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https://hdl.handle.net/10316/113299
Title: | The global contribution of soil mosses to ecosystem services | Authors: | Eldridge, David J. Guirado, Emilio Reich, Peter B. Ochoa-Hueso, Raúl Berdugo, Miguel Sáez-Sandino, Tadeo Blanco-Pastor, José L. Tedersoo, Leho Plaza, César Ding, Jingyi Sun, Wei Mamet, Steven Cui, Haiying He, Ji-Zheng Hu, Hang-Wei Sokoya, Blessing Abades, Sebastian Alfaro, Fernando Bamigboye, Adebola R. Bastida, Felipe de los Ríos, Asunción Durán, Jorge Gaitan, Juan J. Guerra, Carlos A. Grebenc, Tine Illán, Javier G. Liu, Yu-Rong Makhalanyane, Thulani P. Mallen-Cooper, Max Molina-Montenegro, Marco A. Moreno, José L. Nahberger, Tina U. Peñaloza-Bojacá, Gabriel F. Picó, Sergio Rey, Ana Rodríguez, Alexandra Siebe, Christina Teixido, Alberto L. Torres-Díaz, Cristian Trivedi, Pankaj Wang, Juntao Wang, Ling Wang, Jianyong Yang, Tianxue Zaady, Eli Zhou, Xiaobing Zhou, Xin-Quan Zhou, Guiyao Liu, Shengen Delgado-Baquerizo, Manuel |
Issue Date: | 2023 | Publisher: | Springer Nature | Project: | LRB17\1019 (MUSGONET) PID2020-115813RA-I00 info:eu-repo/grantAgreement/UIDB/04004/2021 SFRH/BDP/108913/2015 2020.03670.CEECIND |
metadata.degois.publication.title: | Nature Geoscience | metadata.degois.publication.volume: | 16 | metadata.degois.publication.issue: | 5 | Abstract: | Soil mosses are among the most widely distributed organisms on land. Experiments and observations suggest that they contribute to terrestrial soil biodiversity and function, yet their ecological contribution to soil has never been assessed globally under natural conditions. Here we conducted the most comprehensive global standardized field study to quantify how soil mosses influence 8 ecosystem services associated with 24 soil biodiversity and functional attributes across wide environmental gradients from all continents. We found that soil mosses are associated with greater carbon sequestration, pool sizes for key nutrients and organic matter decomposition rates but a lower proportion of soil-borne plant pathogens than unvegetated soils. Mosses are especially important for supporting multiple ecosystem services where vascular-plant cover is low. Globally, soil mosses potentially support 6.43 Gt more carbon in the soil layer than do bare soils. The amount of soil carbon associated with mosses is up to six times the annual global carbon emissions from any altered land use globally. The largest positive contribution of mosses to soils occurs under a high cover of mat and turf mosses, in less-productive ecosystems and on sandy and salty soils. Our results highlight the contribution of mosses to soil life and functions and the need to conserve these important organisms to support healthy soils. | URI: | https://hdl.handle.net/10316/113299 | ISSN: | 1752-0894 1752-0908 |
DOI: | 10.1038/s41561-023-01170-x | Rights: | openAccess |
Appears in Collections: | FCTUC Ciências da Vida - Artigos em Revistas Internacionais I&D CFE - Artigos em Revistas Internacionais |
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