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首页> 外文期刊>Scientia Marina >Sperm ultra-structure of Odontosyllis ctenostoma (Polychaeta: Syllidae) with inferences on syllid phylogeny and reproductive biology
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Sperm ultra-structure of Odontosyllis ctenostoma (Polychaeta: Syllidae) with inferences on syllid phylogeny and reproductive biology

机译:齿齿苔质精子超微结构(Polychaeta:Syllidae),对Syllid系统发育和生殖生物学有推断

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The analysis of the complex reproductive patterns of Syllidae may drastically change the taxonomic hierarchy of the family. To further contribute to the knowledge of Syllidae we have described the sperm ultra-structure and some steps of spermiogenesis of Odontosyllis ctenostomo Claparede, 1868, the first non interstitial eusylline investigated. The mature sperm has a bell-shaped acrosome and contains electron-dense granular material and thin filaments. The barrel-shaped nucleus bears two depressions: one anterior facing the acrosome and the other posterior partially containing the distal centriole and up to six mitochondria. Odontosyllis ctenostoma spermatozoa call be ascribed to the ect-aquasperm type typical of species practising external fertilisation. This morphology is not in complete accordance either with the particular brood protection reported for the species or the egg size. The sperm is similar to those of the Syllinae species thus far investigated, but the acrosome resembles that of the exogonine spermatid. Some authors consider Odontosyllis to be phylogenetically closer to Syllinae, though it shares epigamy with Exogoninae. Others have hypothesised that the exogonine sperm could have been derived from sylline sperm by simplification. In our hypothesis this Could have happened through a gradual passage from an Odontosyllis-like eusylline ancestor.
机译:西丽科复杂的繁殖方式的分析可能会大大改变家庭的分类层次。为了进一步促进对Syllidae的了解,我们描述了1868年首次研究的非间质性正玉兰的Odontosyllis ctenostomo Claparede的精子超微结构和一些生精步骤。成熟的精子具有钟形的顶体,并包含电子致密的颗粒物质和细丝。桶形核带有两个凹陷:一个面向顶体,一个向前,另一个向后,部分包含远端中心粒和多达六个线粒体。 Otentosyllis ctenostoma spermatozoa被称为归因于外来受精的典型物种的ect-aquasperm类型。这种形态与所报道的特定种类的亲鱼保护或卵的大小都不完全一致。到目前为止,精子与Syllinae物种的精子相似,但顶体类似于exogonine精子的顶体。一些作者认为,齿牙龙与系统昆虫的外生殖系统相似,尽管在进化上更接近西林科。其他人则假设,exogonine精子可能是通过简化从斯林精子衍生而来的。在我们的假设中,这可能是通过渐渐地从类似齿齿龙的祖先的祖先发生而发生的。

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