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Landscape heterogeneity explains the genetic differentiation of a forest bird across the Sino-Himalayan Mountains

生物 生态学 进化生物学
作者
Xiaolu Jiao,Lei Wu,Dezhi Zhang,Huan Wang,Feng Dong,L. Yang,Shangyu Wang,Hitoha E. Amano,Weiwei Zhang,Chenxi Jia,Frank E. Rheindt,Fumin Lei,Gang Song
出处
期刊:Molecular Biology and Evolution [Oxford University Press]
标识
DOI:10.1093/molbev/msae027
摘要

Abstract Mountains are the world’s most important centers of biodiversity. The Sino-Himalayan Mountains (SHM) are global biodiversity hotspot due to their extremely high species richness and endemicity. Ample research investigated the impact of the Qinghai-Tibet Plateau uplift and Quaternary glaciations in driving species diversification in plants and animals across the SHM. However, little is known about the role of landscape heterogeneity and other environmental features in driving diversification in this region. We utilized whole genomes and phenotypic data in combination with landscape genetic approaches to investigate population structure, demography, and genetic diversity in a forest songbird species native to the SHM, the Red-billed Leiothrix (Leiothrix lutea). We identified five phylogeographic clades, including one in the East of China, one in Yunnan, and three in Tibet, roughly consistent with differences in song and plumage coloration but incongruent with traditional subspecies boundaries. Isolation-by-resistance model best explained population differentiation within L. lutea, with extensive secondary contact after allopatric isolation leading to admixture among clades. Ecological niche modeling indicated relative stability in the extent of suitable distribution areas of the species across Quaternary glacial cycles. Our results underscore the importance of mountains in the diversification of this species, given that most of the distinct genetic clades are concentrated in a relatively small area in the SHM region, while a single shallow clade populates vast lower-lying areas to the east. This study highlights the crucial role of landscape heterogeneity in promoting differentiation and provides a deep genomic perspective on the mechanisms through which diversity hotspots form.

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