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Distance decay 2.0 – A global synthesis of taxonomic and functional turnover in ecological communities

距离衰减 地理距离 β多样性 生态学 空间生态学 壁炉试验 指数衰减 生态系统 系统发育中的距离矩阵 生物
作者
Caio Graco-Roza,Sonja Aarnio,Nerea Abrego,Alicia Teresa Rosario Acosta,Janne Alahuhta,Jan Altman,Claudia Angiolini,Jukka Aroviita,Fabio Attorre,Lars Baastrup-Spohr,José J. Barrera‐Alba,Jonathan Belmaker,Idoia Biurrun,Gianmaria Bonari,Helge Bruelheide,Sabina Burrascano,Marta Carboni,Pedro Cardoso,José C. Carvalho,Giuseppe Castaldelli,Morten Christensen,Gilsineia Correa,Iwona Dembicz,Jürgen Dengler,Jiri Dolezal,Patrícia Domingos,Tibor Erős,Carlos E. L. Ferreira,Goffredo Filibeck,Sergio R. Floeter,Alan M. Friedlander,Johanna Gammal,Anna Gavioli,Martin M. Gossner,Itai Granot,Riccardo Guarino,Camilla Gustafsson,Brian Hayden,Siwen He,Jacob Heilmann‐Clausen,Jani Heino,John T. Hunter,Vera L. M. Huszar,Monika Janišová,Jenny Jyrkänkallio-Mikkola,Kimmo K. Kahilainen,Julia Kemppinen,Łukasz Kozub,Carla Kruk,Michel Kulbiki,Anna Kuzemko,Peter Christiaan le Roux,Aleksi Lehikoinen,Domênica Teixeira de Lima,Angel Lopez‐Urrutia,Balázs András Lukács,Miska Luoto,Stefano Mammola,Marcelo Manzi Marinho,Luciana da Silva Menezes,Marco Milardi,Marcela Miranda,Gleyci A. O. Moser,Joerg Mueller,Pekka Niittynen,Alf Norkko,Arkadiusz Nowak,Jean Pierre Henry Balbaud Ometto,Otso Ovaskainen,Gerhard E. Overbeck,F. S. Pacheco,Virpi Pajunen,Salza Palpurina,Félix Picazo,Juan Antonio Campos,Iván F. Rodil,Francesco Maria Sabatini,Shira Salingré,Michele De Sanctis,Angel M. Segura,Lúcia H. S. Silva,Zora Dajić-Stevanović,Grzegorz Swacha,Anette Teittinen,Kimmo Tolonen,Ioannis Tsiripidis,Leena Virta,Beixin Wang,Jian Wang,Wolfgang Weisser,Yuan Xu,Janne Soininen
出处
期刊:Global Ecology and Biogeography [Wiley]
卷期号:31 (7): 1399-1421
标识
DOI:10.1111/geb.13513
摘要

Aim Understanding the variation in community composition and species abundances (i.e., β-diversity) is at the heart of community ecology. A common approach to examine β-diversity is to evaluate directional variation in community composition by measuring the decay in the similarity among pairs of communities along spatial or environmental distance. We provide the first global synthesis of taxonomic and functional distance decay along spatial and environmental distance by analysing 148 datasets comprising different types of organisms and environments. Location Global. Time period 1990 to present. Major taxa studied From diatoms to mammals. Method We measured the strength of the decay using ranked Mantel tests (Mantel r) and the rate of distance decay as the slope of an exponential fit using generalized linear models. We used null models to test whether functional similarity decays faster or slower than expected given the taxonomic decay along the spatial and environmental distance. We also unveiled the factors driving the rate of decay across the datasets, including latitude, spatial extent, realm and organismal features. Results Taxonomic distance decay was stronger than functional distance decay along both spatial and environmental distance. Functional distance decay was random given the taxonomic distance decay. The rate of taxonomic and functional spatial distance decay was fastest in the datasets from mid-latitudes. Overall, datasets covering larger spatial extents showed a lower rate of decay along spatial distance but a higher rate of decay along environmental distance. Marine ecosystems had the slowest rate of decay along environmental distances. Main conclusions In general, taxonomic distance decay is a useful tool for biogeographical research because it reflects dispersal-related factors in addition to species responses to climatic and environmental variables. Moreover, functional distance decay might be a cost-effective option for investigating community changes in heterogeneous environments.
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