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通过对海洋多毛纲环节动物帽贝的鉴定卵裂球的细胞内注射绘制全面的命运图谱。

A comprehensive fate map by intracellular injection of identified blastomeres in the marine polychaete Capitella teleta.

机构信息

Kewalo Marine Laboratory, Pacific Biosciences Research Center, University of Hawaii, 41 Ahui Street, Honolulu, Hawaii 96813, USA.

出版信息

Evodevo. 2010 Sep 15;1(1):8. doi: 10.1186/2041-9139-1-8.

Abstract

BACKGROUND

The polychaete annelid Capitella teleta (formerly Capitella sp. I) develops by spiral cleavage and has been the focus of several recent developmental studies aided by a fully sequenced genome. Fate mapping in polychaetes has lagged behind other spiralian taxa, because of technical limitations.

RESULTS

To generate a modern fate map for C. teleta, we injected 1,1'-dioctadecyl-3,3,3'3'-tetramethylindocarbocyanine perchlorate (DiI) into individual identified blastomeres through fourth-quartet micromere formation. Confocal laser scanning microscopy at single-cell resolution was used to characterize blastomere fates during larval stages. Our results corroborate previous observations from classic studies, and show a number of similarities with other spiralian fate maps, including unique and stereotypic fates for individual blastomeres, presence of four discrete body domains arising from the A, B, C and D cell quadrants, generation of anterior ectoderm from first quartet micromeres, and contributions to trunk ectoderm and ventral nerve cord by the 2d somatoblast. Of particular interest are several instances in which the C. teleta fate map deviates from other spiralian fate maps. For example, we identified four to seven distinct origins of mesoderm, all ectomesodermal. In addition, the left and right mesodermal bands arise from 3d and 3c, respectively, whereas 4d generates a small number of trunk muscle cells, the primordial germ cells and the anus. We identified a complex set of blastomere contributions to the posterior gut in C. teleta, which establishes the most complete map of posterior gut territories to date.

CONCLUSIONS

Our detailed cellular descriptions reveal previously underappreciated complexity in the ontogenetic contributions to several spiralian larval tissues, including the mesoderm, nervous system and gut. The formation of the mesodermal bands by 3c and 3d is in stark contrast to other spiralians, in which 4d generates the mesodermal bands. The results of this study provide a framework for future phylogenetic comparisons and functional analyses of cell-fate specification.

摘要

背景

多毛环节动物沙蚕(以前称为 Capitella sp. I)通过螺旋分裂发育,由于技术限制,其命运图谱绘制一直落后于其他螺旋体类群。

结果

为了为 C. teleta 生成现代命运图谱,我们通过第四四分体小分裂生成单个鉴定的卵裂球注入 1,1'-二辛基-3,3,3'3'-四甲基吲哚羰花青高氯酸盐(DiI)。使用单细胞分辨率的共聚焦激光扫描显微镜来描述幼虫阶段的卵裂球命运。我们的结果证实了以前经典研究的观察结果,并显示了与其他螺旋体命运图谱的许多相似之处,包括单个卵裂球的独特和定型命运、来自 A、B、C 和 D 细胞象限的四个离散体域的出现、第一四分体小分裂生成前外胚层,以及 2d 体生裂球对体节外胚层和腹神经索的贡献。特别有趣的是,C. teleta 命运图谱与其他螺旋体命运图谱存在一些差异。例如,我们确定了四个到七个不同的中胚层起源,都是外胚层中胚层。此外,左右中胚层带分别来自 3d 和 3c,而 4d 产生少量的体节肌肉细胞、原始生殖细胞和肛门。我们确定了 C. teleta 后肠中一系列复杂的卵裂球贡献,这建立了迄今为止最完整的后肠区域图谱。

结论

我们详细的细胞描述揭示了几个螺旋体幼虫组织的胚胎发生贡献以前被低估的复杂性,包括中胚层、神经系统和肠道。3c 和 3d 形成中胚层带与其他螺旋体形成鲜明对比,其中 4d 生成中胚层带。本研究的结果为未来的系统发育比较和细胞命运指定的功能分析提供了框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dc3/2949861/a54b93701fae/2041-9139-1-8-1.jpg

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