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结构变异对物种形成有多重要?

How Important Are Structural Variants for Speciation?

机构信息

Department of Biology, Utah State University, Logan, UT 84322, USA.

Department of Zoology, Faculty of Science, Charles University, 12800 Prague, Czech Republic.

出版信息

Genes (Basel). 2021 Jul 17;12(7):1084. doi: 10.3390/genes12071084.

Abstract

Understanding the genetic basis of reproductive isolation is a central issue in the study of speciation. Structural variants (SVs); that is, structural changes in DNA, including inversions, translocations, insertions, deletions, and duplications, are common in a broad range of organisms and have been hypothesized to play a central role in speciation. Recent advances in molecular and statistical methods have identified structural variants, especially inversions, underlying ecologically important traits; thus, suggesting these mutations contribute to adaptation. However, the contribution of structural variants to reproductive isolation between species-and the underlying mechanism by which structural variants most often contribute to speciation-remain unclear. Here, we review (i) different mechanisms by which structural variants can generate or maintain reproductive isolation; (ii) patterns expected with these different mechanisms; and (iii) relevant empirical examples of each. We also summarize the available sequencing and bioinformatic methods to detect structural variants. Lastly, we suggest empirical approaches and new research directions to help obtain a more complete assessment of the role of structural variants in speciation.

摘要

理解生殖隔离的遗传基础是物种形成研究的核心问题。结构变异(SV),即 DNA 的结构变化,包括倒位、易位、插入、缺失和重复,在广泛的生物中很常见,并被假设在物种形成中起核心作用。分子和统计方法的最新进展已经确定了结构变异,特别是倒位,是生态重要特征的基础;因此,这些突变有助于适应。然而,结构变异对物种间生殖隔离的贡献,以及结构变异最常导致物种形成的潜在机制,仍然不清楚。在这里,我们回顾了(i)结构变异可以产生或维持生殖隔离的不同机制;(ii)这些不同机制预期的模式;以及(iii)每种机制的相关实证例子。我们还总结了可用的测序和生物信息学方法来检测结构变异。最后,我们提出了一些经验方法和新的研究方向,以帮助更全面地评估结构变异在物种形成中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759c/8305853/ed4106080199/genes-12-01084-g001.jpg

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