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5S rRNA 及其伴随蛋白在性腺中的应用:鉴定鱼类性别和生殖内分泌干扰的有力标志物。

5S rRNA and accompanying proteins in gonads: powerful markers to identify sex and reproductive endocrine disruption in fish.

机构信息

Laboratory of Cell Biology and Histology, Department of Zoology and Animal Cell Biology, School of Science and Technology, University of the Basque Country, Po Box 644, E-48080, Bilbao, Basque Country.

出版信息

Environ Sci Technol. 2012 Jul 17;46(14):7763-71. doi: 10.1021/es301132b. Epub 2012 Jul 3.

Abstract

In anuran ovaries, 5S rDNA is regulated transcriptionally by transcription factor IIIA (TFIIIA), which upon transcription, binds 5S rRNA, forming 7S RNP. 5S rRNA can be stockpiled also in the form of 42S RNP bound to 42sp43. The aim of the present study was to assess the differential transcriptional regulation of 5S rRNA and associated proteins in thicklip gray mullet (Chelon labrosus) gonads. Up to 75% of the total RNA from mullet ovaries was 5S rRNA. qPCR quantification of 5S rRNA expression, in gonads of histologically sexed individuals from different geographical areas, successfully sexed animals. All males had expression levels that were orders of magnitude below expression levels in females, throughout an annual reproductive cycle, with the exception of two individuals: one in November and one in December. Moreover, intersex mullets from a polluted harbor had expression levels between both sexes. TFIIIA and 42sp43 were also very active transcriptionally in gonads of female and intersex mullets, in comparison to males. Nucleocytoplasmatic transport is important in this context and we also analyzed transcriptional levels of importins-α1, -α2, and -β2 and different exportins. Importin-αs behaved similarly to 5S rRNA. Thus, 5S rRNA and associated proteins constitute very powerful molecular markers of sex and effects of xenosterogens in fish gonads, with potential technological applications in the analysis of fish stock dynamics and reproduction as well as in environmental health assessment.

摘要

在蛙类卵巢中,5S rDNA 通过转录因子 IIIA(TFIIIA)进行转录调控,转录后,TFIIIA 结合 5S rRNA,形成 7S RNP。5S rRNA 也可以以与 42sp43 结合的 42S RNP 的形式储存。本研究旨在评估厚唇灰鲻(Chelon labrosus)性腺中 5S rRNA 和相关蛋白的差异转录调控。厚唇灰鲻卵巢中总 RNA 的 75%以上为 5S rRNA。通过 qPCR 定量检测不同地理区域组织学性别鉴定个体的性腺中 5S rRNA 的表达,成功鉴定了动物的性别。在整个年度生殖周期中,所有雄性的表达水平都低于雌性的表达水平,除了两个个体:一个在 11 月,一个在 12 月。此外,来自污染港口的雌雄同体厚唇灰鲻的表达水平介于两性之间。TFIIIA 和 42sp43 在雌性和雌雄同体厚唇灰鲻的性腺中的转录活性也明显高于雄性。核质转运在这方面很重要,我们还分析了进口蛋白-α1、-α2 和 -β2 和不同出口蛋白的转录水平。进口蛋白-α 的行为与 5S rRNA 相似。因此,5S rRNA 和相关蛋白是鱼类性腺中性别和外源性雌激素效应的非常有力的分子标志物,具有在鱼类种群动态和繁殖分析以及环境健康评估中的潜在技术应用。

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