Microbial diversity drives multifunctionality in terrestrial ecosystems

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作者
Manuel Delgado-Baquerizo
Fernando T. Maestre
Peter B. Reich
Thomas C. Jeffries
Juan J. Gaitan
Daniel Encinar
Miguel Berdugo
Colin D. Campbell
Brajesh K. Singh
机构
[1] Hawkesbury Institute for the Environment,Departamento de Biología y Geología
[2] Western Sydney University,Department of Forest Resources
[3] Área de Biodiversidad y Conservación,undefined
[4] Física y Química Inorgánica,undefined
[5] Escuela Superior de Ciencias Experimentales y Tecnología,undefined
[6] Universidad Rey Juan Carlos,undefined
[7] Calle Tulipán Sin Número,undefined
[8] University of Minnesota,undefined
[9] Instituto de Suelos,undefined
[10] CIRN,undefined
[11] INTA,undefined
[12] Nicolas Repetto y de los Reseros Sin Número,undefined
[13] The James Hutton Institute,undefined
[14] Global Centre for Land-Based Innovation,undefined
[15] Western Sydney University,undefined
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Despite the importance of microbial communities for ecosystem services and human welfare, the relationship between microbial diversity and multiple ecosystem functions and services (that is, multifunctionality) at the global scale has yet to be evaluated. Here we use two independent, large-scale databases with contrasting geographic coverage (from 78 global drylands and from 179 locations across Scotland, respectively), and report that soil microbial diversity positively relates to multifunctionality in terrestrial ecosystems. The direct positive effects of microbial diversity were maintained even when accounting simultaneously for multiple multifunctionality drivers (climate, soil abiotic factors and spatial predictors). Our findings provide empirical evidence that any loss in microbial diversity will likely reduce multifunctionality, negatively impacting the provision of services such as climate regulation, soil fertility and food and fibre production by terrestrial ecosystems.
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