Spatial phylogenetics of Fagales: Investigating drivers of temperate forest distributions

IF 3.4 2区 环境科学与生态学 Q2 ECOLOGY
R. A. Folk, C. M. Siniscalchi, J. Doby, H. R. Kates, S. R. Manchester, P. S. Soltis, D. E. Soltis, R. P. Guralnick, M. Belitz
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Abstract

Aim

Quantifying 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.

Location

Global.

Taxon

Fagales.

Methods

We 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.

Results

We 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 Conclusions

Although 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.

Abstract Image

椑科植物的空间系统发育:调查温带森林分布的驱动因素
目的量化温带树木的系统发育多样性对于了解形成温带阔叶林和其他主要森林生物群落现代分布的过程至关重要。在此,我们以全球森林的标志性成员椑木为重点,揭示全球多样性和特有性模式,并研究根瘤共生(RNS)的分布,这是该支系的一个重要形态特化,也是这些模式背后的一个关键因素。方法我们结合了涵盖 60.2% 现存物种的系统发育数据、涵盖 90% 物种的精细分布模型以及涵盖所有物种的结核数据,研究了与 RNS 分布相比,物种丰富度和系统发育多样性在精细空间尺度上的分布情况。结果我们发现温带东亚、北美东部以及亚洲和中美洲的赤道山地地区的物种丰富度最高。相比之下,相对系统发育多样性(RPD)在高纬度地区最高,RNS在这些地区也占主导地位。我们发现椑木植物区系的空间结构具有很强的区域性,反映了不同的北半球和南半球植物区系(除了一个独特的非洲-北方地区),每个区域都具有不同的 RNS-环境关系。RNS几乎普遍存在于RPD最高的地区,这可能反映了这些地区促进RNS的生态过滤作用。我们的研究结果突显了全球尺度、特定支系的空间系统发生学的实用性,以及它在了解物种丰富的支系的多样性驱动因素方面的实用性。
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来源期刊
Journal of Biogeography
Journal of Biogeography 环境科学-生态学
CiteScore
7.70
自引率
5.10%
发文量
203
审稿时长
2.2 months
期刊介绍: Papers dealing with all aspects of spatial, ecological and historical biogeography are considered for publication in Journal of Biogeography. The mission of the journal is to contribute to the growth and societal relevance of the discipline of biogeography through its role in the dissemination of biogeographical research.
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