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三疣梭子蟹甲壳动物高血糖激素(CHH)两种结构变体的分子克隆及其在蜕皮和卵巢发育过程中的基因表达

Molecular cloning of two structure variants of crustacean hyperglycemic hormone (CHH) from the swimming crab (Portunus trituberculatus), and their gene expression during molting and ovarian development.

作者信息

Xie Xi, Zhu Dongfa, Yang Jifen, Qiu Xier, Cui Xiaoyu, Tang Jie

机构信息

School of Marine Sciences, Ningbo University, Ningbo 315211, China.

出版信息

Zoolog Sci. 2014 Dec;31(12):802-9. doi: 10.2108/zs140053.

Abstract

Two full-length cDNA (Pt-CHH1 and Pt-CHH2) sequences encoding crustacean hyperglycemic hormone (CHH) were cloned from tissues of the swimming crab (Portunus trituberculatus) using RACE. Pt-CHH1 was cloned from eyestalk, whereas Pt-CHH2 was cloned from thoracic ganglia. Sequence and structure analyses of Pt-CHH1 and Pt-CHH2 suggest that they may be generated from alternative splicing. Tissue distribution showed that transcript of Pt-CHH1 was only detected in eyestalk, while transcript of Pt-CHH2 was observed in several extra-eyestalk tissues. The transcript levels of Pt-CHH1 and Pt-CHH2 during molting and ovarian development were determined using qPCR. In molting process, level of Pt-CHH1 in eyestalk increased from stage A (postmolt), and to significant higher at stage C (intermolt), then decreased during premolt (D0-D4). In ovarian development, level of Pt-CHH1 in eyestalk decreased from previtellogenic stage (II), and to significant lower at mature stage (IV). The expression patterns of Pt-CHH2 in thoracic ganglia and Y-organ were distinct from that of Pt-CHH1 in eyestalk. The combined results suggest that Pt-CHH1 may be involved in inhibition of molting and ovarian development, whereas Pt-CHH2 may have other physiological functions.

摘要

利用RACE技术从三疣梭子蟹组织中克隆出两条编码甲壳动物高血糖激素(CHH)的全长cDNA序列(Pt-CHH1和Pt-CHH2)。Pt-CHH1是从眼柄中克隆得到的,而Pt-CHH2是从胸神经节中克隆得到的。Pt-CHH1和Pt-CHH2的序列及结构分析表明它们可能是通过可变剪接产生的。组织分布显示,仅在眼柄中检测到Pt-CHH1的转录本,而在眼柄外的几个组织中观察到Pt-CHH2的转录本。使用qPCR测定了蜕皮和卵巢发育过程中Pt-CHH1和Pt-CHH2的转录水平。在蜕皮过程中,眼柄中Pt-CHH1的水平从A期(蜕皮后)开始升高,在C期(蜕皮间期)显著升高,然后在蜕皮前(D0-D4)下降。在卵巢发育过程中,眼柄中Pt-CHH1的水平从卵黄发生前期(II期)开始下降,在成熟期(IV期)显著降低。Pt-CHH2在胸神经节和Y器官中的表达模式与Pt-CHH1在眼柄中的表达模式不同。综合结果表明,Pt-CHH1可能参与抑制蜕皮和卵巢发育,而Pt-CHH2可能具有其他生理功能。

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