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首页> 外文期刊>Fisheries and Aquatic Sciences >Identification and Characterization of Three Differentially Expressed Ovarian Genes Associated with Ovarian Maturation in Yesso Scallop, Patinopecten yessoensis
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Identification and Characterization of Three Differentially Expressed Ovarian Genes Associated with Ovarian Maturation in Yesso Scallop, Patinopecten yessoensis

机译:在Yesso扇贝Yessoensis的Yesso扇贝中与卵巢成熟相关的三个差异表达的卵巢基因的鉴定和表征

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摘要

Despite great commercial interest, relatively little has been described about molecular mechanism of bivalve reproduction. We investigated genes involved in ovarian maturation of the Yesso scallop, Patinopecten yessoensis. GSI index and histological analysis revealed that maturation of ovary begin in February and spawning period is from April to June which is similar to the previous study in the East Sea. As result of combination analysis of differential display RT-PCR (DDRT-PCR) and histological examination, vitellogenin (Vg), ferritin (Ft) and ADT/ATP carrier protein (ACC) were identified as differently expressed genes in maturating ovary. End-point RT-PCR results showed that Vg is ovary-specific genes whereas Ft and ACC are expressed ubiquitouslysuggesting that Vg can be good molecular markers for ovarian development and sex determination in bivalves. Quantitative PCR results revealed that Vg were expressed highest during growth stage and appears to play a major role in oocyte maturation. On the contrary, expression of Ft was highest after spawning stage, which suggests that up-regulation may be involved in spawning and inactive stages in which the scallops recover from spawning. In addition, high level of the mitochondrial gene, ACC, may playa role in energy metabolism in maturating oocytes. Isolation and molecular studies of these key genes will expand our knowledge of the physiological changes from various exogenous factors including temperature, salinity, pH, even or numerous endocrine disrupting chemicals (EDCs) during reproductive cycle. In addition, further study of these genes implicates various industrial applications including the stable seed production, increased food quality, or economic aquaculture system.
机译:尽管有很大的商业兴趣,但是关于双壳类动物繁殖的分子机理的描述相对较少。我们调查了涉及Yesso扇贝,Patinopecten yessoensis卵巢成熟的基因。 GSI指数和组织学分析表明,卵巢的成熟始于2月,产卵期是4月至6月,这与先前在东海进行的研究相似。差异显示RT-PCR(DDRT-PCR)和组织学检查相结合的结果是,卵黄蛋白原(Vg),铁蛋白(Ft)和ADT / ATP载体蛋白(ACC)被鉴定为成熟卵巢中差异表达的基因。终点RT-PCR结果显示,Vg是卵巢特异性基因,而Ft和ACC普遍表达,这表明Vg可以作为双壳类卵巢发育和性别确定的良好分子标记。定量PCR结果显示,Vg在生长阶段表达最高,并且似乎在卵母细胞成熟中起主要作用。相反,Ft的表达在产卵期后最高,这表明上调可能参与了产卵期和无活性期,扇贝从产卵期恢复。另外,高水平的线粒体基因ACC可能在成熟卵母细胞的能量代谢中发挥作用。这些关键基因的分离和分子研究将扩展我们对各种外源因素(包括温度,盐度,pH值,甚至生殖周期中的许多内分泌干扰化学物质(EDC))的生理变化的认识。此外,对这些基因的进一步研究涉及各种工业应用,包括稳定的种子生产,提高的食品质量或经济的水产养殖系统。

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