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Get Free AccessSoil organisms provide crucial ecosystem services that support human life. However, little is known about their diversity, distribution, and the threats affecting them. Here, we compiled a global dataset of sampled earthworm communities from over 7000 sites in 56 countries to predict patterns in earthworm diversity, abundance, and biomass. We identify the environmental drivers shaping these patterns. Local species richness and abundance typically peaked at higher latitudes, while biomass peaked in the tropics, patterns opposite to those observed in aboveground organisms. Similar to many aboveground taxa, climate variables were more important in shaping earthworm communities than soil properties or habitat cover. These findings highlight that, while the environmental drivers are similar, conservation strategies to conserve aboveground biodiversity might not be appropriate for earthworm diversity, especially in a changing climate. One sentence summary Global patterns of earthworm diversity, abundance and biomass are driven by climate but patterns differ from many aboveground taxa.
Helen R. P. Phillips, Carlos A. Guerra, Marie Luise Carolina Bartz, María J.I. Briones, George Gardner Brown, Olga Ferlian, Konstantin B. Gongalsky, Julia Krebs, Alberto Orgiazzi, Benjamin Schwarz, Elizabeth M. Bach, Joanne M. Bennett, Ulrich Brose, Thibaud Decaëns, Franciska T. de Vries, Birgitta König‐Ries, Michel Loreau, Jérôme Mathieu, Christian Mulder, Wim H. van der Putten, Kelly S. Ramirez, Matthias C. Rillig, David J. Russell, Michiel Rutgers, Madhav P. Thakur, Diana H. Wall, David A. Wardle, Erin K. Cameron, Nico Eisenhauer (2019). Global distribution of earthworm diversity. bioRxiv (Cold Spring Harbor Laboratory), DOI: 10.1101/587394.
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Type
Preprint
Year
2019
Authors
29
Datasets
0
Total Files
0
Language
English
Journal
bioRxiv (Cold Spring Harbor Laboratory)
DOI
10.1101/587394
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