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关于细胞间桥在雄性生殖细胞发育中的功能及其细胞机制的假说。

Hypotheses for the functions of intercellular bridges in male germ cell development and its cellular mechanisms.

作者信息

Guo G-Q Guanq-Qin, Zheng G-C Guo-Chang

机构信息

Laboratory of cell biology, Lanzhou University, Lanzhou 730000, PR China.

出版信息

J Theor Biol. 2004 Jul 7;229(1):139-46. doi: 10.1016/j.jtbi.2004.03.010.

Abstract

In oogamous reproduction of multicellular organisms, a striking phenomenon is the prevailing synchronous development of male germ cells connected by wide intercellular bridges (IBs, 0.1-2 microm), which is well conserved in both animal and plant species ranging from algae to human. In the literature, IBs are believed either to allow genetically segregated haploid spermatids to share diploid gene products after meiosis, or to mediate rapid transfer of some vital signals or nutrients. Although intercellular sharing of gene transcripts has experimental evidences, these hypotheses are still not satisfactory. To explore the unknown roles of IB, we assume that developing male germ cells may be especially sensitive to stochastic gene expression to become heterogeneous. To achieve best gamete quality, such heterogeneity must be eliminated so that relatively uniform gametes with normal functions can be produced. Development within a common syncytium may be the only way for this purpose. The process may require not only the intercellular exchange of a few molecular signals but also the mixing of protoplasm between the connected cells so that they have similar levels/states of mRNAs, proteins and organelles, which can be achieved only through wide IBs. This hypothesis can explain some quite intriguing aspects of male gametogenesis and provide unique predictions that can be tested experimentally.

摘要

在多细胞生物的卵式生殖中,一个显著现象是通过宽细胞间桥(IBs,0.1 - 2微米)相连的雄性生殖细胞普遍同步发育,这在从藻类到人类的动植物物种中都得到了很好的保留。在文献中,细胞间桥被认为要么是在减数分裂后允许基因分离的单倍体精子细胞共享二倍体基因产物,要么是介导某些重要信号或营养物质的快速传递。尽管基因转录本的细胞间共享有实验证据,但这些假设仍不尽人意。为了探索细胞间桥的未知作用,我们假设发育中的雄性生殖细胞可能对随机基因表达特别敏感,从而变得异质。为了获得最佳的配子质量,这种异质性必须消除,以便产生功能正常且相对均匀的配子。在共同的合胞体内发育可能是实现这一目的的唯一途径。这个过程可能不仅需要少数分子信号的细胞间交换,还需要相连细胞之间原生质的混合,以便它们具有相似水平/状态的mRNA、蛋白质和细胞器,而这只有通过宽细胞间桥才能实现。这一假设可以解释雄性配子发生的一些相当有趣的方面,并提供可以通过实验进行检验的独特预测。

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