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Protein-coding genes are epigenetically regulated in Arabidopsis polyploids

机译:蛋白质编码基因受表观遗传调控 拟南芥多倍体

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摘要

The fate of redundant genes resulting from genome duplication is poorly understood. Previous studies indicated that ribosomal RNA genes from one parental origin are epigenetically silenced during interspecific hybridization or polyploidization. Regulatory mechanisms for protein-coding genes in polyploid genomes are unknown, partly because of difficulty in studying expression patterns of homologous genes. Here we apply amplified fragment length polymorphism (AFLP)–cDNA display to perform a genome-wide screen for orthologous genes silenced in Arabidopsis suecica, an allotetraploid derived from Arabidopsis thaliana and Cardaminopsis arenosa. We identified ten genes that are silenced from either A. thaliana or C. arenosa origin in A. suecica and located in four of the five A. thaliana chromosomes. These genes represent a variety of RNA and predicted proteins including four transcription factors such as TCP3. The silenced genes in the vicinity of TCP3 are hypermethylated and reactivated by blocking DNA methylation, suggesting epigenetic regulation is involved in the expression of orthologous genes in polyploid genomes. Compared with classic genetic mutations, epigenetic regulation may be advantageous for selection and adaptation of polyploid species during evolution and development.
机译:人们对基因组重复产生的冗余基因的命运知之甚少。先前的研究表明,一种亲本来源的核糖体RNA基因在种间杂交或多倍体化过程中被表观遗传沉默。多倍体基因组中蛋白质编码基因的调控机制尚不清楚,部分原因是难以研究同源基因的表达模式。在这里,我们应用扩增的片段长度多态性(AFLP)-cDNA显示来对全基因组基因进行筛选,该基因组位于拟南芥suecica(一种来自拟南芥和拟南芥的异源四倍体)中沉默的直系同源基因。我们鉴定了十个基因,它们从拟南芥或拟南芥中隐匿于拟南芥中,并且位于五个拟南芥染色体中的四个中。这些基因代表各种RNA和预测的蛋白质,包括四个转录因子,例如TCP3。 TCP3附近的沉默基因被高度甲基化,并通过阻止DNA甲基化而被重新激活,这表明表观遗传调控与多倍体基因组直系同源基因的表达有关。与经典的遗传突变相比,表观遗传调控可能在进化和发育过程中有利于多倍体物种的选择和适应。

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