Suppr超能文献

东方多刺龙虾(Sagmariasus verreauxi)中的Y连锁iDmrt1旁系同源基因(iDMY):首个无脊椎动物性连锁Dmrt基因。

Y-linked iDmrt1 paralogue (iDMY) in the Eastern spiny lobster, Sagmariasus verreauxi: The first invertebrate sex-linked Dmrt.

作者信息

Chandler Jennifer C, Fitzgibbon Quinn P, Smith Greg, Elizur Abigail, Ventura Tomer

机构信息

GenEcology Research Centre, Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast (USC), 4 Locked Bag, Maroochydore, Queensland 4558, Australia.

Fisheries and Aquaculture Centre, Institute for Marine and Antarctic Studies (IMAS), University of Tasmania, Private Bag 49, Hobart, Tasmania 7001, Australia.

出版信息

Dev Biol. 2017 Oct 15;430(2):337-345. doi: 10.1016/j.ydbio.2017.08.031. Epub 2017 Aug 31.

Abstract

Sex determination pathways are extensively diverse across species, with the master sex-determinants being the most variable element. Despite this, there is a family of DM-domain transcription factors (Dmrts), which hold a highly conserved function in sexual development. This work is the first to describe a heterogametic sex-linked Dmrt in an invertebrate species, the Eastern spiny lobster, Sagmariasus verreauxi. We have termed the Y-linked, truncated paralogue of the autosomal iDmrt1, Sv-iDMY. Considering the master sex-determining function of both DMY in medaka and DM-W in frog, we hypothesised a similar function of Sv-iDMY. By conducting temporal expression analyses during embryogenesis we have identified a putative male sex-determining period during which iDMY>iDmrt1. Employing a GAL4-transactivation assay we then demonstrate the dominant negative suppression of iDMY over its autosomal iDmrt1 paralogue, suggesting the mechanism with which iDMY determines sex. Comparative analyses of Sv-iDMY, DM-W and medaka DMY, highlight the C'-mediated features of oligomerisation and transactivation as central to the mechanism that each exerts. Indeed, these features may underpin the plasticity facilitating the convergent emergence of these three sporadic sex-linked master-Dmrts.

摘要

性别决定途径在不同物种中差异极大,其中主要的性别决定因素是最具变异性的元素。尽管如此,有一个双性恋调控域转录因子(Dmrts)家族,它们在性别发育中具有高度保守的功能。这项工作首次描述了一种无脊椎动物——东方多刺龙虾(Sagmariasus verreauxi)中与异配性别相关的Dmrt。我们将常染色体iDmrt1的Y连锁截短旁系同源物命名为Sv-iDMY。鉴于青鳉中的DMY和青蛙中的DM-W都具有主要的性别决定功能,我们推测Sv-iDMY也有类似功能。通过在胚胎发育过程中进行时间表达分析,我们确定了一个假定的雄性性别决定期,在此期间iDMY>iDmrt1。然后,我们采用GAL4反式激活分析,证明了iDMY对其常染色体iDmrt1旁系同源物的显性负抑制作用,这表明了iDMY决定性别的机制。对Sv-iDMY、DM-W和青鳉DMY的比较分析突出了由C'介导的寡聚化和反式激活特征,这些特征是它们各自发挥作用机制的核心。事实上,这些特征可能是促进这三种散发性性别连锁主要Dmrts趋同出现的可塑性基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验