单克隆体有助于植物在全球入侵后的平行气候适应

IF 13.9 1区 生物学 Q1 ECOLOGY
Paul Battlay, Brandon T. Hendrickson, Jonas I. Mendez-Reneau, James S. Santangelo, Lucas J. Albano, Jonathan Wilson, Aude E. Caizergues, Nevada King, Adriana Puentes, Amelia Tudoran, Cyrille Violle, Francois Vasseur, Courtney M. Patterson, Michael Foster, Caitlyn Stamps, Simon G. Innes, Rémi Allio, Fabio Angeoletto, Daniel N. Anstett, Julia Anstett, Anna Bucharova, Mattheau S. Comerford, Santiago David, Mohsen Falahati-Anbaran, William Godsoe, César González-Lagos, Pedro E. Gundel, Glen Ray Hood, Christian Lampei, Carlos Lara, Adrián Lázaro-Lobo, Deleon Silva Leandro, Thomas J. S. Merritt, Nora Mitchell, Mitra Mohammadi Bazargani, Angela Moles, Maureen Murúa, Juraj Paule, Vera Pfeiffer, Joost A. M. Raeymaekers, Diana J. Rennison, Rodrigo S. Rios, Jennifer K. Rowntree, Adam C. Schneider, Kaitlin Stack Whitney, Ítalo Tamburrino, Acer VanWallendael, Paul Y. Kim, Rob W. Ness, Marc T. J. Johnson, Kathryn A. Hodgins, Nicholas J. Kooyers
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引用次数: 0

摘要

在物种入侵过程中,快速适应的作用在历史上一直被认为是最小的,因为引入是由很少的殖民者和有限的遗传多样性组成的。虽然压倒性的证据表明,快速适应比最初假设的更为普遍,但成功入侵背后的人口和适应过程仍未得到解决。在这里,我们利用一个大的全基因组序列数据集来研究饲料作物Trifolium repens (Fabaceae)在全球入侵期间的殖民历史和适应的相对作用。我们表明,引进的种群包含高水平的遗传变异,几乎没有证据表明存在瓶颈。不同大陆上的独立殖民历史从全基因组人口结构中可见一斑。3条染色体上的5个单倍体(重组有限的大单倍型)在本地和引进范围内作为长期遗传变异存在,并表现出跨大陆平行气候相关适应的强烈特征。在本地和引进范围的田间实验表明,三个单倍体块强烈影响适应性,并在每个范围内表现出与本地适应一致的选择模式。我们的研究结果提供了强有力的证据,表明大效应结构变异在很大程度上促进了世界各地引进物种的快速和平行适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Haploblocks contribute to parallel climate adaptation following global invasion of a cosmopolitan plant

Haploblocks contribute to parallel climate adaptation following global invasion of a cosmopolitan plant

The role of rapid adaptation during species invasions has historically been minimized with the assumption that introductions consist of few colonists and limited genetic diversity. While overwhelming evidence suggests that rapid adaptation is more prevalent than originally assumed, the demographic and adaptive processes underlying successful invasions remain unresolved. Here we leverage a large whole-genome sequence dataset to investigate the relative roles of colonization history and adaptation during the worldwide invasion of the forage crop, Trifolium repens (Fabaceae). We show that introduced populations encompass high levels of genetic variation with little evidence of bottlenecks. Independent colonization histories on different continents are evident from genome-wide population structure. Five haploblocks—large haplotypes with limited recombination—on three chromosomes exist as standing genetic variation within the native and introduced ranges and exhibit strong signatures of parallel climate-associated adaptation across continents. Field experiments in the native and introduced ranges demonstrate that three of the haploblocks strongly affect fitness and exhibit patterns of selection consistent with local adaptation across each range. Our results provide strong evidence that large-effect structural variants contribute substantially to rapid and parallel adaptation of an introduced species throughout the world.

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来源期刊
Nature ecology & evolution
Nature ecology & evolution Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
22.20
自引率
2.40%
发文量
282
期刊介绍: Nature Ecology & Evolution is interested in the full spectrum of ecological and evolutionary biology, encompassing approaches at the molecular, organismal, population, community and ecosystem levels, as well as relevant parts of the social sciences. Nature Ecology & Evolution provides a place where all researchers and policymakers interested in all aspects of life's diversity can come together to learn about the most accomplished and significant advances in the field and to discuss topical issues. An online-only monthly journal, our broad scope ensures that the research published reaches the widest possible audience of scientists.
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