首页> 外文期刊>Aquaculture Research >Gonadal morphogenesis and sex differentiation in cultured chub mackerel, Scomber japonicus.
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Gonadal morphogenesis and sex differentiation in cultured chub mackerel, Scomber japonicus.

机译:鲭鱼的性腺形态发生和性别分化。

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摘要

The timing of primordial germ-cell (PGC) migration with regard to the gonadal anlagen, gonad formation and sex differentiation was examined histologically in the chub mackerel (Scomber japonicus) at 5-190 days post hatching (dph). At 5 dph, PGCs appeared on the peritoneal epithelium surface or in the mesentery, on the dorsal side of the abdominal cavity. By 10 dph, stromal cells around the PGCs proliferated. The gonadal primordium was formed by 15dph. The gonadosomatic index was 0.01% at 30 dph and increased thereafter (0.32% in females and 0.04% in males at 160 dph). Ovarian differentiation occurred at 30-40 dph, indicated by ovarian cavity formation (elongation and fusion of the upper and lower ovarian edges). Meiosis was subsequently initiated. A few meiotic oocytes surrounded the cavity at 50 dph; most were in the perinucleolus stage at 60 dph and attained a diameter of 60-70 micro m at 190 dph. Testicular differentiation occurred at 30 dph, indicated by the formation of the sperm duct primordium. Spermatogonia gradually proliferated, developing into spermatocytes at the chromatin-nucleolus stage (after 90 dph) and subsequently into spermatids and spermatozoa (160 dph). These data could aid the development of seeding and cell-engineering technologies for scombrid fish.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2109.2010.02616.x
机译:在孵化后5-190天(DPH)组织学检查examined鲭鱼( Scomber japonicus )中关于性腺anlagen,性腺形成和性别分化的原始生殖细胞(PGC)迁移时间。 )。在5 dph时,PGC出现在腹膜上皮表面或肠系膜的腹腔背侧。到10 dph时,PGC周围的基质细胞增殖。性腺原基由15dph形成。促性腺激素指数在30 dph时为0.01%,此后增加(160 dph时雌性为0.32%,雄性为0.04%)。卵巢分化在30-40 dph处发生,表现为卵巢腔形成(卵巢上缘和下缘的延长和融合)。随后开始减数分裂。一些减数分裂的卵母细胞以50 dph的速度包围了腔;大多数在60 dph时处于核仁周围阶段,在190 dph时达到60-70 microm的直径。睾丸分化在30 dph时发生,这是精子导管原基形成的结果。精原细胞逐渐增生,在染色质-核仁阶段(90 dph后​​)发展为精细胞,随后发展为精子和精子(160 dph)。这些数据可以帮助开发鱼的播种和细胞工程技术。数字对象标识符http://dx.doi.org/10.1111/j.1365-2109.2010.02616.x

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