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环节动物发育中的时间可塑性——格陵兰叶须虫(叶须虫科,环节动物门)的个体发生揭示了异时发生模式。

Temporal plasticity in annelid development--ontogeny of Phyllodoce groenlandica (Phyllodocidae, Annelida) reveals heterochronous patterns.

机构信息

Molecular Evolution & Systematics of Animals, Institute of Biology, University of Leipzig, Leipzig, Germany.

出版信息

J Exp Zool B Mol Dev Evol. 2013 May;320(3):166-78. doi: 10.1002/jez.b.22492. Epub 2013 Feb 25.

Abstract

The variety of annelid larval types and developmental modes reflects the high diversity and variability within these lophotrochozoans. However, our knowledge of pattern formation and tissue development in annelids and allies is scarce. In order to gain more data concerning neurogenesis and myogenesis in annelid trochophores, we analyzed different larval stages of Phyllodoce groenlandica using immunohistochemical staining techniques and subsequent confocal laser scanning microscopy (clsm). Focusing on pre-metamorphic stages, we reconstruct the process of tissue and body formation within planktonic polychaetous trochophore larvae. Our investigations revealed detailed knowledge of general developmental modes in Annelida and exhibit ontogenetic heterochrony of tissue development between two closely related annelid species. As such, P. groenlandica shows a delayed onset of nervous system development when compared with P. maculata. In contrast to the latter species, we were not able to detect the posterior sensory organ in larval P. groenlandica. We draw conclusions concerning general development of annelid trochophores and provide data showing new insights into the plasticity of body plans in Annelida.

摘要

环节动物幼虫类型和发育模式的多样性反映了这些担轮动物的高度多样性和可变性。然而,我们对环节动物及其近亲的模式形成和组织发育的了解还很匮乏。为了获得更多关于环节动物担轮幼虫神经发生和肌发生的信息,我们使用免疫组织化学染色技术和随后的共聚焦激光扫描显微镜 (clsm) 分析了 Phyllodoce groenlandica 的不同幼虫阶段。我们专注于前变态阶段,重建了浮游多毛类担轮幼虫体内组织和身体形成的过程。我们的研究揭示了环节动物一般发育模式的详细知识,并显示了两种密切相关的环节动物物种之间组织发育的个体发生变时性。与后者相比,我们在幼虫 P. groenlandica 中未能检测到后感觉器官。我们对环节动物担轮幼虫的一般发育得出结论,并提供数据,展示了环节动物身体计划可塑性的新见解。

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