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Intensive farming drives long-term shifts in avian community composition 期刊论文
NATURE, 2020, 579 (7799) : 393-+
作者:  Oh, Eugene;  Mark, Kevin G.;  Mocciaro, Annamaria;  Watson, Edmond R.;  Prabu, J. Rajan;  Cha, Denny D.;  Kampmann, Martin;  Gamarra, Nathan;  Zhou, Coral Y.;  Rape, Michael
收藏  |  浏览/下载:15/0  |  提交时间:2020/05/13

Variation in vegetation and climate affects the long-term changes in bird communities in intensive-agriculture habitats, but not in diversified-agriculture or natural-forest habitats, by changing the local colonization and extinction rates.


Agricultural practices constitute both the greatest cause of biodiversity loss and the greatest opportunity for conservation(1,2), given the shrinking scope of protected areas in many regions. Recent studies have documented the high levels of biodiversity-across many taxa and biomes-that agricultural landscapes can support over the short term(1,3,4). However, little is known about the long-term effects of alternative agricultural practices on ecological communities(4,5) Here we document changes in bird communities in intensive-agriculture, diversified-agriculture and natural-forest habitats in 4 regions of Costa Rica over a period of 18 years. Long-term directional shifts in bird communities were evident in intensive- and diversified-agricultural habitats, but were strongest in intensive-agricultural habitats, where the number of endemic and International Union for Conservation of Nature (IUCN) Red List species fell over time. All major guilds, including those involved in pest control, pollination and seed dispersal, were affected. Bird communities in intensive-agricultural habitats proved more susceptible to changes in climate, with hotter and drier periods associated with greater changes in community composition in these settings. These findings demonstrate that diversified agriculture can help to alleviate the long-term loss of biodiversity outside natural protected areas(1).


  
Asynchronous carbon sink saturation in African and Amazonian tropical forests 期刊论文
NATURE, 2020, 579 (7797) : 80-+
作者:  Wannes Hubau;  Simon L. Lewis;  Oliver L. Phillips;  Kofi Affum-Baffoe;  Hans Beeckman;  Aida Cuní;  -Sanchez;  Armandu K. Daniels;  Corneille E. N. Ewango;  Sophie Fauset;  Jacques M. Mukinzi;  Douglas Sheil;  Bonaventure Sonké;  Martin J. P. Sullivan;  Terry C. H. Sunderland;  Hermann Taedoumg;  Sean C. Thomas;  Lee J. T. White;  Katharine A. Abernethy;  Stephen Adu-Bredu;  Christian A. Amani;  Timothy R. Baker;  Lindsay F. Banin;  Fidè;  le Baya;  Serge K. Begne;  Amy C. Bennett;  Fabrice Benedet;  Robert Bitariho;  Yannick E. Bocko;  Pascal Boeckx;  Patrick Boundja;  Roel J. W. Brienen;  Terry Brncic;  Eric Chezeaux;  George B. Chuyong;  Connie J. Clark;  Murray Collins;  James A. Comiskey;  David A. Coomes;  Greta C. Dargie;  Thales de Haulleville;  Marie Noel Djuikouo Kamdem;  Jean-Louis Doucet;  Adriane Esquivel-Muelbert;  Ted R. Feldpausch;  Alusine Fofanah;  Ernest G. Foli;  Martin Gilpin;  Emanuel Gloor;  Christelle Gonmadje;  Sylvie Gourlet-Fleury;  Jefferson S. Hall;  Alan C. Hamilton;  David J. Harris;  Terese B. Hart;  Mireille B. N. Hockemba;  Annette Hladik;  Suspense A. Ifo;  Kathryn J. Jeffery;  Tommaso Jucker;  Emmanuel Kasongo Yakusu;  Elizabeth Kearsley;  David Kenfack;  Alexander Koch;  Miguel E. Leal;  Aurora Levesley;  Jeremy A. Lindsell;  Janvier Lisingo;  Gabriela Lopez-Gonzalez;  Jon C. Lovett;  Jean-Remy Makana;  Yadvinder Malhi;  Andrew R. Marshall;  Jim Martin;  Emanuel H. Martin;  Faustin M. Mbayu;  Vincent P. Medjibe;  Vianet Mihindou;  Edward T. A. Mitchard;  Sam Moore;  Pantaleo K. T. Munishi;  Natacha Nssi Bengone;  Lucas Ojo;  Fidè;  le Evouna Ondo;  Kelvin S.-H. Peh;  Georgia C. Pickavance;  Axel Dalberg Poulsen;  John R. Poulsen;  Lan Qie;  Jan Reitsma;  Francesco Rovero;  Michael D. Swaine;  Joey Talbot;  James Taplin;  David M. Taylor;  Duncan W. Thomas;  Benjamin Toirambe;  John Tshibamba Mukendi;  Darlington Tuagben;  Peter M. Umunay;  Geertje M. F. van der Heijden;  Hans Verbeeck;  Jason Vleminckx;  Simon Willcock;  Hannsjö;  rg Wö;  ll;  John T. Woods;  Lise Zemagho
收藏  |  浏览/下载:23/0  |  提交时间:2020/05/13

Structurally intact tropical forests sequestered about half of the global terrestrial carbon uptake over the 1990s and early 2000s, removing about 15 per cent of anthropogenic carbon dioxide emissions(1-3). Climate-driven vegetation models typically predict that this tropical forest '  carbon sink'  will continue for decades(4,5). Here we assess trends in the carbon sink using 244 structurally intact African tropical forests spanning 11 countries, compare them with 321 published plots from Amazonia and investigate the underlying drivers of the trends. The carbon sink in live aboveground biomass in intact African tropical forests has been stable for the three decades to 2015, at 0.66 tonnes of carbon per hectare per year (95 per cent confidence interval 0.53-0.79), in contrast to the long-term decline in Amazonian forests(6). Therefore the carbon sink responses of Earth'  s two largest expanses of tropical forest have diverged. The difference is largely driven by carbon losses from tree mortality, with no detectable multi-decadal trend in Africa and a long-term increase in Amazonia. Both continents show increasing tree growth, consistent with the expected net effect of rising atmospheric carbon dioxide and air temperature(7-9). Despite the past stability of the African carbon sink, our most intensively monitored plots suggest a post-2010 increase in carbon losses, delayed compared to Amazonia, indicating asynchronous carbon sink saturation on the two continents. A statistical model including carbon dioxide, temperature, drought and forest dynamics accounts for the observed trends and indicates a long-term future decline in the African sink, whereas the Amazonian sink continues to weaken rapidly. Overall, the uptake of carbon into Earth'  s intact tropical forests peaked in the 1990s. Given that the global terrestrial carbon sink is increasing in size, independent observations indicating greater recent carbon uptake into the Northern Hemisphere landmass(10) reinforce our conclusion that the intact tropical forest carbon sink has already peaked. This saturation and ongoing decline of the tropical forest carbon sink has consequences for policies intended to stabilize Earth'  s climate.


  
Predictable hydrological and ecological responses to Holocene North Atlantic variability 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (13) : 5985-5990
作者:  Shuman, Bryan N.;  Marsicek, Jeremiah;  Oswald, W. Wyatt;  Foster, David R.
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
drought  vegetation  North Atlantic  Holocene  climate  
The impact of rising CO2 and acclimation on the response of US forests to global warming 期刊论文
Proceedings of the National Academy of Sciences of the United States of America, 2019, 116 (51) : 25734-25744
作者:  John S. Sperry;  Martin D. Venturas;  Henry N. Todd;  Anna T. Trugman;  William R. L. Anderegg;  Yujie Wang;  and Xiaonan Tai
收藏  |  浏览/下载:7/0  |  提交时间:2020/04/16
acclimation  climate change  drought  forest resilience  vegetation modeling  
Plant functional traits and climate influence drought intensification and land-atmosphere feedbacks 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (28) : 14071-14076
作者:  Anderegg, William R. L.;  Trugman, Anna T.;  Bowling, David R.;  Salvucci, Guido;  Tuttle, Samuel E.
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27
climate change  extreme events  functional diversity  plant hydraulics  vegetation model  
Plant functional traits and climate influence drought intensification and land–atmosphere feedbacks 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (28) : 14071-14076
作者:  William R. L. Anderegg;  Anna T. Trugman;  David R. Bowling;  Guido Salvucci;  and Samuel E. Tuttle
收藏  |  浏览/下载:4/0  |  提交时间:2019/11/27
climate change  extreme events  functional diversity  plant hydraulics  vegetation model  
Parametric transitions between bare and vegetated states in water-driven patterns 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (32) : 8125-8130
作者:  Bertagni, Matteo Bernard;  Perona, Paolo;  Camporeale, Carlo
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
ecomorphodynamics  stochastic processes  rivers  vegetation  Devonian plant hypothesis  
Critical impact of vegetation physiology on the continental hydrologic cycle in response to increasing CO2 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (16) : 4093-4098
作者:  Lemordant, Leo;  Gentine, Pierre;  Swann, Abigail S.;  Cook, Benjamin I.;  Scheff, Jacob
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
water cycle  vegetation physiology  climate change  land-atmosphere coupling  hydrology  
Long-term nutrient reductions lead to the unprecedented recovery of a temperate coastal region 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (14) : 3658-3662
作者:  Lefcheck, Jonathan S.;  Orth, Robert J.;  Dennison, William C.;  Wilcox, David J.;  Murphy, Rebecca R.;  Keisman, Jennifer;  Gurbisz, Cassie;  Hannam, Michael;  Landry, J. Brooke;  Moore, Kenneth A.;  Patrick, Christopher J.;  Testa, Jeremy;  Weller, Donald E.;  Batiuk, Richard A.
收藏  |  浏览/下载:14/0  |  提交时间:2019/11/27
submersed aquatic vegetation  seagrass  eutrophication  global change  ecosystem management  
Drought sensitivity mapping using two one-class support vector machine algorithms 期刊论文
ATMOSPHERIC RESEARCH, 2017, 193
作者:  Roodposhti, Majid Shadman;  Safarrad, Taher;  Shahabi, Himan
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
Drought sensitivity map (DSM)  Enhanced vegetation index (EVI)  Standardised precipitation index (SPI)  One-class support vector machine (OC-SVM)  Kermanshah