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河豚中快速性染色体更替背后的一个超级基因的反复易位。

Repeated translocation of a supergene underlying rapid sex chromosome turnover in pufferfish.

作者信息

Kabir Ahammad, Ieda Risa, Hosoya Sho, Fujikawa Daigaku, Atsumi Kazufumi, Tajima Shota, Nozawa Aoi, Koyama Takashi, Hirase Shotaro, Nakamura Osamu, Kadota Mitsutaka, Nishimura Osamu, Kuraku Shigehiro, Nakamura Yasukazu, Kobayashi Hisato, Toyoda Atsushi, Tasumi Satoshi, Kikuchi Kiyoshi

机构信息

Fisheries Laboratory, University of Tokyo, Hamamatsu 431-0214, Japan.

School of Marine Biosciences, Kitasato University, Sagamihara 252-0373, Japan.

出版信息

Proc Natl Acad Sci U S A. 2022 Jun 7;119(23):e2121469119. doi: 10.1073/pnas.2121469119. Epub 2022 Jun 3.

Abstract

Recent studies have revealed a surprising diversity of sex chromosomes in vertebrates. However, the detailed mechanism of their turnover is still elusive. To understand this process, it is necessary to compare closely related species in terms of sex-determining genes and the chromosomes harboring them. Here, we explored the genus Takifugu, in which one strong candidate sex-determining gene, Amhr2, has been identified. To trace the processes involved in transitions in the sex-determination system in this genus, we studied 12 species and found that while the Amhr2 locus likely determines sex in the majority of Takifugu species, three species have acquired sex-determining loci at different chromosomal locations. Nevertheless, the generation of genome assemblies for the three species revealed that they share a portion of the male-specific supergene that contains a candidate sex-determining gene, GsdfY, along with genes that potentially play a role in male fitness. The shared supergene spans ∼100 kb and is flanked by two duplicated regions characterized by CACTA transposable elements. These results suggest that the shared supergene has taken over the role of sex-determining locus from Amhr2 in lineages leading to the three species, and repeated translocations of the supergene underlie the turnover of sex chromosomes in these lineages. These findings highlight the underestimated role of a mobile supergene in the turnover of sex chromosomes in vertebrates.

摘要

最近的研究揭示了脊椎动物中性染色体惊人的多样性。然而,其更替的详细机制仍然难以捉摸。为了理解这一过程,有必要在性别决定基因及其所在染色体方面对亲缘关系密切的物种进行比较。在这里,我们研究了Takifugu属,其中已鉴定出一个强有力的性别决定基因候选基因Amhr2。为了追踪该属性别决定系统转变所涉及的过程,我们研究了12个物种,发现虽然Amhr2位点可能在大多数Takifugu物种中决定性别,但有三个物种在不同的染色体位置获得了性别决定位点。尽管如此,对这三个物种的基因组组装显示,它们共享一部分雄性特异性超级基因,其中包含一个性别决定基因候选基因GsdfY,以及可能在雄性适应性中发挥作用的基因。共享的超级基因跨度约为100 kb,两侧是两个以CACTA转座元件为特征的重复区域。这些结果表明,在导致这三个物种的谱系中,共享的超级基因已经从Amhr2手中接过了性别决定位点的角色,并且超级基因的重复易位是这些谱系中性染色体更替的基础。这些发现突出了一个可移动超级基因在脊椎动物性染色体更替中被低估的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81ff/9191631/c69c44a9cd8c/pnas.2121469119fig01.jpg

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