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首页> 外文期刊>Frontiers in zoology >The embryoid development of Strigamia maritima and its bearing on post-embryonic segmentation of geophilomorph centipedes
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The embryoid development of Strigamia maritima and its bearing on post-embryonic segmentation of geophilomorph centipedes

机译:滨海链球菌的胚状发育及其对亲缘geo的胚后分割的影响

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Background Many arthropods add body segments post-embryonically, including most of the myriapods. However, geophilomorph and scolopendromorph centipedes are epimorphic, i.e. they form all their segments during embryonic time, although this has never been demonstrated directly. Understanding the similarity between embryonic and post-embryonic segmentation is pivotal to understand the possible evolution from anamorphosis to epimorphosis. We have previously demonstrated that in the geophilomorph centipede Strigamia maritima most segments are produced by an oscillatory mechanism operating through waves of expression at double segment periodicity, but that the last-forming (posteriormost) segments are patterned with a different system which might be more similar to post-embryonic segmentation. Results With a careful analysis of a large number of specimens, I show that the first (“embryoid”) phase of post-embryonic development is clearly distinct from the following ones. It is characterized by more moults than previously reported, allowing me to define and name new stages. I describe these embryoid stages and the first free-leaving stage in detail, providing data on their duration and useful identification characters. At hatching, the prospective last leg-bearing segment is limbless and the genital segments are added in the following stages, indicating a residual anamorphosis in Strigamia segmentation. I demonstrate directly for the first time that at least the leg-bearing segments are in general produced during embryonic life, although in some individuals the external delineation of the last leg-bearing segment may be delayed to post-embryonic time, a possible further residual of anamorphic development. Additionally, I show that the development of the poison claws during this post-embryonic phase may have some element of recapitulation. Conclusions The data presented in this paper show that the embryoid phase of post-embryonic development of geophilomorph centipedes may represent an extension of embryonic development, possibly in correlation with the evolution of epimorphic development from an anamorphic ancestor, accomplished without completely losing post-embryonic segmentation activity. This continuity in the segmentation process across the embryonic/postembryonic divide may concur to the evolvability of this developmental process.
机译:背景技术许多节肢动物在胚胎后增加了身体的节段,包括大多数的无足动物。然而,地缘和and形态是上生的,即它们在胚胎时期形成了它们的所有片段,尽管从未直接证实过。了解胚胎和胚胎后分割之间的相似性对于理解从变形到表观发育的可能进化至关重要。先前我们已经证明,在嗜盐cent中,链球菌的大部分片段是通过振荡机制产生的,该振荡机制通过表达波以双片段周期性进行操作,但是最后形成的片段(最靠后的片段)的图案可能与其他系统更相似。进行胚胎后分割。结果通过对大量标本的仔细分析,我发现胚后发育的第一阶段(“胚状”)与以下阶段明显不同。它具有比以前报告的更多的蜕皮特征,这使我能够定义和命名新的阶段。我将详细描述这些类胚阶段和第一个自由离开阶段,并提供有关其持续时间和有用的识别特征的数据。在孵化时,预期的最后一个腿支撑节段没有肢体,并且在以下阶段添加了生殖器节段,这表明残存的Strigamia变形。我第一次直接证明,至少在腿的生命周期通常是在胚胎生命中产生的,尽管在某些人中,最后一个腿的生命周期的外部描述可能会延迟到胚胎后的时间,可能还会有进一步的残留。变形发展。此外,我证明了在胚胎后阶段中毒爪的发展可能具有一定的概括性元素。结论本文提供的数据表明,嗜盐phil的胚后发育的胚状期可能代表了胚胎发育的扩展,可能与变形祖先的表观发育的进化相关,在不完全丧失胚后分割的情况下完成了活动。跨越胚胎/胚后分裂的分割过程的这种连续性可能与该发育过程的可进化性相一致。

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