Xie Xi, Zhu Dongfa, Yang Jifen, Qiu Xier, Cui Xiaoyu, Tang Jie
School of Marine Sciences, Ningbo University, Ningbo 315211, China.
Zoolog Sci. 2014 Dec;31(12):802-9. doi: 10.2108/zs140053.
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.
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。