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亚利桑那葡萄的突变负荷和适应性变异受气候和物种分布动态的影响。

Mutational load and adaptive variation are shaped by climate and species range dynamics in Vitis arizonica.

作者信息

Fiscus Christopher J, Aguirre-Liguori Jonás A, Gaut Garren R J, Gaut Brandon S

机构信息

Department of Ecology and Evolutionary Biology, University of California, Irvine, CA, 92697, USA.

Departamento de Ecología Tropical, Campus de Ciencias Biológicas y Agropecuarias, Universidad Autónoma de Yucatán, Mérida, 97000, Mexico.

出版信息

New Phytol. 2025 Jul;247(2):998-1014. doi: 10.1111/nph.70238. Epub 2025 May 26.

Abstract

Genetic load can reduce fitness and hinder adaptation. While its genetic underpinnings are well established, the influence of environmental variation on genetic load is less well characterized, as is the relationship between genetic load and putatively adaptive genetic variation. This study examines the interplay among climate, species range dynamics, adaptive variation, and mutational load - a genomic measure of genetic load - in Vitis arizonica, a wild grape native to the American Southwest. We estimated mutational load and identified climate-associated adaptive genetic variants in 162 individuals across the species' range. Using a random forest model, we analyzed the relationship between mutational load, climate, and range shifts. Our findings linked mutational load to climatic variation, historical dispersion, and heterozygosity. Populations at the leading edge of range expansion harbored higher load and fewer putatively adaptive alleles associated with climate. Climate projections suggest that V. arizonica will expand its range by the end of the century, accompanied by a slight increase in mutational load at the population level. This study advances understanding of how environmental and geographic factors shape genetic load and adaptation, highlighting the need to integrate deleterious variation into broader models of species response to climate change.

摘要

遗传负荷会降低适应性并阻碍适应。虽然其遗传基础已得到充分确立,但环境变异对遗传负荷的影响以及遗传负荷与假定适应性遗传变异之间的关系却鲜为人知。本研究考察了气候、物种分布范围动态、适应性变异和突变负荷(一种遗传负荷的基因组指标)之间的相互作用,研究对象是原产于美国西南部的野生葡萄——亚利桑那葡萄(Vitis arizonica)。我们估计了162个分布于该物种整个分布范围内个体的突变负荷,并鉴定了与气候相关的适应性遗传变异。利用随机森林模型,我们分析了突变负荷、气候和分布范围变化之间的关系。我们的研究结果将突变负荷与气候变化、历史扩散及杂合性联系起来。分布范围扩张前沿的种群具有更高的负荷以及更少与气候相关的假定适应性等位基因。气候预测表明,到本世纪末亚利桑那葡萄的分布范围将会扩大,同时种群水平的突变负荷会略有增加。本研究增进了我们对环境和地理因素如何塑造遗传负荷及适应的理解,强调了将有害变异纳入物种对气候变化响应的更广泛模型的必要性。

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