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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Organ-Specific Silencing of Duplicated Genes in a Newly Synthesized Cotton Allotetraploid
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Organ-Specific Silencing of Duplicated Genes in a Newly Synthesized Cotton Allotetraploid

机译:新合成的棉花异源四倍体中重复基因的器官特异性沉默

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Most eukaryotes have undergone genome doubling at least once during their evolutionary history. Hybridization followed by genome doubling (allopolyploidization) is a prominent mode of speciation in plants, leading to phenotypic novelty and changes in genome structure and gene expression. Molecular events that take place immediately after polyploid formation can be studied using newly synthesized allopolyploids. Here we studied the extent of gene silencing in a newly created and genomically stable allotetraploid cotton, of genotype AAGG, using an AFLP-cDNA display screen. Over 2000 transcripts were screened and ~5% of the duplicated genes in the allotetraploid were inferred to have been silenced or downregulated. Sequencing of 24 AFLP-cDNA fragments revealed genes with a variety of functions. Analysis by RT-PCR showed silencing or a strong expression bias toward one copy for 9 of 13 genes examined. Comparisons of expression patterns among eight organs in the allopolyploid showed that silencing and preferential expression are organ specific. Examination of silencing patterns in two other synthetic polyploids, of genotype AADD, showed that the same gene can be silenced independently in different genotypes. These results provide a detailed portrayal of gene silencing events that can occur following allopolyploidization and suggest epigenetic causal factors.
机译:大多数真核生物在其进化史中经历了至少两次基因组倍增。杂交后再进行基因组加倍(全聚倍体化)是植物的一种特殊的物种形成方式,导致表型的新颖性以及基因组结构和基因表达的变化。可以使用新合成的同素多倍体研究多倍体形成后立即发生的分子事件。在这里,我们使用AFLP-cDNA显示屏研究了基因型AAGG的新近创建的,基因组稳定的异源四倍体棉中基因沉默的程度。筛选了2000多个转录本,推断异源四倍体中约5%的重复基因被沉默或下调。 24个AFLP-cDNA片段的测序揭示了具有多种功能的基因。通过RT-PCR分析显示,对于所检查的13个基因中的9个,一个拷贝具有沉默或强烈的表达偏向。比较同种多倍体中八个器官之间的表达方式,表明沉默和优先表达是器官特异性的。检查另外两个基因型为AADD的合成多倍体的沉默模式表明,同一基因可以在不同基因型中独立沉默。这些结果提供了基因沉默事件的详细描述,这些事件可能在同种多倍体化之后发生,并暗示了表观遗传原因。

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