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首页> 外文期刊>Journal of Molluscan Studies >Spermatogenesis in the marine snail Adelomelon ancilla (Volutidae) from Patagonia
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Spermatogenesis in the marine snail Adelomelon ancilla (Volutidae) from Patagonia

机译:巴塔哥尼亚的海洋蜗牛Adelomelon ancilla(Volutidae)的精子发生

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摘要

This study describes euspermatogenesis and paraspermatogenesis in Adelomelon ancilla (Volutidae) and compares them with the same processes in other caenogastropods. Spermatogenesis in A. ancilla followed the general developmental pattern of caenogastropods. The pattern of nuclear condensation involves granular, fibrillar, lamellar and homogenous electron-dense phases. Acrosome development begins with the posteriorly located proacrosomal vesicle arising from the Golgi complex in euspermatids. The proacrosomal vesicle develops into a preattachment acrosome which, together with the Golgi body, later moves towards the apex of the nucleus. In the early stage of paraspermatogenesis, the pattern of chromatin distribution in dense patches, together with the cytoplasmatic characteristics of paraspermatogonia, allows the recognition of the apyrene line from the euspermatogonia. Later features, including the peripheral condensation of nuclear chromatin followed by nuclear invagination, the posterior breakdown into nuclear vesicles (‘caryomerites’), centriole multiplication and the synthesis of secretory products, are the most conspicuous changes in the process of paraspermatogenesis.
机译:这项研究描述了Adelomelon ancilla(Volutidae)的精子发生和副精子发生,并将它们与其他腹足类动物的相同过程进行了比较。 A. ancilla的精子发生遵循caenogastropods的一般发育模式。核冷凝的模式涉及粒状,原纤维状,层状和均质的电子致密相。顶体的发育始于后部位于前囊泡的前囊泡,该囊泡起源于胚泡中的高尔基复合体。顶体前囊泡发展成附着前的顶体,它与高尔基体一起,后来移向细胞核的顶点。在副精子发生的早期,染色质在致密斑块中的分布模式,以及副精原细胞的细胞质特征,使得能够识别来自正常精原细胞的the系。后来的特征,包括核染色质的周边凝结,核内陷,后核破裂成核小囊(“ Caryomerites”),中心粒繁殖和分泌产物的合成,是副生精过程中最明显的变化。

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  • 来源
    《Journal of Molluscan Studies》 |2012年第1期|p.52-65|共14页
  • 作者单位

    1CONICET, Laboratorio de Biologia de Invertebrados Marinos, Departamento de Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. II, C1428 Buenos Aires, Argentina 2CONICET, Biología y Manejo de Recursos Acuáticos-LARBIM, Centro Nacional Patagónico, Bvd. Brown 2915, 9120 Puerto Madryn, Chubut, Argentina 3Laboratorio de Biología de Anfibios, Departamento Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. II, C1428 Buenos Aires, Argentina;

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