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Synchrony matters more than species richness in plant community stability at a global scale

Title: Synchrony matters more than species richness in plant community stability at a global scale
Authors: Valencia, E; de Bello, F; Galland, T; Adler, PB; Lepš, J; E-Vojtkó, A; van Klink, R; Carmona, CP; Danihelka, J; Dengler, J; Eldridge, DJ; Estiarte, M; García-González, R; Garnier, E; Gómez‐García, D; Harrison, SP; Herben, T; Ibáñez, R; Jentsch, A; Juergens, N; Kertész, M; Klumpp, K; Louault, F; Marrs, RH; Ogaya, R; Ónodi, G; Pakeman, RJ; Pardo, I; Pärtel, M; Peco, B; Peñuelas, J; Pywell, RF; Rueda, M; Schmidt, W; Schmiedel, U; Schuetz, M; Skálová, H; Šmilauer, P; Šmilauerová, M; Smit, C; Song, MH; Stock, M; Val, J; Vandvik, V; Ward, D; Wesche, K; Wiser, SK; Woodcock, BA; Young, TP; Yu, FH; Zobel, M; Götzenberger, L
Publisher Information: Proceedings of the National Academy of Sciences
Publication Year: 2020
Collection: The University of Liverpool Repository
Description: The stability of ecological communities is critical for the stable provisioning of ecosystem services, such as food and forage production, carbon sequestration, and soil fertility. Greater biodiversity is expected to enhance stability across years by decreasing synchrony among species, but the drivers of stability in nature remain poorly resolved. Our analysis of time series from 79 datasets across the world showed that stability was associated more strongly with the degree of synchrony among dominant species than with species richness. The relatively weak influence of species richness is consistent with theory predicting that the effect of richness on stability weakens when synchrony is higher than expected under random fluctuations, which was the case in most communities. Land management, nutrient addition, and climate change treatments had relatively weak and varying effects on stability, modifying how species richness, synchrony, and stability interact. Our results demonstrate the prevalence of biotic drivers on ecosystem stability, with the potential for environmental drivers to alter the intricate relationship among richness, synchrony, and stability.
Document Type: article in journal/newspaper
File Description: text
Language: English
ISSN: 0027-8424
Relation: https://livrepository.liverpool.ac.uk/3095664/1/Paper_381_draft.pdf; Collapse authors list. Valencia, E, de Bello, F, Galland, T, Adler, PB, Lepš, J, E-Vojtkó, A, van Klink, R, Carmona, CP, Danihelka, J, Dengler, J et al (show 42 more authors) , Eldridge, DJ, Estiarte, M, García-González, R, Garnier, E, Gómez‐García, D, Harrison, SP, Herben, T, Ibáñez, R, Jentsch, A, Juergens, N, Kertész, M, Klumpp, K, Louault, F, Marrs, RH orcid:0000-0002-0664-9420 , Ogaya, R, Ónodi, G, Pakeman, RJ, Pardo, I, Pärtel, M, Peco, B, Peñuelas, J, Pywell, RF, Rueda, M, Schmidt, W, Schmiedel, U, Schuetz, M, Skálová, H, Šmilauer, P, Šmilauerová, M, Smit, C, Song, MH, Stock, M, Val, J, Vandvik, V, Ward, D, Wesche, K, Wiser, SK, Woodcock, BA, Young, TP, Yu, FH, Zobel, M and Götzenberger, L (2020) Synchrony matters more than species richness in plant community stability at a global scale Proceedings of the National Academy of Sciences of the United States of America, 117 (39). pp. 24345-24351. ISSN 0027-8424, 1091-6490
DOI: 10.1073/pnas.1920405117
Availability: https://livrepository.liverpool.ac.uk/3095664/; https://doi.org/10.1073/pnas.1920405117; https://livrepository.liverpool.ac.uk/3095664/1/Paper_381_draft.pdf
Accession Number: edsbas.32CC3D15
Database: BASE