在雌性蓝蟹卵巢发育晚期,脱毛抑制激素刺激卵黄发生,Callinectes sapidus 1:卵巢阶段依赖性参与。

Nilli Zmora, John Trant, Yonathan Zohar, J Sook Chung
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引用次数: 65

摘要

为了解甲壳类动物蜕皮与生殖拮抗的激素协调机制,以终末绝育成熟雌性糙皮Callinectes sapidus为研究对象。研究了甲壳类动物高血糖激素(CHH)和蜕皮抑制激素(MIH)在卵黄发生中的调节作用。采用竞争性特异性RIA法测定成熟雌性卵黄形成前期和中期血淋巴中MIH和CHH水平,并在体外测定其对卵黄形成早期(E2期)和中期(3期)卵黄形成的影响。建立肝胰脏片段孵育系统,分别采用RIA和QPCR检测卵黄蛋白原(VtG)、VtG mRNA和异质核(hn)VtG RNA水平。卵黄形成中期的MIH滴度是卵黄形成前的四倍,而血淋巴中的CHH水平不变。在体外培养实验中,MIH增加了卵巢3期VtG mRNA水平和分泌量。然而,在E2期,MIH导致了混合反应:VtG mRNA的下调和hnVtG RNA的上调。CHH对任何参数都没有影响。放线菌素D阻断了MIH对3期动物VtG mRNA和VtG的刺激作用,而环己亚胺仅减弱VtG水平,证实了MIH在3期动物的刺激作用。MIH是一种重要的内分泌调节因子,在协调成熟雌棘猴的蜕皮和繁殖过程中起着抑制蜕皮和促进卵黄形成的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Molt-inhibiting hormone stimulates vitellogenesis at advanced ovarian developmental stages in the female blue crab, Callinectes sapidus 1: an ovarian stage dependent involvement.

To understand the hormonal coordination of the antagonism between molting and reproduction in crustaceans, the terminally anecdysial mature female Callinectes sapidus was used as a model. The regulatory roles of crustacean hyperglycemic hormone (CHH) and molt-inhibiting hormone (MIH) in vitellogenesis were examined. A competitive specific RIA was used to measure the levels of MIH and CHH in the hemolymphs of mature females at pre- and mid- vitellogenic stages, and their effects on vitellogenesis at early (early 2, E2) and mid vitellogenesis (3) stages were determined in vitro. A hepatopancreas fragments incubation system was developed and the levels of vitellogenin (VtG), as well as VtG mRNA and heterogeneous nuclear (hn)VtG RNA were determined using RIA or QPCR, respectively. MIH titers were four times higher at mid-vitellogenesis than at pre-vitellogenesis, while CHH levels in the hemolymph were constant. In the in vitro incubation experiments, MIH increased both VtG mRNA levels and secretion at ovarian stage 3. At stage E2, however, MIH resulted in a mixed response: downregulation of VtG mRNA and upregulation of hnVtG RNA. CHH had no effect on any of the parameters. Actinomycin D blocked the stimulatory effects of MIH in stage 3 animals on VtG mRNA and VtG, while cycloheximide attenuated only VtG levels, confirming the MIH stimulatory effect at this stage. MIH is a key endocrine regulator in the coordination of molting and reproduction in the mature female C. sapidus, which simultaneously inhibits molt and stimulates vitellogenesis.

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