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首页> 外文期刊>Fisheries science >Histological characteristics of the oocyte chorion in wild post-spawning and artificially matured Japanese eels Anguilla japonica
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Histological characteristics of the oocyte chorion in wild post-spawning and artificially matured Japanese eels Anguilla japonica

机译:野生产后和人工成熟的日本鳗鳗卵母膜绒毛的组织学特征

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To describe the histological characteristics of the oocyte chorion in wild adult and artificially matured Japanese eels, we investigated changes in chorion thickness during artificially induced oogenesis and compared the chorion thickness and ultrastructure between wild and artificially matured eels. In artificially maturing eels, the chorion thickness and volume increased significantly with increasing follicle diameter, peaking at approximately 450?μm; beyond this point, the chorion thinned significantly, whereas there were no significant changes in volume. A significant positive correlation was observed between the number of salmon pituitary extract (SPE) injections and chorion thickness. In wild post-spawning adult eels, chorion thickness varied among individuals, and two had chorions that were significantly thinner than those of artificially matured eels. Ultrastructural examination revealed electron-dense layers in the chorions of wild post-spawning adult eels, as was seen in artificially matured eels. This result is inconsistent with our hypothesis that the formation of an electron-dense layer is unique to artificially maturing eels due to repeated SPE injections. These results suggest that the formation cycle of the chorion might be affected by SPE injections in artificially maturing eels, whereas that of wild eels might be synchronized with behavioral and/or environmental fluctuations that occur during the oceanic spawning migration.
机译:为了描述野生成年和人工成熟的日本鳗鱼卵母膜绒毛的组织学特征,我们调查了人工诱导的卵子发生过程中绒毛膜厚度的变化,并比较了野生和人工成熟的鳗鱼的绒毛膜厚度和超微结构。在人工成熟的鳗鱼中,绒毛膜的厚度和体积随着卵泡直径的增加而显着增加,达到峰值约450?μm。超过这一点,绒毛膜明显变薄,而体积没有明显变化。鲑鱼垂体提取物(SPE)注射数量与绒毛膜厚度之间存在显着正相关。在野生产卵后的成年鳗鱼中,绒毛膜的厚度因个体而异,其中两个绒毛膜的厚度明显小于人工成熟的鳗鱼。超微结构检查显示,野生人工产卵的成年鳗鱼绒毛膜中的电子致密层,如在人工成熟的鳗鱼中所见。该结果与我们的假设不一致,因为通过重复的SPE注入,电子致密层的形成对于人工成熟的鳗鱼是唯一的。这些结果表明绒毛膜的形成周期可能受到人工成熟鳗鱼中固相萃取的影响,而野生鳗鱼的形成周期可能与海洋产卵迁徙过程中发生的行为和/或环境波动同步。

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