Repository and Information System (BORIS)Wageningen Staff PublicationsArticle . 2024License: CC BYData sources: Wageningen Staff PublicationsUniversity of Western Sydney (UWS): Research DirectArticle . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)CIRAD: HAL (Agricultural Research for Development)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Institut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Ghent University Academic BibliographyArticle . 2024Data sources: Ghent University Academic BibliographyDigital Repository @ Iowa State UniversityArticle . 2024Data 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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more_vert IRIS Cnr arrow_drop_down University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/245915Data sources: Bielefeld Academic Search Engine (BASE)Oxford University Research ArchiveArticle . 2024License: CC BYData sources: Oxford University Research ArchivePublikationenserver der Georg-August-Universität GöttingenArticle . 2024Bern Open Repository and Information System (BORIS)Article . 2024 . Peer-reviewedData sources: Bern Open Repository and Information System (BORIS)Wageningen Staff PublicationsArticle . 2024License: CC BYData sources: Wageningen Staff PublicationsUniversity of Western Sydney (UWS): Research DirectArticle . 2024License: CC BYData sources: Bielefeld Academic Search Engine (BASE)CIRAD: HAL (Agricultural Research for Development)Article . 2024Data sources: Bielefeld Academic Search Engine (BASE)Institut National de la Recherche Agronomique: ProdINRAArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Ghent University Academic BibliographyArticle . 2024Data sources: Ghent University Academic BibliographyDigital Repository @ Iowa State UniversityArticle . 2024Data 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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