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description Publicationkeyboard_double_arrow_right Article , Journal 2019Publisher:Wiley Funded by:NSF | DISSERTATION RESEARCH: Me...NSF| DISSERTATION RESEARCH: Mechanisms of asymmetrical ecosystem responses to precipitation extremes in xeric vs. mesic grasslandsAuthors:Andrew J. Felton;
Sam Zavislan‐Pullaro; Melinda D. Smith;Andrew J. Felton
Andrew J. Felton in OpenAIREdoi: 10.1002/ecy.2572
pmid: 30516267
AbstractIn semiarid regions, vegetation constraints on plant growth responses to precipitation (PPT) are hypothesized to place an upper limit on net primary productivity (NPP), leading to predictions of future shifts from currently defined linear to saturating NPP–PPT relationships as increases in both dry and wet PPT extremes occur. We experimentally tested this prediction by imposing a replicated gradient of growing season PPT (GSP, n = 11 levels, n = 4 replicates), ranging from the driest to wettest conditions in the 75‐yr climate record, within a semiarid grassland. We focused on responses of two key ecosystem processes: aboveground NPP (ANPP) and soil respiration (Rs). ANPP and Rs both exhibited greater relative responses to wet vs. dry GSP extremes, with a linear relationship consistently best explaining the response of both processes to GSP. However, this responsiveness to GSP peaked at moderate levels of extremity for both processes, and declined at the most extreme GSP levels, suggesting that greater sensitivity of ANPP and Rs to wet vs. dry conditions may diminish under increased magnitudes of GSP extremes. Underlying these responses was rapid plant compositional change driven by increased forb production and cover as GSP transitioned to extreme wet conditions. This compositional shift increased the magnitude of ANPP responses to wet GSP extremes, as well as the slope and variability explained in the ANPP–GSP relationship. Our findings suggest that rapid plant compositional change may act as a mediator of semiarid ecosystem responses to predicted changes in GSP extremes.
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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 Routeshybrid 51 citations 51 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
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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 2024Publisher:American Association for the Advancement of Science (AAAS) Authors:Fandong Meng;
Fandong Meng
Fandong Meng in OpenAIREAndrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIREJiafu Mao;
Jiafu Mao
Jiafu Mao in OpenAIRENan Cong;
+12 AuthorsNan Cong
Nan Cong in OpenAIREFandong Meng;
Fandong Meng
Fandong Meng in OpenAIREAndrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIREJiafu Mao;
Jiafu Mao
Jiafu Mao in OpenAIRENan Cong;
Nan Cong
Nan Cong in OpenAIREWilliam K. Smith;
William K. Smith
William K. Smith in OpenAIREChristian Körner;
Christian Körner
Christian Körner in OpenAIREZhongmin Hu;
Zhongmin Hu
Zhongmin Hu in OpenAIRESongbai Hong;
Songbai Hong
Songbai Hong in OpenAIREJonathan Knott;
Jonathan Knott
Jonathan Knott in OpenAIREYanzi Yan;
Bixi Guo;Yanzi Yan
Yanzi Yan in OpenAIREYing Deng;
Ying Deng
Ying Deng in OpenAIREStephen Leisz;
Stephen Leisz
Stephen Leisz in OpenAIRETsechoe Dorji;
Shiping Wang;Tsechoe Dorji
Tsechoe Dorji in OpenAIREAnping Chen;
Anping Chen
Anping Chen in OpenAIREExtended growing season lengths under climatic warming suggest increased time for plant growth. However, research has focused on climatic impacts to the timing or duration of distinct phenological events. Comparatively little is known about impacts to the relative time allocation to distinct phenological events, for example, the proportion of time dedicated to leaf growth versus senescence. We use multiple satellite and ground-based observations to show that, despite recent climate change during 2001 to 2020, the ratio of time allocated to vegetation green-up over senescence has remained stable [1.27 (± 0.92)] across more than 83% of northern ecosystems. This stability is independent of changes in growing season lengths and is caused by widespread positive relationships among vegetation phenological events; longer vegetation green-up results in longer vegetation senescence. These empirical observations were also partly reproduced by 13 dynamic global vegetation models. Our work demonstrates an intrinsic biotic control to vegetation phenology that could explain the timing of vegetation senescence under climate change.
Science Advances 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.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 9 citations 9 popularity Average influence Average impulse Top 10% Powered by BIP!
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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 , Journal 2017Publisher:The Royal Society Authors:Andrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIREMelinda D. Smith;
Melinda D. Smith
Melinda D. Smith in OpenAIREClimate extremes will elicit responses from the individual to the ecosystem level. However, only recently have ecologists begun to synthetically assess responses to climate extremes across multiple levels of ecological organization. We review the literature to examine how plant responses vary and interact across levels of organization, focusing on how individual, population and community responses may inform ecosystem-level responses in herbaceous and forest plant communities. We report a high degree of variability at the individual level, and a consequential inconsistency in the translation of individual or population responses to directional changes in community- or ecosystem-level processes. The scaling of individual or population responses to community or ecosystem responses is often predicated upon the functional identity of the species in the community, in particular, the dominant species. Furthermore, the reported stability in plant community composition and functioning with respect to extremes is often driven by processes that operate at the community level, such as species niche partitioning and compensatory responses during or after the event. Future research efforts would benefit from assessing ecological responses across multiple levels of organization, as this will provide both a holistic and mechanistic understanding of ecosystem responses to increasing climatic variability. This article is part of the themed issue ‘Behavioural, ecological and evolutionary responses to extreme climatic events’.
Philosophical Transa... arrow_drop_down Philosophical Transactions of the Royal Society B Biological SciencesArticleData sources: UnpayWallPhilosophical Transactions of the Royal Society B Biological SciencesArticle . 2017 . Peer-reviewedLicense: Royal Society Data Sharing and AccessibilityData sources: CrossrefPhilosophical Transactions of the Royal Society B Biological SciencesArticle . 2018Data sources: Europe PubMed Centraladd 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 Routesbronze 99 citations 99 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Philosophical Transa... arrow_drop_down Philosophical Transactions of the Royal Society B Biological SciencesArticleData sources: UnpayWallPhilosophical Transactions of the Royal Society B Biological SciencesArticle . 2017 . Peer-reviewedLicense: Royal Society Data Sharing and AccessibilityData sources: CrossrefPhilosophical Transactions of the Royal Society B Biological SciencesArticle . 2018Data sources: Europe PubMed Centraladd 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=10.1098/rstb.2016.0142&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2021Publisher:Wiley Authors:Robert K. Shriver;
Robert K. Shriver; Robert K. Shriver;Robert K. Shriver
Robert K. Shriver in OpenAIREAndrew J. Felton;
+4 AuthorsAndrew J. Felton
Andrew J. Felton in OpenAIRERobert K. Shriver;
Robert K. Shriver; Robert K. Shriver;Robert K. Shriver
Robert K. Shriver in OpenAIREAndrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIREPeter B. Adler;
Peter B. Adler
Peter B. Adler in OpenAIREBrady W. Allred;
Brady W. Allred
Brady W. Allred in OpenAIREKatharine N. Suding;
Katharine N. Suding
Katharine N. Suding in OpenAIREJohn B. Bradford;
John B. Bradford
John B. Bradford in OpenAIREdoi: 10.1111/nph.17543
pmid: 34105783
Summary Dryland net primary productivity (NPP) is sensitive to temporal variation in precipitation (PPT), but the magnitude of this ‘temporal sensitivity’ varies spatially. Hypotheses for spatial variation in temporal sensitivity have often emphasized abiotic factors, such as moisture limitation, while overlooking biotic factors, such as vegetation structure. We tested these hypotheses using spatiotemporal models fit to remote‐sensing data sets to assess how vegetation structure and climate influence temporal sensitivity across five dryland ecoregions of the western USA. Temporal sensitivity was higher in locations and ecoregions dominated by herbaceous vegetation. By contrast, much less spatial variation in temporal sensitivity was explained by mean annual PPT. In fact, ecoregion‐specific models showed inconsistent associations of sensitivity and PPT; whereas sensitivity decreased with increasing mean annual PPT in most ecoregions, it increased with mean annual PPT in the most arid ecoregion, the hot deserts. The strong, positive influence of herbaceous vegetation on temporal sensitivity indicates that herbaceous‐dominated drylands will be particularly sensitive to future increases in precipitation variability and that dramatic changes in cover type caused by invasions or shrub encroachment will lead to changes in dryland NPP dynamics, perhaps independent of changes in precipitation.
New Phytologist arrow_drop_down New PhytologistArticle . 2021 . 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.
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For further information contact us at helpdesk@openaire.eu24 citations 24 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert New Phytologist arrow_drop_down New PhytologistArticle . 2021 . 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/nph.17543&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type 2024 United States, Sweden, Netherlands, Denmark, United States, United States, Italy, Spain, Germany, United States, Spain, France, Switzerland, United States, Spain, Norway, Spain, GermanyPublisher:Proceedings of the National Academy of Sciences Funded by:EC | BIODESERT, NSERC, NSF | RCN: Drought-Net: A globa... +12 projectsEC| BIODESERT ,NSERC ,NSF| RCN: Drought-Net: A global network to assess terrestrial ecosystem sensitivity to drought ,EC| GYPWORLD ,ARC| Discovery Projects - Grant ID: DP190101968 ,NSF| LTER: Biodiversity, Multiple Drivers of Environmental Change and Ecosystem Functioning at the Prairie Forest Border ,ARC| Discovery Projects - Grant ID: DP210102593 ,DFG| German Centre for Integrative Biodiversity Research - iDiv ,DFG| EarthShape: Earth Surface Shaping by Biota ,RCN| Land use management to ensure ecosystem service delivery under new societal and environmental pressures in heathlands ,NSF| LTER: Multi-decadal responses of prairie, savanna, and forest ecosystems to interacting environmental changes: insights from experiments, observations, and models ,NSF| LTREB Renewal: Long-term ecosystem responses to directional changes in precipitation amount and variability in an arid grassland ,ARC| Discovery Projects - Grant ID: DP150104199 ,NSF| LTREB: Long-term ecosystem responses to directional changes in precipitation amount and variability in an arid grassland ,NSF| 3rd Collaborative Research Network Program (CRN3)Authors:Smith, M. D.;
Wilkins, K. D.;Smith, M. D.
Smith, M. D. in OpenAIREHoldrege, M. C.;
Wilfahrt, P.; +170 AuthorsHoldrege, M. C.
Holdrege, M. C. in OpenAIRESmith, M. D.;
Wilkins, K. D.;Smith, M. D.
Smith, M. D. in OpenAIREHoldrege, M. C.;
Wilfahrt, P.;Holdrege, M. C.
Holdrege, M. C. in OpenAIRECollins, S. L.;
Knapp, A. K.;Collins, S. L.
Collins, S. L. in OpenAIRESala, O. E.;
Dukes, J. S.; Phillips, R. P.; Yahdjian, L.; Gherardi, L. A.; Ohlert, T.; Beier, C.; Fraser, L. H.; Jentsch, A.; Loik, M. E.; Maestre, F. T.; Power, Sally A. (R17014); Yu, Q.;Sala, O. E.
Sala, O. E. in OpenAIREFelton, A. J.;
Munson, S. M.; Luo, Y.; Abdoli, H.;Felton, A. J.
Felton, A. J. in OpenAIREAbedi, M.;
Alados, C. L.; Alberti, J.;Abedi, M.
Abedi, M. in OpenAIREAlon, M.;
Alon, M.
Alon, M. in OpenAIREAn, H.;
Anacker, B.; Anderson, M.;Auge, H.;
Bachle, S.; Bahalkeh, K.; Bahn, M.; Batbaatar, A.;Auge, H.
Auge, H. in OpenAIREBauerle, T.;
Bauerle, T.
Bauerle, T. in OpenAIREBeard, K. H.;
Beard, K. H.
Beard, K. H. in OpenAIREBehn, K.;
Behn, K.
Behn, K. in OpenAIREBeil, I.;
Beil, I.
Beil, I. in OpenAIREBiancari, L.;
Blindow, I.; Bondaruk, V. F.;Biancari, L.
Biancari, L. in OpenAIREBorer, E. T.;
Bork, E. W.; Bruschetti, C. M.;Borer, E. T.
Borer, E. T. in OpenAIREByrne, K. M.;
Cahill, J. F.; Jr., x; Calvo, D. A.;Byrne, K. M.
Byrne, K. M. in OpenAIRECarbognani, M.;
Cardoni, A.;Carbognani, M.
Carbognani, M. in OpenAIRECarlyle, C. N.;
Castillo-Garcia, M.; Chang, S. X.; Chieppa, J.;Carlyle, C. N.
Carlyle, C. N. in OpenAIRECianciaruso, M. V.;
Cohen, O.; Cordeiro, A. L.; Cusack, D. F.; Dahlke, S.; Daleo, P.; D'Antonio, C. M.;Cianciaruso, M. V.
Cianciaruso, M. V. in OpenAIREDietterich, L. H.;
Dietterich, L. H.
Dietterich, L. H. in OpenAIREDoherty, T. S.;
Dubbert, M.; Ebeling, A.; Eisenhauer, N.;Doherty, T. S.
Doherty, T. S. in OpenAIREFischer, F. M.;
Fischer, F. M.
Fischer, F. M. in OpenAIREForte, T. G.;
Gebauer, T.; Gozalo, B.;Forte, T. G.
Forte, T. G. in OpenAIREGreenville, A. C.;
Guidoni-Martins, K. G.; Hannusch, H. J.; Haugum, S. V.;Greenville, A. C.
Greenville, A. C. in OpenAIREHautier, Y.;
Hefting, M.;Hautier, Y.
Hautier, Y. in OpenAIREHenry, H. A.;
Henry, H. A.
Henry, H. A. in OpenAIREHoss, D.;
Iribarne, O.; Isbell, F.; Johnson, Y.; Jordan, S.; Kelly, E. F.;Hoss, D.
Hoss, D. in OpenAIREKimmel, K.;
Kimmel, K.
Kimmel, K. in OpenAIREKreyling, J.;
Kröel-Dulay, G.; Ingrisch, J.; Kröpfl, A.; Kübert, A.; Kulmatiski, A.; Lamb, E. G.;Kreyling, J.
Kreyling, J. in OpenAIRELarsen, K. S.;
Larson, J.; Leder, C. V.; Linstädter, A.; Liu, J.; Liu, S.; Lodge, A. G.; Longo, G.;Larsen, K. S.
Larsen, K. S. in OpenAIRELoydi, A.;
Luan, J.; Lawson, J.;Loydi, A.
Loydi, A. in OpenAIRELubbe, F. C.;
Macfarlane, C.; Mackie-Haas, K.; Malyshev, A. V.; Maturano-Ruiz, A.;Lubbe, F. C.
Lubbe, F. C. in OpenAIREMerchant, T.;
Metcalfe, D. B.;Merchant, T.
Merchant, T. in OpenAIREMori, A. S.;
Mudongo, E.; Newman, G. S.;Mori, A. S.
Mori, A. S. in OpenAIRENielsen, Uffe N. (R17023);
Nimmo, D.;Nielsen, Uffe N. (R17023)
Nielsen, Uffe N. (R17023) in OpenAIRENiu, Y.;
Nobre, P.; O'Connor, R. C.; Ogaya, R.;Oñatibia, G. R.;
Orbán, I.; Osborne, B.; Otfinowski, R.; Pärtel, M.; Penuelas, J.; Peri, P. L.;Oñatibia, G. R.
Oñatibia, G. R. in OpenAIREPeter, G.;
Petraglia, A.; Picon-Cochard, C.;Peter, G.
Peter, G. in OpenAIREPillar, V. D.;
Piñeiro-Guerra, J. M.; Ploughe, L. W.; Plowes, R. M.; Portales-Reyes, C.; Prober, S. M.; Pueyo, Y.; Reed, S. C.; Ritchie, E. G.; Rodríguez, D. A.; Rogers, W. E.; Roscher, C.; Sánchez, A. M.; Santos, B. A.; Scarfó, M. C.; Seabloom, E. W.; Shi, B.; Souza, L.;Pillar, V. D.
Pillar, V. D. in OpenAIREStampfli, A.;
Standish, R. J.; Sternberg, M.; Sun, W.;Stampfli, A.
Stampfli, A. in OpenAIRESünnemann, M.;
Sünnemann, M.
Sünnemann, M. in OpenAIRETedder, M.;
Thorvaldsen, P.; Tian, D.;Tedder, M.
Tedder, M. in OpenAIRETielbörger, K.;
Valdecantos, A.;Tielbörger, K.
Tielbörger, K. in OpenAIREvan den Brink, L.;
Vandvik, V.; Vankoughnett, M. R.; Velle, L. G.; Wang, C.; Wang, Y.;van den Brink, L.
van den Brink, L. in OpenAIREWardle, G. M.;
Wardle, G. M.
Wardle, G. M. in OpenAIREWerner, C.;
Wei, C.; Wiehl, G.; Williams, J. L.;Werner, C.
Werner, C. in OpenAIREWolf, A. A.;
Wolf, A. A.
Wolf, A. A. in OpenAIREZeiter, M.;
Zhang, F.; Zhu, J.; Zong, N.; Zuo, X.;Zeiter, M.
Zeiter, M. in OpenAIREpmid: 38190514
pmc: PMC10823251
handle: 10261/366464 , 20.500.12123/16497 , 11250/3181298 , 10900/155803 , 11381/2983454 , 1959.7/uws:76872
pmid: 38190514
pmc: PMC10823251
handle: 10261/366464 , 20.500.12123/16497 , 11250/3181298 , 10900/155803 , 11381/2983454 , 1959.7/uws:76872
Climate change is increasing the frequency and severity of short-term (~1 y) drought events—the most common duration of drought—globally. Yet the impact of this intensification of drought on ecosystem functioning remains poorly resolved. This is due in part to the widely disparate approaches ecologists have employed to study drought, variation in the severity and duration of drought studied, and differences among ecosystems in vegetation, edaphic and climatic attributes that can mediate drought impacts. To overcome these problems and better identify the factors that modulate drought responses, we used a coordinated distributed experiment to quantify the impact of short-term drought on grassland and shrubland ecosystems. With a standardized approach, we imposed ~a single year of drought at 100 sites on six continents. Here we show that loss of a foundational ecosystem function—aboveground net primary production (ANPP)—was 60% greater at sites that experienced statistically extreme drought (1-in-100-y event) vs. those sites where drought was nominal (historically more common) in magnitude (35% vs. 21%, respectively). This reduction in a key carbon cycle process with a single year of extreme drought greatly exceeds previously reported losses for grasslands and shrublands. Our global experiment also revealed high variability in drought response but that relative reductions in ANPP were greater in drier ecosystems and those with fewer plant species. Overall, our results demonstrate with unprecedented rigor that the global impacts of projected increases in drought severity have been significantly underestimated and that drier and less diverse sites are likely to be most vulnerable to extreme drought.
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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.2309881120&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu51 citations 51 popularity Average influence Top 10% impulse Top 1% Powered by BIP!
more_vert Bern Open Repository... arrow_drop_down University of California: eScholarshipArticle . 2024License: CC BY NC NDFull-Text: https://escholarship.org/uc/item/9b707158Data sources: Bielefeld Academic Search Engine (BASE)University of Bergen: Bergen Open Research Archive (BORA-UiB)Article . 2024License: CC BY NC NDFull-Text: https://hdl.handle.net/11250/3181298Data sources: Bielefeld Academic Search Engine (BASE)University of Freiburg: FreiDokArticle . 2024Full-Text: https://freidok.uni-freiburg.de/data/253236Data sources: Bielefeld Academic Search Engine (BASE)Proceedings of the National Academy of SciencesArticle . 2024 . Peer-reviewedLicense: CC BY NC NDData sources: CrossrefRecolector de Ciencia Abierta, RECOLECTAArticle . 2024License: CC BY NC NDData sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2024Data sources: Recolector de Ciencia Abierta, RECOLECTARecolector de Ciencia Abierta, RECOLECTAArticle . 2024 . Peer-reviewedData sources: Recolector de Ciencia Abierta, RECOLECTAProceedings of the National Academy of SciencesArticle . 2024License: CC BY NC NDData sources: Pure Utrecht UniversityDiposit Digital de Documents de la UABArticle . 2024License: CC BY NC NDData sources: Diposit Digital de Documents de la UABCopenhagen University Research Information SystemArticle . 2024Data sources: Copenhagen University Research Information SystemPublikationer från Umeå universitetArticle . 2024 . Peer-reviewedData sources: Publikationer från Umeå universiteteScholarship - University of CaliforniaArticle . 2024Data sources: eScholarship - University of CaliforniaDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2024 . Peer-reviewedRepositorio Institucional de la Universidad de AlicanteArticle . 2024Data sources: Repositorio Institucional de la Universidad de AlicanteBergen Open Research Archive - UiBArticle . 2024 . Peer-reviewedData sources: Bergen Open Research Archive - UiBInstitut National de la Recherche Agronomique: ProdINRAArticle . 2024License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)University of Copenhagen: ResearchArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)University of Western Sydney (UWS): Research DirectArticle . 2024License: CC BY NC NDData sources: Bielefeld Academic Search Engine (BASE)Haverford College: Haverford ScholarshipArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Eberhard Karls University Tübingen: Publication SystemArticle . 2024Data sources: Bielefeld Academic Search Engine (BASE)Archivio della ricerca dell'Università di Parma (CINECA IRIS)Article . 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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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2020Publisher:Wiley Authors:Andrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIREAlan K. Knapp;
Alan K. Knapp
Alan K. Knapp in OpenAIREMelinda D. Smith;
Melinda D. Smith
Melinda D. Smith in OpenAIREdoi: 10.1111/gcb.15480
pmid: 33295684
AbstractIn terrestrial ecosystems, climate change forecasts of increased frequencies and magnitudes of wet and dry precipitation anomalies are expected to shift precipitation–net primary productivity (PPT–NPP) relationships from linear to nonlinear. Less understood, however, is how future changes in the duration of PPT anomalies will alter PPT–NPP relationships. A review of the literature shows strong potential for the duration of wet and dry PPT anomalies to impact NPP and to interact with the magnitude of anomalies. Within semi‐arid and mesic grassland ecosystems, PPT gradient experiments indicate that short‐duration (1 year) PPT anomalies are often insufficient to drive nonlinear aboveground NPP responses. But long‐term studies, within desert to forest ecosystems, demonstrate how multi‐year PPT anomalies may result in increasing impacts on NPP through time, and thus alter PPT–NPP relationships. We present a conceptual model detailing how NPP responses to PPT anomalies may amplify with the duration of an event, how responses may vary in xeric vs. mesic ecosystems, and how these differences are most likely due to demographic mechanisms. Experiments that can unravel the independent and interactive impacts of the magnitude and duration of wet and dry PPT anomalies are needed, with multi‐site long‐term PPT gradient experiments particularly well‐suited for this task.
Global Change Biolog... arrow_drop_down Global Change BiologyArticle . 2020 . 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.15480&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu74 citations 74 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
more_vert Global Change Biolog... arrow_drop_down Global Change BiologyArticle . 2020 . 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.15480&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article 2022Publisher:Wiley Authors:Andrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIRERobert K. Shriver;
Robert K. Shriver
Robert K. Shriver in OpenAIREMichael Stemkovski;
John B. Bradford; +2 AuthorsMichael Stemkovski
Michael Stemkovski in OpenAIREAndrew J. Felton;
Andrew J. Felton
Andrew J. Felton in OpenAIRERobert K. Shriver;
Robert K. Shriver
Robert K. Shriver in OpenAIREMichael Stemkovski;
John B. Bradford;Michael Stemkovski
Michael Stemkovski in OpenAIREKatharine N. Suding;
Katharine N. Suding
Katharine N. Suding in OpenAIREPeter B. Adler;
Peter B. Adler
Peter B. Adler in OpenAIREdoi: 10.1111/ele.14132
pmid: 36269682
AbstractRapid climate change may exceed ecosystems' capacities to respond through processes including phenotypic plasticity, compositional turnover and evolutionary adaption. However, consequences of the resulting climate disequilibria for ecosystem functioning are rarely considered in projections of climate change impacts. Combining statistical models fit to historical climate data and remotely‐sensed estimates of herbaceous net primary productivity with an ensemble of climate models, we demonstrate that assumptions concerning the magnitude of climate disequilibrium are a dominant source of uncertainty: models assuming maximum disequilibrium project widespread decreases in productivity in the western US by 2100, while models assuming minimal disequilibrium project productivity increases. Uncertainty related to climate disequilibrium is larger than uncertainties from variation among climate models or emissions pathways. A better understanding of processes that regulate climate disequilibria is essential for improving long‐term projections of ecological responses and informing management to maintain ecosystem functioning at historical baselines.
Ecology Letters arrow_drop_down Ecology LettersArticle . 2022 . 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/ele.14132&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu14 citations 14 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert Ecology Letters arrow_drop_down Ecology LettersArticle . 2022 . 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/ele.14132&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2018Publisher:Wiley Authors: Alan K. Knapp; Charles J.W. Carroll;Robert J. Griffin‐Nolan;
Robert J. Griffin‐Nolan
Robert J. Griffin‐Nolan in OpenAIREIngrid J. Slette;
+9 AuthorsIngrid J. Slette
Ingrid J. Slette in OpenAIREAlan K. Knapp; Charles J.W. Carroll;Robert J. Griffin‐Nolan;
Robert J. Griffin‐Nolan
Robert J. Griffin‐Nolan in OpenAIREIngrid J. Slette;
Ingrid J. Slette
Ingrid J. Slette in OpenAIREFrancis A. Chaves;
Lauren E. Baur;Francis A. Chaves
Francis A. Chaves in OpenAIREAndrew J. Felton;
Jesse E. Gray; Ava M. Hoffman; Nathan P. Lemoine;Andrew J. Felton
Andrew J. Felton in OpenAIREWei Mao;
Alison K. Post;
Melinda D. Smith;Alison K. Post
Alison K. Post in OpenAIREdoi: 10.1002/ecy.2474
pmid: 30054917
AbstractExperiments are widely used in ecology, particularly for assessing global change impacts on ecosystem function. However, results from experiments often are inconsistent with observations made under natural conditions, suggesting the need for rigorous comparisons of experimental and observational studies. We conducted such a “reality check” for a grassland ecosystem by compiling results from nine independently conducted climate change experiments. Each experiment manipulated growing season precipitation (GSP) and measured responses in aboveground net primary production (ANPP). We compared results from experiments with long‐term (33‐yr) annual precipitation andANPPrecords to ask if collectively (n = 44 experiment‐years) experiments yielded estimates ofANPP, rain‐use efficiency (RUE, grams per square meter ANPP per mm precipitation), and the relationship betweenGSPandANPPcomparable to observations. We found that meanANPPandRUEfrom experiments did not deviate from observations. Experiments and observational data also yielded similar functional relationships betweenANPPandGSP, but only within the range of historically observedGSP. Fewer experiments imposed extreme levels ofGSP(outside the observed 33‐yr record), but when these were included, they altered theGSP–ANPPrelationship. This result underscores the need for more experiments imposing extreme precipitation levels to resolve how forecast changes in climate regimes will affect ecosystem function in the future.
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=10.1002/ecy.2474&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess Routesbronze 45 citations 45 popularity Top 10% 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.
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=10.1002/ecy.2474&type=result"></script>'); --> </script>
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