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性染色体特异性微染色体的基因组解剖学在一种雌核发育鱼类中。

Genomic anatomy of male-specific microchromosomes in a gynogenetic fish.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Innovative Academy of Seed Design, Hubei Hongshan Laboratory, Chinese Academy of Sciences, Wuhan, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS Genet. 2021 Sep 7;17(9):e1009760. doi: 10.1371/journal.pgen.1009760. eCollection 2021 Sep.

Abstract

Unisexual taxa are commonly considered short-lived as the absence of meiotic recombination is supposed to accumulate deleterious mutations and hinder the creation of genetic diversity. However, the gynogenetic gibel carp (Carassius gibelio) with high genetic diversity and wide ecological distribution has outlived its predicted extinction time of a strict unisexual reproduction population. Unlike other unisexual vertebrates, males associated with supernumerary microchromosomes have been observed in gibel carp, which provides a unique system to explore the rationales underlying male occurrence in unisexual lineage and evolution of unisexual reproduction. Here, we identified a massively expanded satellite DNA cluster on microchromosomes of hexaploid gibel carp via comparing with the ancestral tetraploid crucian carp (Carassius auratus). Based on the satellite cluster, we developed a method for single chromosomal fluorescence microdissection and isolated three male-specific microchromosomes in a male metaphase cell. Genomic anatomy revealed that these male-specific microchromosomes contained homologous sequences of autosomes and abundant repetitive elements. Significantly, several potential male-specific genes with transcriptional activity were identified, among which four and five genes displayed male-specific and male-biased expression in gonads, respectively, during the developmental period of sex determination. Therefore, the male-specific microchromosomes resembling common features of sex chromosomes may be the main driving force for male occurrence in gynogenetic gibel carp, which sheds new light on the evolution of unisexual reproduction.

摘要

雌雄同体的生物通常被认为是短命的,因为减数分裂重组的缺失会积累有害突变并阻碍遗传多样性的产生。然而,具有高度遗传多样性和广泛生态分布的雌核发育银鲫(Carassius gibelio)的生存时间超过了其作为严格的单性生殖种群的预测灭绝时间。与其他单性脊椎动物不同,在银鲫中观察到了与额外的微染色体相关的雄性,这为探索单性生殖谱系中雄性出现的合理性和单性生殖的进化提供了一个独特的系统。在这里,我们通过与祖先的四倍体鲫鱼(Carassius auratus)进行比较,在六倍体银鲫的微染色体上鉴定出了一个大规模扩展的卫星 DNA 簇。基于这个卫星簇,我们开发了一种用于单个染色体荧光显微切割的方法,并在一个雄性中期细胞中分离出了三条雄性特异性的微染色体。基因组解剖表明,这些雄性特异性的微染色体包含了同源的常染色体序列和丰富的重复元件。重要的是,鉴定出了几个具有转录活性的潜在雄性特异性基因,其中四个和五个基因在性别决定的发育期间分别在性腺中表现出雄性特异性和雄性偏性表达。因此,这些类似于性染色体特征的雄性特异性微染色体可能是雌核发育银鲫中雄性出现的主要驱动力,这为单性生殖的进化提供了新的视角。

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