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通过拟南芥诱变确定基因功能。

Establishing gene function by mutagenesis in Arabidopsis thaliana.

作者信息

Østergaard Lars, Yanofsky Martin F

机构信息

Section of Cell and Developmental Biology, University of California at San Diego, La Jolla, CA 92093-0116, USA.

出版信息

Plant J. 2004 Sep;39(5):682-96. doi: 10.1111/j.1365-313X.2004.02149.x.

Abstract

The nuclear genome of Arabidopsis thaliana was sequenced to near completion a few years ago, and ahead lies the challenge of understanding its meaning and discerning its potential. How many genes are there? What are they? What do they do? Computer algorithms combined with genome array technologies have proven efficient in addressing the first two questions as shown in a recent report (Yamada et al., 2003). However, assessing the function of every gene in every cell will require years of careful analyses of the phenotypes caused by mutations in each gene. Current progress in generating large numbers of molecular markers and near-saturation insertion mutant collections has immensely facilitated functional genomics studies in Arabidopsis. In this review, we focus on how gene function can be revealed through the analysis of mutants by either forward or reverse genetics. These mutants generally fall into two distinct classes. The first class typically includes point mutations or small deletions derived from chemical or fast neutron mutagenesis whereas the second class includes insertions of transferred-DNA or transposon elements. We describe the current methods that are used to identify the gene corresponding to these mutations, which can then be used as a probe to further dissect its function.

摘要

几年前,拟南芥的核基因组测序已接近完成,接下来面临的挑战是理解其意义并洞察其潜力。它有多少个基因?它们是什么?它们有什么作用?正如最近一份报告(Yamada等人,2003年)所示,计算机算法与基因组阵列技术相结合已被证明在解决前两个问题方面是有效的。然而,评估每个细胞中每个基因的功能需要多年对每个基因突变所导致的表型进行仔细分析。目前在生成大量分子标记和近乎饱和的插入突变体库方面取得的进展极大地促进了拟南芥的功能基因组学研究。在这篇综述中,我们重点关注如何通过正向或反向遗传学对突变体的分析来揭示基因功能。这些突变体通常分为两个不同的类别。第一类通常包括源自化学或快中子诱变的点突变或小缺失,而第二类包括转移DNA或转座子元件的插入。我们描述了目前用于鉴定与这些突变相对应的基因的方法,这些基因随后可作为进一步剖析其功能的探针。

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