The Ecology of Hybrid Incompatibilities.

IF 6.9 2区 生物学 Q1 CELL BIOLOGY Cold Spring Harbor perspectives in biology Pub Date : 2024-09-03 DOI:10.1101/cshperspect.a041440
Ken A Thompson, Yaniv Brandvain, Jenn M Coughlan, Kira E Delmore, Hannah Justen, Catherine R Linnen, Daniel Ortiz-Barrientos, Catherine A Rushworth, Hilde Schneemann, Molly Schumer, Rike Stelkens
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Abstract

Ecologically mediated selection against hybrids, caused by hybrid phenotypes fitting poorly into available niches, is typically viewed as distinct from selection caused by epistatic Dobzhansky-Muller hybrid incompatibilities. Here, we show how selection against transgressive phenotypes in hybrids manifests as incompatibility. After outlining our logic, we summarize current approaches for studying ecology-based selection on hybrids. We then quantitatively review QTL-mapping studies and find traits differing between parent taxa are typically polygenic. Next, we describe how verbal models of selection on hybrids translate to phenotypic and genetic fitness landscapes, highlighting emerging approaches for detecting polygenic incompatibilities. Finally, in a synthesis of published data, we report that trait transgression-and thus possibly extrinsic hybrid incompatibility in hybrids-escalates with the phenotypic divergence between parents. We discuss conceptual implications and conclude that studying the ecological basis of hybrid incompatibility will facilitate new discoveries about mechanisms of speciation.

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杂交不相容的生态学。
生态学介导的针对杂交种的选择,是由杂交种的表型不能适应现有的生态位所引起的,通常被视为有别于由外显的多布赞斯基-穆勒杂交不兼容性所引起的选择。在这里,我们将展示针对杂交种转基因表型的选择是如何表现为不兼容性的。在概述了我们的逻辑之后,我们总结了目前研究基于生态学的杂交种选择的方法。然后,我们定量回顾了 QTL 图谱研究,发现亲本类群之间的性状差异通常是多基因的。接下来,我们描述了杂交种选择的口头模型如何转化为表型和遗传适应性景观,重点介绍了检测多基因不相容性的新兴方法。最后,综合已发表的数据,我们报告了性状变异--因此可能是杂交种的外在杂交不相容性--随着亲本之间表型差异的增加而增加。我们讨论了概念上的影响,并得出结论:研究杂交不相容性的生态基础将有助于发现物种分化的新机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
15.00
自引率
1.40%
发文量
56
审稿时长
3-8 weeks
期刊介绍: Cold Spring Harbor Perspectives in Biology offers a comprehensive platform in the molecular life sciences, featuring reviews that span molecular, cell, and developmental biology, genetics, neuroscience, immunology, cancer biology, and molecular pathology. This online publication provides in-depth insights into various topics, making it a valuable resource for those engaged in diverse aspects of biological research.
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