Transcriptional regulation: a genomic overview.

The arabidopsis book Pub Date : 2002-01-01 Epub Date: 2002-04-04 DOI:10.1199/tab.0085
José Luis Riechmann
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Abstract

The availability of the Arabidopsis thaliana genome sequence allows a comprehensive analysis of transcriptional regulation in plants using novel genomic approaches and methodologies. Such a genomic view of transcription first necessitates the compilation of lists of elements. Transcription factors are the most numerous of the different types of proteins involved in transcription in eukaryotes, and the Arabidopsis genome codes for more than 1,500 of them, or approximately 6% of its total number of genes. A genome-wide comparison of transcription factors across the three eukaryotic kingdoms reveals the evolutionary generation of diversity in the components of the regulatory machinery of transcription. However, as illustrated by Arabidopsis, transcription in plants follows similar basic principles and logic to those in animals and fungi. A global view and understanding of transcription at a cellular and organismal level requires the characterization of the Arabidopsis transcriptome and promoterome, as well as of the interactome, the localizome, and the phenome of the proteins involved in transcription.

转录调控:基因组概述。
拟南芥基因组序列的获得,使我们能够利用新的基因组学方法和手段对植物的转录调控进行全面分析。从基因组学的角度看转录,首先需要编制转录因子列表。转录因子是真核生物中参与转录的各类蛋白质中数量最多的,拟南芥基因组中编码了 1,500 多个转录因子,约占其基因总数的 6%。通过对三个真核生物界的转录因子进行全基因组比较,可以发现转录调控机制的组成成分在进化过程中产生了多样性。不过,正如拟南芥所示,植物的转录遵循与动物和真菌相似的基本原则和逻辑。要在细胞和生物体水平上全面了解和理解转录,就需要对拟南芥转录组和启动子组,以及参与转录的蛋白质的相互作用组、定位组和表型组进行鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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