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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Vitellogenin gene expression and hemolymph vitellogenin during vitellogenesis, final maturation, and oviposition in female kuruma prawn, Marsupenaeus japonicus
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Vitellogenin gene expression and hemolymph vitellogenin during vitellogenesis, final maturation, and oviposition in female kuruma prawn, Marsupenaeus japonicus

机译:雌性黑斑虾对虾的卵黄发生,最终成熟和产卵过程中卵黄蛋白原基因表达和血淋巴卵黄蛋白原

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摘要

In penaeid shrimps, vitellogenin (VTG), the precursor of vitellin, is synthesized in the ovary and hepatopancreas and accumulated in oocytes during ovarian development. In the present study, VTG gene expression levels and hemolymph VTG levels were determined throughout ovarian development in female kuruma prawn, Marsupenaeus japonicus. Hemolymph VTG levels and VTG mRNA levels in the ovary and hepatopancreas were high during vitellogenesis, remained high until final maturation, and then decreased after oviposition. This profile suggests that VTG synthesis activity increases during vitellogenesis and decreases after oviposition. Absence of a significant increase in ovary size in final maturation suggests cessation of yolk accumulation and low activity of VTG synthesis in spite of high VTG mRNA levels. VTG mRNA levels in ovary and hepatopancreas were both highly correlated during vitellogenesis. Thus, their contribution to yolk accumulation seems to be similar. In contrast, VTG mRNA levels in the hepatopancreas increased more slowly at the start of vitellogenesis and declined more sharply after oviposition than in the ovary. This suggests a difference in the regulation of VTG synthesis between the ovary and the hepatopancreas.
机译:在对虾中,卵黄蛋白原(VTG)是卵黄蛋白的前体,在卵巢和肝胰腺中合成,并在卵巢发育过程中积累在卵母细胞中。在本研究中,测定了雌性黑头虾对虾Marsupenaeus japonicus整个卵巢发育过程中的VTG基因表达水平和血淋巴VTG水平。在卵子发生过程中,卵巢和肝胰腺中的血淋巴VTG水平和VTG mRNA水平较高,一直保持高水平直至最终成熟,然后在产卵后下降。该概况表明VTG合成活性在卵黄发生过程中增加而在产卵后减少。最终成熟时卵巢大小没有明显增加,这表明尽管VTG mRNA水平较高,卵黄积累仍会停止,VTG合成活性较低。在卵黄发生过程中,卵巢和肝胰腺中的VTG mRNA水平都高度相关。因此,它们对卵黄积累的贡献似乎相似。相反,在卵黄发生开始时,肝胰腺中VTG mRNA的增加较卵巢缓慢,而在卵子形成后下降更为明显。这表明卵巢和肝胰腺之间的VTG合成调控存在差异。

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