首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Origin of wheat B-genome chromosomes inferred from RNA sequencing analysis of leaf transcripts from section Sitopsis species of Aegilops
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Origin of wheat B-genome chromosomes inferred from RNA sequencing analysis of leaf transcripts from section Sitopsis species of Aegilops

机译:小麦B基因组染色体起源的初步分析是基于节肢动物Sitopsis种叶片转录本的RNA测序分析

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摘要

Dramatic changes occasionally occur in intergenic regions leading to genomic alterations during speciation and will consequently obscure the ancestral species that have contributed to the formation of allopolyploid organisms. The S genome of five species of section Sitopsis of genus Aegilops is considered to be an origin of B-genome in cultivated tetraploid and hexaploid wheat species, although its actual donor is still unclear. Here, we attempted to elucidate phylogenetic relationship among Sitopsis species by performing RNA sequencing of the coding regions of each chromosome. Thus, genome-wide polymorphisms were extensively analyzed in 19 accessions of the Sitopsis species in reference to the tetraploid and hexaploid wheat B genome sequences and consequently were efficiently anchored to the B-genome chromosomes. The results of our genome-wide exon sequencing and resultant phylogenetic analysis indicate that Ae. speltoides is likely to be the direct donor of all chromosomes of the wheat B genome. Our results also indicate that the genome differentiation during wheat allopolyploidization from S to B proceeds at different speeds over the chromosomes rather than at constant rate and recombination could be a factor determining the speed. This observation is potentially generalized to genome differentiation during plant allopolyploid evolution.
机译:突变发生在基因间区域中,有时会导致物种形成过程中的基因组改变,从而掩盖了有助于形成多倍体生物的祖先物种。尽管尚不清楚其真正的供体,但被认为是埃及埃古勒提斯(Aegilops)属Sitopsis科的五种物种的S基因组是B基因组起源于栽培的四倍体和六倍体小麦。在这里,我们试图通过对每个染色体的编码区进行RNA测序来阐明Sitopsis物种之间的系统发生关系。因此,参照四倍体和六倍体小麦B基因组序列,在19个锡特尔种中全面分析了全基因组多态性,从而有效地将其锚定在B基因组染色体上。我们的全基因组外显子测序结果和系统发育分析表明,Ae。 speltoides很可能是小麦B基因组所有染色体的直接供体。我们的结果还表明,在小麦异源多倍体化过程中,从S到B的基因组分化以不同的速度在染色体上进行,而不是以恒定的速度进行,而重组可能是决定速度的因素。该观察结果可能被推广到植物异源多倍体进化过程中的基因组分化。

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