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多细胞生物的起源以及动物发育遗传工具包的早期历史。

The origins of multicellularity and the early history of the genetic toolkit for animal development.

作者信息

Rokas Antonis

机构信息

Vanderbilt University, Department of Biological Sciences, Nashville, Tennessee 37235, USA.

出版信息

Annu Rev Genet. 2008;42:235-51. doi: 10.1146/annurev.genet.42.110807.091513.

Abstract

Multicellularity appeared early and repeatedly in life's history; its instantiations presumably required the confluence of environmental, ecological, and genetic factors. Comparisons of several independently evolved pairs of multicellular and unicellular relatives indicate that transitions to multicellularity are typically associated with increases in the numbers of genes involved in cell differentiation, cell-cell communication, and adhesion. Further examination of the DNA record suggests that these increases in gene complexity are the product of evolutionary innovation, tinkering, and expansion of genetic material. Arguably, the most decisive multicellular transition was the emergence of animals. Decades of developmental work have demarcated the genetic toolkit for animal multicellularity, a select set of a few hundred genes from a few dozen gene families involved in adhesion, communication, and differentiation. Examination of the DNA records of the earliest-branching animal phyla and their closest protist relatives has begun to shed light on the origins and assembly of this toolkit. Emerging data favor a model of gradual assembly, with components originating and diversifying at different time points prior to or shortly after the origin of animals.

摘要

多细胞性在生命历史中很早就出现了,并且多次出现;其形成大概需要环境、生态和遗传因素的共同作用。对几对独立进化的多细胞和单细胞亲缘物种进行比较表明,向多细胞性的转变通常与参与细胞分化、细胞间通讯和黏附的基因数量增加有关。对DNA记录的进一步研究表明,这些基因复杂性的增加是进化创新、修补和遗传物质扩展的产物。可以说,最具决定性的多细胞转变是动物的出现。数十年来的发育研究已经划定了动物多细胞性的遗传工具包,这是一组从涉及黏附、通讯和分化的几十个基因家族中挑选出来的几百个基因。对最早分支的动物门及其最亲近的原生生物亲缘物种的DNA记录进行研究,已开始揭示这个工具包的起源和组装过程。新出现的数据支持一种逐步组装的模型,其组成部分在动物起源之前或之后不久的不同时间点产生并多样化。

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