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CFSH在三疣梭子蟹眼柄-AG-睾丸内分泌轴中的假定作用

Putative Role of CFSH in the Eyestalk-AG-Testicular Endocrine Axis of the Swimming Crab .

作者信息

Wang Mengen, Xu Rui, Tu Shisheng, Yu Qiaoling, Xie Xi, Zhu Dongfa

机构信息

Key Laboratory of Aquacultural Biotechnology Ministry of Education, School of Marine Sciences, Ningbo University, Ningbo 315822, China.

出版信息

Animals (Basel). 2023 Feb 16;13(4):690. doi: 10.3390/ani13040690.

Abstract

It has been shown in recent studies that the crustacean female sex hormone (CFSH) plays a crucial role in the development of secondary sexual characteristics in Decapoda crustaceans. However, research on the function of in the eyestalk-AG-testicular endocrine axis has been inadequate. We cloned and identified a homolog of , , in this study. RT-PCR showed that was mainly expressed in the eyestalk. A long-term injection of dsPtCFSH and recombinant PtCFSH (rPtCFSH) in vivo showed opposite effects on spermatogenesis-related gene expression and histological features in the testis of , and was accompanied by changes in AG morphological characteristics and expression. In addition, the phosphorylated-MAPK levels and the expression of several IIS pathway genes in the testis was changed accordingly in two treatments, suggesting that PtCFSH may regulate the testicular development via IAG. The hypothesis was further validated by a mixed injection of both dsPtCFSH and dsPtIAG in vivo. The following in vitro studies confirmed the negatively effects of PtCFSH on AG, and revealed that the PtCFSH can also act directly on the testis. Treatment with rPtCFSH reduced the cAMP and cGMP levels as well as the nitric oxide synthetase activity. These findings provide vital clues to the mechanisms of CFSH action in both the eyestalk-AG-testis endocrinal axis and its direct effects on the testis.

摘要

最近的研究表明,甲壳类动物雌性性激素(CFSH)在十足目甲壳动物第二性征的发育中起着至关重要的作用。然而,关于其在眼柄 - 促雄腺 - 睾丸内分泌轴中的功能研究尚不充分。在本研究中,我们克隆并鉴定了其同源物,即。RT-PCR结果显示主要在眼柄中表达。在体内长期注射dsPtCFSH和重组PtCFSH(rPtCFSH)对的睾丸中精子发生相关基因表达和组织学特征产生了相反的影响,并且伴随着促雄腺形态特征和表达的变化。此外,在两种处理中,睾丸中磷酸化-MAPK水平以及几种IIS途径基因的表达相应改变,表明PtCFSH可能通过IAG调节睾丸发育。通过在体内混合注射dsPtCFSH和dsPtIAG进一步验证了这一假设。随后的体外研究证实了PtCFSH对促雄腺的负面影响,并揭示PtCFSH也可直接作用于睾丸。用rPtCFSH处理降低了cAMP和cGMP水平以及一氧化氮合酶活性。这些发现为CFSH在眼柄 - 促雄腺 - 睾丸内分泌轴中的作用机制及其对睾丸的直接影响提供了重要线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f000/9952137/310202f88157/animals-13-00690-g001.jpg

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