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      Plant diversity enhanced yield and mitigated drought impacts in intensively managed grassland communities

      1 , 2 , 1 , 2
      Journal of Applied Ecology
      Wiley

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          Biodiversity increases the resistance of ecosystem productivity to climate extremes.

          It remains unclear whether biodiversity buffers ecosystems against climate extremes, which are becoming increasingly frequent worldwide. Early results suggested that the ecosystem productivity of diverse grassland plant communities was more resistant, changing less during drought, and more resilient, recovering more quickly after drought, than that of depauperate communities. However, subsequent experimental tests produced mixed results. Here we use data from 46 experiments that manipulated grassland plant diversity to test whether biodiversity provides resistance during and resilience after climate events. We show that biodiversity increased ecosystem resistance for a broad range of climate events, including wet or dry, moderate or extreme, and brief or prolonged events. Across all studies and climate events, the productivity of low-diversity communities with one or two species changed by approximately 50% during climate events, whereas that of high-diversity communities with 16-32 species was more resistant, changing by only approximately 25%. By a year after each climate event, ecosystem productivity had often fully recovered, or overshot, normal levels of productivity in both high- and low-diversity communities, leading to no detectable dependence of ecosystem resilience on biodiversity. Our results suggest that biodiversity mainly stabilizes ecosystem productivity, and productivity-dependent ecosystem services, by increasing resistance to climate events. Anthropogenic environmental changes that drive biodiversity loss thus seem likely to decrease ecosystem stability, and restoration of biodiversity to increase it, mainly by changing the resistance of ecosystem productivity to climate events.
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            EFFECTS OF PLANT COMPOSITION AND DIVERSITY ON NUTRIENT CYCLING

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              Ecosystem function enhanced by combining four functional types of plant species in intensively managed grassland mixtures: a 3-year continental-scale field experiment

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                Author and article information

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                Journal
                Journal of Applied Ecology
                J Appl Ecol
                Wiley
                0021-8901
                1365-2664
                June 29 2021
                Affiliations
                [1 ]Department of Environment, Soils and Land Use TeagascJohnstown Castle Wexford Ireland
                [2 ]School of Computer Science and Statistics Trinity College Dublin Dublin 2 Ireland
                Article
                10.1111/1365-2664.13894
                21a70f19-de88-4e02-8329-9a7c2b14cb8e
                © 2021

                http://creativecommons.org/licenses/by-nc/4.0/

                http://doi.wiley.com/10.1002/tdm_license_1.1

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