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多倍体中基因表达变化的全基因组分析方法。

Methods for genome-wide analysis of gene expression changes in polyploids.

作者信息

Wang Jianlin, Lee Jinsuk J, Tian Lu, Lee Hyeon-Se, Chen Meng, Rao Sheetal, Wei Edward N, Doerge R W, Comai Luca, Chen Z Jeffrey

机构信息

Department of Soil and Crop Sciences, Texas A&M University, College Station, Texas 77843-2474, USA.

出版信息

Methods Enzymol. 2005;395:570-96. doi: 10.1016/S0076-6879(05)95030-1.

Abstract

Polyploidy is an evolutionary innovation, providing extra sets of genetic material for phenotypic variation and adaptation. It is predicted that changes of gene expression by genetic and epigenetic mechanisms are responsible for novel variation in nascent and established polyploids (Liu and Wendel, 2002; Osborn et al., 2003; Pikaard, 2001). Studying gene expression changes in allopolyploids is more complicated than in autopolyploids, because allopolyploids contain more than two sets of genomes originating from divergent, but related, species. Here we describe two methods that are applicable to the genome-wide analysis of gene expression differences resulting from genome duplication in autopolyploids or interactions between homoeologous genomes in allopolyploids. First, we describe an amplified fragment length polymorphism (AFLP)--complementary DNA (cDNA) display method that allows the discrimination of homoeologous loci based on restriction polymorphisms between the progenitors. Second, we describe microarray analyses that can be used to compare gene expression differences between the allopolyploids and respective progenitors using appropriate experimental design and statistical analysis. We demonstrate the utility of these two complementary methods and discuss the pros and cons of using the methods to analyze gene expression changes in autopolyploids and allopolyploids. Furthermore, we describe these methods in general terms to be of wider applicability for comparative gene expression in a variety of evolutionary, genetic, biological, and physiological contexts.

摘要

多倍体是一种进化创新,为表型变异和适应提供额外的遗传物质组。据预测,遗传和表观遗传机制引起的基因表达变化是新生和已形成多倍体中产生新变异的原因(Liu和Wendel,2002年;Osborn等人,2003年;Pikaard,2001年)。研究异源多倍体中的基因表达变化比同源多倍体更复杂,因为异源多倍体包含来自不同但相关物种的两套以上基因组。在这里,我们描述了两种适用于全基因组分析同源多倍体中基因组复制或异源多倍体中同源基因组间相互作用所导致的基因表达差异的方法。首先,我们描述一种扩增片段长度多态性(AFLP)-互补DNA(cDNA)展示方法,该方法可基于亲本间的限制性多态性来区分同源位点。其次,我们描述了微阵列分析,可利用适当的实验设计和统计分析来比较异源多倍体与其各自亲本之间的基因表达差异。我们展示了这两种互补方法的实用性,并讨论了使用这些方法分析同源多倍体和异源多倍体中基因表达变化的优缺点。此外,我们对这些方法进行了一般性描述,以便在各种进化、遗传、生物学和生理学背景下更广泛地应用于比较基因表达。

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