Spatial phylogenetics of Fagales: Investigating drivers of temperate forest distributions

Author:

Folk R. A.1ORCID,Siniscalchi C. M.12,Doby J.3,Kates H. R.3,Manchester S. R.3,Soltis P. S.345,Soltis D. E.3456,Guralnick R. P.35,Belitz M.36

Affiliation:

1. Department of Biological Sciences Mississippi State University Mississippi State Mississippi USA

2. Mississippi State University Libraries Mississippi State Mississippi USA

3. Florida Museum of Natural History University of Florida Gainesville Florida USA

4. Genetics Institute, University of Florida Gainesville Florida USA

5. Biodiversity Institute, University of Florida Gainesville Florida USA

6. Department of Biology University of Florida Gainesville Florida USA

Abstract

AbstractAimQuantifying the phylogenetic diversity of temperate trees is essential for understanding the processes that have shaped the modern distribution of temperate broadleaf forest and other major forest biomes. Here, we focus on Fagales, an iconic member of forests worldwide, to uncover global diversity and endemism patterns and investigate the distribution of root nodule symbiosis (RNS), an important morphological specialisation in this clade, as a key factor behind these patterns.LocationGlobal.TaxonFagales.MethodsWe combined phylogenetic data covering 60.2% of living species, fine‐scale distribution models covering 90% of species, and nodulation data covering all species to investigate the distribution of species richness and phylogenetic diversity at fine spatial scales compared to the distribution of RNS. We identify abiotic environmental factors associated with RNS and with Fagales diversity in general.ResultsWe find the highest species richness in temperate east Asia, eastern North America, and equatorial montane regions of Asia and Central America. By contrast, relative phylogenetic diversity (RPD) is highest at higher latitudes, where RNS also predominates. We found a strong spatial structuring of regionalisations of Fagales floras, reflecting distinct Northern and Southern Hemisphere floras (except a unique Afro‐Boreal region), each with distinct RNS‐environment relationships.Main ConclusionsAlthough species richness and phylogenetic regionalisation for Fagales accord well with traditional biogeographic concepts for temperate forests, this is not the case for RPD. RNS is almost universal in the highest RPD regions, which may reflect ecological filtering promoting RNS in these regions. Our results highlight the utility of global‐scale, clade‐specific spatial phylogenetics and its utility for understanding drivers of diversity in species‐rich clades.

Funder

National Science Foundation

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Phylogenetic diversity and regionalization in the temperate arid zone;Journal of Systematics and Evolution;2024-05-13

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