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迁徙相关的超级基因揭示了北大西洋鳕鱼生物复杂性的丧失。

A migration-associated supergene reveals loss of biocomplexity in Atlantic cod.

机构信息

Fisheries and Oceans Canada, Northwest Atlantic Fisheries Centre, St. John's, Newfoundland, Canada.

Biology Department, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

Sci Adv. 2019 Jun 26;5(6):eaav2461. doi: 10.1126/sciadv.aav2461. eCollection 2019 Jun.

Abstract

Chromosome structural variation may underpin ecologically important intraspecific diversity by reducing recombination within supergenes containing linked, coadapted alleles. Here, we confirm that an ancient chromosomal rearrangement is strongly associated with migratory phenotype and individual genetic structure in Atlantic cod () across the Northwest Atlantic. We reconstruct trends in effective population size over the last century and reveal declines in effective population size matching onset of industrialized harvest (after 1950). We find different demographic trajectories between individuals homozygous for the chromosomal rearrangement relative to heterozygous or homozygous individuals for the noninverted haplotype, suggesting different selective histories across the past 150 years. These results illustrate how chromosomal structural diversity can mediate fine-scale genetic, phenotypic, and demographic variation in a highly connected marine species and show how overfishing may have led to loss of biocomplexity within Northern cod stock.

摘要

染色体结构变异可能通过减少包含连锁、协同适应等位基因的超级基因内的重组,从而为具有生态重要性的种内多样性提供基础。在这里,我们证实了在西北大西洋的大西洋鳕鱼()中,一个古老的染色体重排与迁徙表型和个体遗传结构强烈相关。我们重建了过去一个世纪有效种群数量的趋势,并揭示了与工业化捕捞开始(1950 年后)相匹配的有效种群数量下降。我们发现,相对于非倒位单倍型的杂合子或纯合子个体,染色体重排纯合子个体的个体具有不同的种群动态轨迹,这表明过去 150 年来它们具有不同的选择历史。这些结果说明了染色体结构多样性如何在高度连通的海洋物种中介导精细的遗传、表型和种群动态变化,并展示了过度捕捞如何导致北方鳕鱼种群生物复杂性的丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/382e/6594766/2c5f1b505e26/aav2461-F1.jpg

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