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The sperm of Xenacoelomorpha revisited: implications for theevolution of early bilaterians

机译:重新讨论了XenacoeloMorpha的精子:对早期双子会的演变的影响

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Sperm structure of the Xenacoelomorpha (Acoelomorpha plus Xenoturbellida) is updated in the light of new discoveries or new interpretations of existing data. Nemertodermatida and Acoela (Acoelomorpha) have introsperm with certain basic features in common, but all acoels lack acrosomes and usually have two flagella with unusual combinations of microtubules, whereas all nemertodermatids have small, simple acrosomes and a typical 9+2 flagellum. Xenoturbellida is currently considered as the sister taxon to Acoelomorpha. Xenoturbella bocki has an aquasperm that has almost nothing in common with the sperm of Acoelomorpha. We argue that the aquasperm ultrastructure of X. bocki has much in common with sperm of hemichordates and to some extent echinoderms, which was previously disputed. Molecular analyses have on the one hand supported a connection with deuterostomes but on the other hand have negated it, suggesting that the closest common ancestor of Xenacoelomorpha is either the Nephrozoa, Deuterostomia or Protostomia. Sperm structure is highly diverse among Xenacoelomorpha, with protostome-like traits in Acoelomorpha and deuterostome-like traits in Xenoturbella. Assuming Xenacoelomorph monophyly and ancestral introsperm in this taxon, however, suggests that the re-expression of the aquasperm form of Xenoturbella, involving some key changes in sperm morphology, is a secondarily derived state that could have occurred through progenetic spermiogenesis with the precocious development of round spermatids to maturity.
机译:根据现有数据的新发现或新的解释,更新异种素(Acoelomorpha Plus Xenoturbelda)的精子结构。 Nemertodermatida和Acoela(Acoelomorpha)具有interosperm,具有某种常见的基本特征,但所有Acoels都缺乏辅助体,通常有两个鞭毛,具有两个具有不寻常的微管组合的鞭毛,而所有Nemertodermatiats都有小型,简单的辅助体和典型的9 + 2鞭毛。 Xenoturbellida目前被认为是Acoelomorpha的姐妹分类群。 Xenoturbella Bocki有一个Aquasperm,几乎没有任何含有的Acoelomorpha共同之处。我们认为X. Bocki的Aquasperm超微结构与血液中的精子有很大的共同点,并且在某种程度上是棘手的,这是先前有争议的。分子分析一方面支持与氘前跖的连接,而另一方面则否定了它的最接近的辛酸祖先是乳腺癌,氘胃肠杆菌或抗蛋白酶。精子结构在Xenacoelpha中具有高度多样化的,具有蛋白质植物的蛋白质般的蛋白质和氘静脉样具有蛋白质的特征。然而,假设Xenacoelomorph在这种分类群中单独和祖先的Introsperm表明,Xenoturbella的Aquasperm形式的重新表达,涉及精子形态的一些关键变化,是一种通过吞噬生殖器发生的二次导出状态圆形精子到成熟。

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