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六腕海蜷(腹足纲:新腹足目)的性畸变发展涉及视黄酸 X 受体 (RXR) 的转录水平变化。

Imposex development in Hexaplex trunculus (Gastropoda: Caenogastropoda) involves changes in the transcription levels of the retinoid X receptor (RXR).

机构信息

Laboratory of Environment Biomonitoring, University of Carthage, Faculty of Sciences of Bizerta (FSB), 7021 Zarzouna, Bizerta, Tunisia.

出版信息

Chemosphere. 2013 Oct;93(6):1161-7. doi: 10.1016/j.chemosphere.2013.06.054. Epub 2013 Jul 12.

Abstract

In order to further demonstrate that TBT-induced imposex through RXR signaling is not species-specific, Hexaplex trunculus was selected as an experimental model species. We first isolated RXR in H. trunculus, and determined gene transcription through quantitative real-time PCR in key tissues (e.g., penis/penis-forming area and central nervous system:- CNS), upon exposure to tributyltin (TBT) (5 and 50 ng TBTL(-1)). Two months of exposure to TBT induced imposex and led to a significant increase in the severity of the phenomenon in females and an increase in male penis lengths. Exposure to TBT altered RXR gene transcription in a tissue and sex-specific manner. In the CNS, there were no significant changes in RXR gene transcription between control and TBT-exposed females. A similar trend was observed in male CNS. On the contrary, in the penis-forming area/penis of females exposed to TBT, a significant increase in RXR gene transcription was observed in the 50 ng TBTL(-1) group. Furthermore, a positive correlation was observed between overall female penis lengths and RXR gene transcription. In males, although a trend towards an increase in RXR gene transcription in penis was observed, differences did not reach significance. Overall, the results of the present study give further support to a local role of RXR in the penis-forming area during the development of imposex by TBT, thus suggesting a conserved function of RXR in penis formation at least within prosobranch gastropods.

摘要

为了进一步证明 TBT 通过 RXR 信号诱导的性畸形不是物种特异性的,我们选择了Hexaplex trunculus 作为实验模型物种。我们首先在 H. trunculus 中分离了 RXR,并通过定量实时 PCR 测定了关键组织(如阴茎/阴茎形成区和中枢神经系统:-CNS)中基因转录,暴露于三丁基锡(TBT)(5 和 50 ng TBTL(-1))。暴露于 TBT 两个月会导致性畸形,并导致雌性的现象严重程度显著增加,雄性阴茎长度增加。TBT 以组织和性别特异性的方式改变了 RXR 基因转录。在中枢神经系统中,对照组和 TBT 暴露的雌性之间 RXR 基因转录没有显著变化。雄性中枢神经系统也观察到类似的趋势。相反,在暴露于 TBT 的雌性阴茎形成区/阴茎中,在 50 ng TBTL(-1)组中观察到 RXR 基因转录显著增加。此外,观察到女性整体阴茎长度与 RXR 基因转录之间存在正相关。在雄性中,尽管观察到阴茎中 RXR 基因转录增加的趋势,但差异没有达到显著水平。总体而言,本研究的结果进一步支持了 RXR 在 TBT 诱导的性畸形形成过程中在阴茎形成区的局部作用,从而表明 RXR 在至少在 prosobranch 腹足类动物的阴茎形成中具有保守功能。

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