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扩散能力及其对种群遗传分化和多样化的影响。

Dispersal ability and its consequences for population genetic differentiation and diversification.

机构信息

Island Ecology and Evolution Research Group, Institute of Natural Products and Agrobiology (IPNA-CSIC), C/Astrofísico Francisco Sánchez 3, La Laguna, Tenerife, Canary Islands 38206, Spain.

School of Doctoral and Postgraduate Studies, University of La Laguna, 38200 La Laguna, Tenerife, Canary Islands, Spain.

出版信息

Proc Biol Sci. 2022 May 25;289(1975):20220489. doi: 10.1098/rspb.2022.0489. Epub 2022 May 18.

Abstract

Dispersal ability is known to influence geographical structuring of genetic variation within species, with a direct relationship between low vagility and population genetic structure, which can potentially give rise to allopatric speciation. However, our general understanding of the relationship between dispersal ability, population differentiation and lineage diversification is limited. To address this issue, we sampled mitochondrial DNA variation within lineages of beetles and spiders across the Canary Islands to explore the relationships between dispersal ability, differentiation within lineages and diversification. We found positive relationships between population genetic structure and diversification for both beetles and spiders. Comparisons between dispersive and non-dispersive lineages revealed significant differences for both lineage differentiation and diversification. For both taxa, non-dispersive lineages had stronger population genetic structure. Genus-level endemic species richness and proxies for diversification rate within genera were higher in non-dispersive taxa for both beetles and spiders. Comparisons of average and maximum node divergences within genera suggest that species turnover may be higher in non-dispersive genera. Our results reveal a model where dispersal limitation may shape the diversity of lineages across evolutionary timescales by positively influencing intraspecific and species diversity, moderated by higher extinction rates compared to more dispersive lineages.

摘要

扩散能力已知会影响物种内遗传变异的地理结构,低迁移能力与种群遗传结构之间存在直接关系,这可能导致异域物种形成。然而,我们对扩散能力、种群分化和谱系多样化之间的关系的总体理解是有限的。为了解决这个问题,我们在加那利群岛的甲虫和蜘蛛的谱系内采样了线粒体 DNA 变异,以探索扩散能力、谱系内分化和多样化之间的关系。我们发现甲虫和蜘蛛的种群遗传结构与多样化之间存在正相关关系。在谱系分化和多样化方面,扩散和非扩散谱系之间的比较存在显著差异。对于这两个分类群,非扩散谱系的种群遗传结构更强。非扩散类群的属级特有种丰富度和属内多样化率的代理指标在甲虫和蜘蛛中都更高。属内平均和最大节点分歧的比较表明,非扩散属中的物种更替可能更高。我们的结果揭示了一个模型,其中扩散限制可能通过积极影响种内和物种多样性来塑造跨越进化时间尺度的谱系多样性,而与更具扩散能力的谱系相比,扩散限制的物种灭绝率更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0608/9115014/89c33d32b09e/rspb20220489f01.jpg

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