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通过差异内复制在尾索动物异体住囊虫上皮器官发生过程中进行模式形成。

Patterning through differential endoreduplication in epithelial organogenesis of the chordate, Oikopleura dioica.

作者信息

Ganot Philippe, Thompson Eric M

机构信息

Sars International Centre for Marine Molecular Biology, Bergen High Technology Centre, Thormøhlensgt. 55, N-5008 Bergen, Norway.

出版信息

Dev Biol. 2002 Dec 1;252(1):59-71. doi: 10.1006/dbio.2002.0834.

Abstract

The contributions that control of cell proliferation and cell growth make to developmental regulation of organ and body size remain poorly explored, particularly with respect to endocycles in polyploid tissues. The epithelium of the marine chordate Oikopleura dioica is composed of a fixed number of cells grouped in territories according to gene-specific expression and nuclear sizes and shapes. As the animal grows 10-fold during the life cycle, epithelial cells increase in size differentially as a function of their spatial position. We show that this cellular pattern reflected differences in ploidy levels ranging from 34 to 1,300 C. The diverse ploidy levels in defined cellular fields resulted both from different timing of entry into endocycles and from cell-specific regulation of endocycle lengths. Throughout the life cycle, differential cell size and ploidy increases were accompanied by field-specific profiles of progressive reductions in G-phase duration. Endocycles were asynchronous among cells of a given epithelial territory, but at the resolution of individual cells, both DNA replication timing and ploidy levels were bilaterally symmetric. The transparent, accessible, oikoplastic epithelium is a model of choice for the study of endoreduplication in the context of pattern formation and growth.

摘要

细胞增殖和细胞生长的调控对器官和身体大小的发育调节所做的贡献仍未得到充分探索,尤其是在多倍体组织中的内复制周期方面。海洋脊索动物双尾海鞘的上皮由固定数量的细胞组成,这些细胞根据基因特异性表达以及细胞核大小和形状聚集在不同区域。在生命周期中,随着动物体长增长10倍,上皮细胞会根据其空间位置不同程度地增大。我们发现这种细胞模式反映了从34C到1300C不等的倍性水平差异。特定细胞区域内不同的倍性水平既源于进入内复制周期的时间不同,也源于内复制周期长度的细胞特异性调控。在整个生命周期中,细胞大小和倍性的差异增加伴随着G期持续时间逐渐缩短的区域特异性变化趋势。给定上皮区域的细胞之间内复制周期是不同步的,但在单个细胞层面,DNA复制时间和倍性水平都是双侧对称的。透明、易于观察的海鞘上皮是研究模式形成和生长背景下的核内复制的理想模型。

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