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多组织转录组分析鉴定了华丽棘龙虾()关键的性发育相关基因。

Multi-Tissue Transcriptome Analysis Identifies Key Sexual Development-Related Genes of the Ornate Spiny Lobster ().

机构信息

GeneCology Research Centre, School of Science and Engineering, University of the Sunshine Coast (USC), 4 Locked Bag, Maroochydore, QLD 4558, Australia.

Developmental Biology and Cancer Programme, UCL Great Ormond Street Institute of Child Health, London WC1N 1EH, UK.

出版信息

Genes (Basel). 2020 Sep 29;11(10):1150. doi: 10.3390/genes11101150.

Abstract

Sexual development involves the successive and overlapping processes of sex determination, sexual differentiation, and ultimately sexual maturation, enabling animals to reproduce. This provides a mechanism for enriched genetic variation which enables populations to withstand ever-changing environments, selecting for adapted individuals and driving speciation. The molecular mechanisms of sexual development display a bewildering diversity, even in closely related taxa. Many sex determination mechanisms across animals include the key family of "doublesex- and male abnormal3-related transcription factors" (Dmrts). In a few exceptional species, a single Dmrt residing on a sex chromosome acts as the master sex regulator. In this study, we provide compelling evidence for this model of sex determination in the ornate spiny lobster , concurrent with recent reports in the eastern spiny lobster . Using a multi-tissue transcriptomic database established for , we screened for the key factors associated with sexual development (by homology search and using previous knowledge of these factors from related species), providing an in-depth understanding of sexual development in decapods. Further research has the potential to close significant gaps in our understanding of reproductive development in this ecologically and commercially significant order.

摘要

性发育涉及到性别的决定、性别的分化以及最终的性成熟的连续和重叠过程,使动物能够繁殖。这为丰富的遗传变异提供了一种机制,使种群能够承受不断变化的环境,选择适应的个体,并推动物种形成。性发育的分子机制显示出令人眼花缭乱的多样性,即使在密切相关的分类群中也是如此。许多动物的性别决定机制包括“双性和雄性异常 3 相关转录因子”(Dmrts)家族。在少数特殊物种中,位于性染色体上的单个 Dmrt 作为主要的性别调节因子。在这项研究中,我们提供了确凿的证据,证明了这种有花纹的刺龙虾的性别决定模式,与最近东部刺龙虾的报道一致。我们利用为 建立的多组织转录组数据库,筛选与性发育相关的关键因子(通过同源搜索和使用来自相关物种的这些因子的先前知识),深入了解十足目动物的性发育。进一步的研究有可能缩小我们对这一具有生态和商业重要性的目生殖发育的理解差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3575/7600227/c46c415bdaaf/genes-11-01150-g001.jpg

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