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首页> 外文期刊>Aquaculture Research >Crustacean hyperglycaemic hormone gene from the mud crab, Scylla paramamosain: cloning, distribution and expression profiles during the moulting cycle and ovarian development
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Crustacean hyperglycaemic hormone gene from the mud crab, Scylla paramamosain: cloning, distribution and expression profiles during the moulting cycle and ovarian development

机译:泥蟹Scyla paramamosain的甲壳类高血糖激素基因:蜕皮周期和卵巢发育过程中的克隆,分布和表达特征

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摘要

Recently, crustacean hyperglycaemic hormone (CHH) has gained wide attention for its diverse physiological functions. In this study, two cDNA sequences encoding CHH, Sp-CHH1 and Sp-CHH2, were cloned from the eyestalk ganglia of the mud crab, Scylla paramamosain. Each conceptually translated precursor is expected to be processed into the signal peptide, the crustacean hyperglycaemic hormone precursor-related peptide (CPRP) and the CHH mature peptide. Sp-CHH1 and SpCHH2 share an identical sequence for the first 40 residues from the amino-terminus of the peptides, but substantially different from each other in the C-terminus. Quantitative real-time PCR (qPCR) showed that Sp-CHH transcripts were mainly detected in the eyestalk ganglia and to a much lesser extent in the brain, thoracic ganglia, stomach, hepatopancreas, heart and muscle. RNA in situ hybridization in the eyestalk ganglia indicated that the Sp-CHH was localized in the perikarya of neuroendocrine cells belonging to the X-organ of the medulla terminalis. Moreover, Sp-CHH transcripts were stage-specific changed during the moulting cycle, as it increased significantly from postmoult stage to intermoult stage, then decreased sharply at premoult stage. Sp-CHH expression levels in the eyestalk ganglia were also examined at different ovarian stages (stage I to stage V). It was found that the expression was gradually increased from stage I to stage IV, and then it was decreased at stage V. All the findings together suggested that Sp-CHH should be pleiotropic, which might inhibit the synthesis of ecdysteroids by Y-organs and be involved in promoting vitellogenesis in the mud crab.
机译:近年来,甲壳类高血糖激素(CHH)因其多种生理功能而受到广泛关注。在这项研究中,从泥蟹的视轴神经节Scyla paramamosain克隆了两个编码CHH的cDNA序列,即Sp-CHH1和Sp-CHH2。每个概念上翻译的前体都有望被加工成信号肽,甲壳类高血糖激素前体相关肽(CPRP)和CHH成熟肽。 Sp-CHH1和SpCHH2在肽的氨基端的前40个残基上具有相同的序列,但在C端彼此基本不同。实时荧光定量PCR(qPCR)显示,Sp-CHH转录本主要在眼部神经节中检测到,而在脑,胸神经节,胃,肝胰腺,心脏和肌肉中则较少。眼球神经节中的RNA原位杂交表明Sp-CHH位于末梢髓质X器官的神经内分泌细胞的周核中。此外,Sp-CHH转录本在换羽周期中是阶段特定的变化,因为它从换羽后阶段到换羽间期显着增加,然后在换羽前阶段急剧下降。还在不同的卵巢阶段(I期至V期)检查了眼柄神经节中Sp-CHH的表达水平。发现从I期到IV期表达逐渐增加,然后在V期降低。所有发现共同表明Sp-CHH应该是多效的,这可能抑制Y-器官和Y-器官合成蜕皮类固醇。参与促进泥蟹的卵黄发生。

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