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The Genome of Armadillidium vulgare (Crustacea, Isopoda) Provides Insights into Sex Chromosome Evolution in the Context of Cytoplasmic Sex Determination

机译:Armadillidium vulgare(甲壳纲,等足纲)的基因组提供了在细胞质性别决定背景下对性染色体进化的见解

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摘要

The terrestrial isopod Armadillidium vulgare is an original model to study the evolution of sex determination and symbiosis in animals. Its sex can be determined by ZW sex chromosomes, or by feminizing Wolbachia bacterial endosymbionts. Here, we report the sequence and analysis of the ZW female genome of A. vulgare. A distinguishing feature of the 1.72 gigabase assembly is the abundance of repeats (68 of the genome). We show that the Z and W sex chromosomes are essentially undifferentiated at the molecular level and the W-specific region is extremely small (at most several hundreds of kilobases). Our results suggest that recombination suppression has not spread very far from the sex-determining locus, if at all. This is consistent with A. vulgare possessing evolutionarily young sex chromosomes. We characterized multiple Wolbachia nuclear inserts in the A. vulgare genome, none of which is associated with the W-specific region. We also identified several candidate genes that may be involved in the sex determination or sexual differentiation pathways. The A. vulgare genome serves as a resource for studying the biology and evolution of crustaceans, one of the most speciose and emblematic metazoan groups.
机译:陆生等足类狰是研究动物性别决定和共生进化的原始模型。它的性别可以通过ZW性染色体或女性化的沃尔巴克氏菌内共生体来决定。本文报道了 A. vulgare ZW 雌性基因组的序列和分析。1.72 gigabase 组件的一个显着特征是重复序列的丰度(占基因组的 68%)。我们发现,Z和W性染色体在分子水平上基本上是未分化的,并且W特异性区域非常小(最多几百千碱基)。我们的研究结果表明,重组抑制并没有从性别决定位点扩散到很远的地方,如果有的话。这与具有进化上年轻的性染色体的 A. vulgare 一致。我们表征了 A. vulgare 基因组中的多个沃尔巴克氏体核插入片段,其中没有一个与 W 特异性区域相关。我们还确定了几个可能参与性别决定或性别分化途径的候选基因。A. vulgare基因组是研究甲壳类动物生物学和进化的资源,甲壳类动物是最具特征和象征性的后生动物类群之一。

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