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至关重要的重要性:拟南芥中的胚胎缺陷基因

The importance of being essential: EMBRYO-DEFECTIVE genes in Arabidopsis.

作者信息

Devic Martine

机构信息

Genome and Plant Development Laboratory, CNRS-IRD-Université de Perpignan, UMR5096, 52, rue Paul Alduy, 66860 Perpignan cedex, France.

出版信息

C R Biol. 2008 Oct;331(10):726-36. doi: 10.1016/j.crvi.2008.07.014. Epub 2008 Sep 2.

Abstract

With the completion of the sequence of the first bacterial genomes, scientists have been able to address the question: How many genes are required for cell viability? In attempting to reply to this question, the concept of the minimal gene set was developed and validated by systematic gene disruption. In a similar manner, whole genome comparisons and systematic Knock-Out have been performed in eukaryotes and have led to the identification to date of the set of essential genes in yeast and C. elegans. In the plant kingdom, the sequence of the Arabidopsis genome together with large-scale functional genomics programs now allow us to address the question of essentiality in Arabidopsis. These concerted efforts have resulted in the identification to date of up to 219 genes essential for seed development (EMBRYO-DEFECTIVE, EMB, genes). With this basic knowledge, we can start a valid comparison of essentiality in Arabidopsis and in other eukaryotes based on functional categories and orthologous relationships. Furthermore, the function of the EMB genes in the particular context of eukaryote evolution driven by whole genome duplications and selective gene loss will be discussed.

摘要

随着首批细菌基因组序列的完成,科学家们得以解决这个问题:细胞存活需要多少基因?在试图回答这个问题的过程中,最小基因集的概念通过系统的基因破坏得以发展和验证。以类似的方式,在真核生物中进行了全基因组比较和系统敲除,并导致了迄今为止酵母和秀丽隐杆线虫中必需基因集的鉴定。在植物界,拟南芥基因组序列以及大规模功能基因组学计划现在使我们能够解决拟南芥中的必需性问题。这些协同努力已导致迄今为止鉴定出多达219个对种子发育至关重要的基因(胚胎缺陷,EMB,基因)。有了这些基础知识,我们可以基于功能类别和直系同源关系,开始对拟南芥和其他真核生物中的必需性进行有效的比较。此外,还将讨论在全基因组复制和选择性基因丢失驱动的真核生物进化的特定背景下,EMB基因的功能。

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