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首页> 外文期刊>Aquaculture Research >In vitro study of a putative role of gonad-inhibiting hormone in oocyte growth stimulation in Penaeus monodon
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In vitro study of a putative role of gonad-inhibiting hormone in oocyte growth stimulation in Penaeus monodon

机译:对Penaeus Monodon卵母细胞生长刺激在卵母细胞生长刺激中的调整作用的体外研究

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Ovarian development in crustacean is controlled by several factors, among which a neuropeptide gonad-inhibiting hormone (GIH) is known to inhibit vitellogenin (Vg) synthesis in the ovary. It has been postulated that GIH may control Vg synthesis by inhibiting the release of gonad-stimulating factor (GSF) from brain and thoracic ganglia. To prove this hypothesis, this study was primarily aimed to investigate the influence of GIH on the release of GSF from thoracic ganglia of Penaeus monodon. Our result showed that GIH did not suppress the release of putative GSF from thoracic ganglia by calcium ionophore A23187 as the induction of oocyte growth in the ovary explants that were cocultured with thoracic ganglia in the presence of A23187 was not affected by the addition of recombinant GIH protein. In addition and interestingly, when the ovary explants were incubated with the recombinant GIH alone, the oocyte growth was increased at the rate comparable to that induced by A23187 in the presence of thoracic ganglia. Hence, our invitro study demonstrated that the stimulation of GSF released from thoracic ganglia is independent of GIH, and that the GIH has a dual function in oocyte growth stimulation and inhibition of Vg synthesis in the early stage of ovarian development. This expands our knowledge on the regulation of ovarian development in shrimp by GIH. Further invivo studies in this novel aspect of GIH function will be useful for the improvement of shrimp ovarian maturation in the future.
机译:甲壳类动物的卵巢发育是由几个因素控制的,其中已知神经肽的性腺抑制激素(GIH)抑制卵巢中的vallogenin(Vg)合成。已经假设GIH可以通过抑制来自脑和胸部神经节的Gonad刺激因子(GSF)的释放来控制VG合成。为了证明这一假设,该研究主要旨在探讨GIH对PenaeoSonoon的胸神话GSF释放的影响。我们的结果表明,GIH不抑制胸部神经节的推定GSF的释放,因为钙离子核心A23187作为在A23187的存在下与胸腔神经节共有的卵巢生长的卵母细胞生长诱导不受添加重组GIH的影响蛋白质。此外,有趣的是,当卵巢外植体单独孵育卵巢外植体时,卵母细胞生长以与A23187在胸部神经节存在的情况下促进的速率增加。因此,我们的invitro的研究表明,从胸神经节释放的GSF的刺激无关,并且GIH在卵巢发育早期卵母细胞生长刺激和抑制VG合成中的双重功能。这扩大了我们对GIH的虾类中卵巢发育的规定的了解。在GIH函数的这种新颖方面进一步的Invivo研究将在未来改善虾卵巢成熟。

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