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超级基因的起源和维持促进了大西洋鲱鱼的生态适应。

The origin and maintenance of supergenes contributing to ecological adaptation in Atlantic herring.

机构信息

Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, USA.

Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.

出版信息

Nat Commun. 2024 Oct 23;15(1):9136. doi: 10.1038/s41467-024-53079-7.

Abstract

Chromosomal inversions are associated with local adaptation in many species. However, questions regarding how they are formed, maintained and impact various other evolutionary processes remain elusive. Here, using a large genomic dataset of long-read and short-read sequencing, we ask these questions in one of the most abundant vertebrates on Earth, the Atlantic herring. This species has four megabase-sized inversions associated with ecological adaptation that correlate with water temperature. The S and N inversion alleles at these four loci dominate in the southern and northern parts, respectively, of the species distribution in the North Atlantic Ocean. By determining breakpoint coordinates of the four inversions and the structural variations surrounding them, we hypothesize that these inversions are formed by ectopic recombination between duplicated sequences immediately outside of the inversions. We show that these are old inversions (>1 MY), albeit formed after the split between the Atlantic herring and its sister species, the Pacific herring. There is evidence for extensive gene flux between inversion alleles at all four loci. The large Ne of herring combined with the common occurrence of opposite homozygotes across the species distribution has allowed effective purifying selection to prevent the accumulation of genetic load and repeats within the inversions.

摘要

染色体倒位与许多物种的局部适应有关。然而,关于它们是如何形成、维持以及如何影响其他各种进化过程的问题仍然难以捉摸。在这里,我们利用大量的长读长和短读长测序基因组数据集,在地球上最丰富的脊椎动物之一——大西洋鲱鱼中提出了这些问题。该物种有四个与生态适应相关的兆碱基大小的倒位,与水温相关。这四个位点的 S 和 N 倒位等位基因分别在北大西洋物种分布的南部和北部占主导地位。通过确定这四个倒位的断点坐标及其周围的结构变异,我们假设这些倒位是由倒位外部的重复序列之间的异位重组形成的。我们表明这些倒位是古老的(>1MY),尽管它们是在大西洋鲱鱼与其姐妹种太平洋鲱鱼分裂之后形成的。在所有四个位点的倒位等位基因之间存在广泛的基因流动的证据。鲱鱼的大 Ne 值加上在整个物种分布中普遍存在的相反纯合子,使得有效的纯化选择能够防止遗传负荷和重复序列在倒位中积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ba6/11499932/0f6bed1ac93c/41467_2024_53079_Fig1_HTML.jpg

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