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表观遗传现象与植物异源多倍体的进化

Epigenetic phenomena and the evolution of plant allopolyploids.

作者信息

Liu Bao, Wendel Jonathan F

机构信息

Institute of Genetics and Cytology, Northeast Normal University, Changchun 130024, China.

出版信息

Mol Phylogenet Evol. 2003 Dec;29(3):365-79. doi: 10.1016/s1055-7903(03)00213-6.

Abstract

Allopolyploid speciation is widespread in plants, yet the molecular requirements for successful orchestration of coordinated gene expression for two divergent and reunited genomes are poorly understood. Recent studies in several plant systems have revealed that allopolyploid genesis under both synthetic and natural conditions often is accompanied by rapid and sometimes evolutionarily conserved epigenetic changes, including alteration in cytosine methylation patterns, rapid silencing in ribosomal RNA and protein-coding genes, and de-repression of dormant transposable elements. These changes are inter-related and likely arise from chromatin remodeling and its effects on epigenetic codes during and subsequent to allopolyploid formation. Epigenetic modifications could produce adaptive epimutations and novel phenotypes, some of which may be evolutionarily stable for millions of years, thereby representing a vast reservoir of latent variation that may be episodically released and made visible to selection. This epigenetic variation may contribute to several important attributes of allopolyploidy, including functional diversification or subfunctionalization of duplicated genes, genetic and cytological diploidization, and quenching of incompatible inter-genomic interactions that are characteristic of allopolyploids. It is likely that the evolutionary success of allopolyploidy is in part attributable to epigenetic phenomena that we are only just beginning to understand.

摘要

异源多倍体物种形成在植物中广泛存在,然而对于成功协调两个不同且重新组合的基因组的基因表达所需的分子机制,我们却知之甚少。最近在多个植物系统中的研究表明,在人工合成和自然条件下,异源多倍体的形成通常伴随着快速且有时在进化上保守的表观遗传变化,包括胞嘧啶甲基化模式的改变、核糖体RNA和蛋白质编码基因的快速沉默以及休眠转座元件的去抑制。这些变化相互关联,很可能源于异源多倍体形成期间及之后的染色质重塑及其对表观遗传密码的影响。表观遗传修饰能够产生适应性表观突变和新的表型,其中一些可能在数百万年的时间里在进化上保持稳定,从而代表了一个潜在变异的巨大储备库,这些变异可能会间歇性地释放并在选择中显现出来。这种表观遗传变异可能有助于异源多倍体的几个重要特性,包括重复基因的功能多样化或亚功能化、遗传和细胞学上的二倍体化,以及消除异源多倍体特有的不相容基因组间相互作用。异源多倍体在进化上的成功很可能部分归因于我们才刚刚开始了解的表观遗传现象。

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