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异时性基因介导的时间模式形成

Temporal pattern formation by heterochronic genes.

作者信息

Slack F, Ruvkun G

机构信息

Department of Genetics, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Annu Rev Genet. 1997;31:611-34. doi: 10.1146/annurev.genet.31.1.611.

Abstract

Heterochrony describes the phylogenetic variation in the relative timing of major developmental events. Such heterochronic variation has been noted across phylogeny, including closely related species, suggesting that particular genetic loci control global aspects of developmental timing, and that variation at those loci may play important roles in evolutionary change. Genetic analyses of heterochronic mutations in the nematode Caenorhabditis elegans reveal that control of temporal patterning is analogous to the dedicated genetic pathways that control the patterning of the spatial axes in Drosophila and other metazoans. These pathways generate graded or binary levels of regulatory factors that pattern particular axes of the developing animal. C. elegans heterochronic genes constitute a regulatory cascade that both generates a temporal decrease in the level of the LIN-14 and LIN-28 proteins and responds to the changes in these gene activities to coordinate the temporal sequence of many cell fates as the animal develops. The temporal regulation of lin-14 and lin-28 gene activities is posttranscriptional and mediated by the antisense RNA product of the lin-4 gene. Hormonal control of developmental timing is a common theme throughout phylogeny. Heterochronic genes that involve hormonal signaling have been identified in vertebrates as well as C. elegans.

摘要

异时性描述了主要发育事件相对时间的系统发育变化。这种异时性变化在整个系统发育过程中都有记录,包括亲缘关系密切的物种,这表明特定的基因座控制着发育时间的全局,并且这些基因座的变异可能在进化变化中发挥重要作用。对线虫秀丽隐杆线虫异时性突变的遗传分析表明,时间模式的控制类似于控制果蝇和其他后生动物空间轴模式的专门遗传途径。这些途径产生分级或二元水平的调节因子,从而确定发育中动物特定轴的模式。秀丽隐杆线虫的异时性基因构成一个调节级联,既能导致LIN - 14和LIN - 28蛋白水平随时间下降,又能对这些基因活性的变化做出反应,以协调动物发育过程中许多细胞命运的时间顺序。lin - 14和lin - 28基因活性的时间调节是转录后水平的,由lin - 4基因的反义RNA产物介导。发育时间的激素控制是整个系统发育过程中的一个共同主题。在脊椎动物以及秀丽隐杆线虫中都已鉴定出涉及激素信号传导的异时性基因。

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