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用于保护色的基因复合体进化过程中的大规模突变。

Large-scale mutation in the evolution of a gene complex for cryptic coloration.

作者信息

Villoutreix Romain, de Carvalho Clarissa F, Soria-Carrasco Víctor, Lindtke Dorothea, De-la-Mora Marisol, Muschick Moritz, Feder Jeffrey L, Parchman Thomas L, Gompert Zach, Nosil Patrik

机构信息

Department of Animal and Plant Sciences, University of Sheffield, Sheffield S10 2TN, UK.

Centre d'Ecologie Fonctionnelle et Evolutive, UMR 5175 CNRS-Université de Montpellier, École Pratique des Hautes Études, Université Paul Valéry, 34293 Montpellier 5, France.

出版信息

Science. 2020 Jul 24;369(6502):460-466. doi: 10.1126/science.aaz4351.

Abstract

The types of mutations affecting adaptation in the wild are only beginning to be understood. In particular, whether structural changes shape adaptation by suppressing recombination or by creating new mutations is unresolved. Here, we show that multiple linked but recombining loci underlie cryptic color morphs of stick insects. In a related species, these loci are found in a region of suppressed recombination, forming a supergene. However, in seven species of , we found that a megabase-size "supermutation" has deleted color loci in green morphs. Moreover, we found that balancing selection likely contributes more to maintaining this mutation than does introgression. Our results show how suppressed recombination and large-scale mutation can help to package gene complexes into discrete units of diversity such as morphs, ecotypes, or species.

摘要

影响野生生物适应性的突变类型才刚刚开始被了解。特别是,结构变化是通过抑制重组还是通过产生新突变来塑造适应性仍未得到解决。在这里,我们表明多个连锁但可重组的基因座是竹节虫隐秘体色形态的基础。在一个相关物种中,这些基因座位于重组受抑制的区域,形成一个超级基因。然而,在七种[物种名称未给出]中,我们发现一个兆碱基大小的“超级突变”删除了绿色形态中的颜色基因座。此外,我们发现平衡选择可能比基因渗入更有助于维持这种突变。我们的结果表明了抑制重组和大规模突变如何有助于将基因复合体打包成离散的多样性单位,如形态、生态型或物种。

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