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Global distribution of earthworm diversity.

Authors :
Phillips HRP
Guerra CA
Bartz MLC
Briones MJI
Brown G
Crowther TW
Ferlian O
Gongalsky KB
van den Hoogen J
Krebs J
Orgiazzi A
Routh D
Schwarz B
Bach EM
Bennett J
Brose U
Decaëns T
König-Ries B
Loreau M
Mathieu J
Mulder C
van der Putten WH
Ramirez KS
Rillig MC
Russell D
Rutgers M
Thakur MP
de Vries FT
Wall DH
Wardle DA
Arai M
Ayuke FO
Baker GH
Beauséjour R
Bedano JC
Birkhofer K
Blanchart E
Blossey B
Bolger T
Bradley RL
Callaham MA
Capowiez Y
Caulfield ME
Choi A
Crotty FV
Dávalos A
Cosin DJD
Dominguez A
Duhour AE
van Eekeren N
Emmerling C
Falco LB
Fernández R
Fonte SJ
Fragoso C
Franco ALC
Fugère M
Fusilero AT
Gholami S
Gundale MJ
López MG
Hackenberger DK
Hernández LM
Hishi T
Holdsworth AR
Holmstrup M
Hopfensperger KN
Lwanga EH
Huhta V
Hurisso TT
Iannone BV 3rd
Iordache M
Joschko M
Kaneko N
Kanianska R
Keith AM
Kelly CA
Kernecker ML
Klaminder J
Koné AW
Kooch Y
Kukkonen ST
Lalthanzara H
Lammel DR
Lebedev IM
Li Y
Lidon JBJ
Lincoln NK
Loss SR
Marichal R
Matula R
Moos JH
Moreno G
Morón-Ríos A
Muys B
Neirynck J
Norgrove L
Novo M
Nuutinen V
Nuzzo V
Rahman P M
Pansu J
Paudel S
Pérès G
Pérez-Camacho L
Piñeiro R
Ponge JF
Rashid MI
Rebollo S
Rodeiro-Iglesias J
Rodríguez MÁ
Roth AM
Rousseau GX
Rozen A
Sayad E
van Schaik L
Scharenbroch BC
Schirrmann M
Schmidt O
Schröder B
Seeber J
Shashkov MP
Singh J
Smith SM
Steinwandter M
Talavera JA
Trigo D
Tsukamoto J
de Valença AW
Vanek SJ
Virto I
Wackett AA
Warren MW
Wehr NH
Whalen JK
Wironen MB
Wolters V
Zenkova IV
Zhang W
Cameron EK
Eisenhauer N
Source :
Science (New York, N.Y.) [Science] 2019 Oct 25; Vol. 366 (6464), pp. 480-485.
Publication Year :
2019

Abstract

Soil organisms, including earthworms, are a key component of terrestrial ecosystems. However, little is known about their diversity, their distribution, and the threats affecting them. We compiled a global dataset of sampled earthworm communities from 6928 sites in 57 countries as a basis for predicting patterns in earthworm diversity, abundance, and biomass. We found that local species richness and abundance typically peaked at higher latitudes, displaying patterns opposite to those observed in aboveground organisms. However, high species dissimilarity across tropical locations may cause diversity across the entirety of the tropics to be higher than elsewhere. Climate variables were found to be more important in shaping earthworm communities than soil properties or habitat cover. These findings suggest that climate change may have serious implications for earthworm communities and for the functions they provide.<br /> (Copyright © 2019 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.)

Details

Language :
English
ISSN :
1095-9203
Volume :
366
Issue :
6464
Database :
MEDLINE
Journal :
Science (New York, N.Y.)
Publication Type :
Academic Journal
Accession number :
31649197
Full Text :
https://doi.org/10.1126/science.aax4851