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异源四倍体棉花形成过程中进化速率变化、基因组显性和重复基因表达进化。

Evolutionary rate variation, genomic dominance and duplicate gene expression evolution during allotetraploid cotton speciation.

机构信息

Department of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

New Phytol. 2010 Apr;186(1):184-93. doi: 10.1111/j.1469-8137.2009.03107.x. Epub 2009 Nov 19.

DOI:10.1111/j.1469-8137.2009.03107.x
PMID:20002320
Abstract

Here, we describe the evolution of gene expression among a diversified cohort of five allopolyploid species in the cotton genus (Gossypium). Using this phylogenetic framework and comparisons with expression changes accompanying F(1) hybridization, we provide a temporal perspective on expression diversification following a shared genome duplication. Global patterns of gene expression were studied by the hybridization of petal RNAs to a custom microarray. This platform measures total expression for c. 42 000 duplicated genes, and genome-specific expression for c. 1400 homoeologs (genes duplicated by polyploidy). We report homoeolog expression bias favoring the allopolyploid D genome over the A genome in all species (among five polyploid species, D biases ranging from c. 54 to 60%), in addition to conservation of biases among genes. Furthermore, we find surprising levels of transgressive up- and down-regulation in the allopolyploids, a diminution of the level of bias in genomic expression dominance but not in its magnitude, and high levels of rate variation among allotetraploid species. We illustrate how phylogenetic and temporal components of expression evolution may be partitioned and revealed following allopolyploidy. Overall patterns of expression evolution are similar among the Gossypium allotetraploids, notwithstanding a high level of interspecific rate variation, but differ strikingly from the direction of genomic expression dominance patterns in the synthetic F(1) hybrid.

摘要

在这里,我们描述了棉花属(Gossypium)五个异源多倍体物种的基因表达进化。利用这个系统发育框架,并与伴随 F1 杂交的表达变化进行比较,我们提供了一个在共同基因组复制后表达多样化的时间视角。通过花瓣 RNA 与定制微阵列杂交,研究了全局基因表达模式。该平台测量了大约 42000 个重复基因的总表达量,以及大约 1400 个同源基因(由多倍体复制的基因)的基因组特异性表达量。我们报告了所有物种中异源多倍体 D 基因组相对于 A 基因组的同系基因表达偏倚(在五个多倍体物种中,D 偏倚范围从大约 54%到 60%),除了基因之间的偏倚保守性。此外,我们在异源多倍体中发现了惊人的表达上调和下调的超越现象,基因组表达优势的偏倚程度减小,但幅度不变,并且多倍体物种之间的速率变化水平很高。我们说明了在异源多倍体之后,表达进化的系统发育和时间成分如何被划分和揭示。尽管存在很高的种间速率变化,但棉花属异源四倍体的表达进化总体模式相似,但与人工 F1 杂种的基因组表达优势模式的方向明显不同。

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