Jade Castel, Florence Pradillon, Valérie Cueff, Guillaume Leger, Claire Daguin-Thiébaut, Stéphanie Ruault, Jean Mary, Stéphane Hourdez, Didier Jollivet, Thomas Broquet
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引用次数: 0
摘要
软体动物在两性分离和雌雄同体之间经历了多次转变,这对研究性别决定和分化的演化很有意义。在这里,我们将 RAD 测序获得的多焦点基因型与性腺解剖观察相结合,研究了生活在西南太平洋的三种深海热液喷口腹足纲阿尔文尼孔查属动物。我们发现所有三个物种(A. boucheti、A. strummeri 和 A. kojimai)都具有相同的雄性异配 XY 性别决定系统,但 XX A. kojimai 个体的性腺被不同比例的雄性生殖组织侵占。对 Y 特异性 RAD 位点的鉴定(仅在 A. boucheti 发现)和对所有物种共有的三个性连锁位点的系统进化分析表明,X-Y 重组在每个物种内部都有不同的进化。围绕一个共同的性别决定系统,三个物种的性腺发育出现了差异,这种情况为人们了解鲜为人知的深海物种的繁殖模式提供了新的视角,并为研究性染色体上重组抑制的进化及其与混合性系统或过渡性系统的关系提供了机会。
Genetic sex determination in three closely related hydrothermal vent gastropods, including one species with intersex individuals.
Molluscs have undergone many transitions between separate sexes and hermaphroditism, which is of interest in studying the evolution of sex determination and differentiation. Here, we combined multi-locus genotypes obtained from restriction site-associated DNA (RAD) sequencing with anatomical observations of the gonads of three deep-sea hydrothermal vent gastropods of the genus Alviniconcha living in the southwest Pacific. We found that all three species (Alviniconcha boucheti, Alviniconcha strummeri, and Alviniconcha kojimai) share the same male-heterogametic XY sex-determination system but that the gonads of XX A. kojimai individuals are invaded by a variable proportion of male reproductive tissue. The identification of Y-specific RAD loci (found only in A. boucheti) and the phylogenetic analysis of three sex-linked loci shared by all species suggested that X-Y recombination has evolved differently within each species. This situation of three species showing variation in gonadal development around a common sex-determination system provides new insights into the reproductive mode of poorly known deep-sea species and opens up an opportunity to study the evolution of recombination suppression on sex chromosomes and its association with mixed or transitory sexual systems.
期刊介绍:
It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.