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      Countervailing effects on pine and oak leaf litter decomposition in human-altered Mediterranean ecosystems

      , , ,
      Oecologia
      Springer Nature

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          Plant species traits are the predominant control on litter decomposition rates within biomes worldwide.

          Worldwide decomposition rates depend both on climate and the legacy of plant functional traits as litter quality. To quantify the degree to which functional differentiation among species affects their litter decomposition rates, we brought together leaf trait and litter mass loss data for 818 species from 66 decomposition experiments on six continents. We show that: (i) the magnitude of species-driven differences is much larger than previously thought and greater than climate-driven variation; (ii) the decomposability of a species' litter is consistently correlated with that species' ecological strategy within different ecosystems globally, representing a new connection between whole plant carbon strategy and biogeochemical cycling. This connection between plant strategies and decomposability is crucial for both understanding vegetation-soil feedbacks, and for improving forecasts of the global carbon cycle.
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            Climate, Leaf Litter Chemistry and Leaf Litter Decomposition in Terrestrial Ecosystems: A Triangular Relationship

            Rien Aerts (1997)
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              Biodiversity and Litter Decomposition in Terrestrial Ecosystems

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                Author and article information

                Journal
                Oecologia
                Oecologia
                Springer Nature
                0029-8549
                1432-1939
                April 2015
                February 15 2015
                April 2015
                : 177
                : 4
                : 1039-1051
                Article
                10.1007/s00442-015-3228-3
                25680333
                6452cd9b-d915-48c7-9acf-33d1e705d86d
                © 2015
                History

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