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Untangling Nucleotide Diversity and Evolution of the H Genome in Polyploid Hordeum and Elymus Species Based on the Single Copy of Nuclear Gene DMC1

机译:基于核基因DMC1的单拷贝解开多倍体大麦和披碱草物种中核苷酸多样性和H基因组的进化。

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摘要

Numerous hybrid and polypoid species are found within the Triticeae. It has been suggested that the H subgenome of allopolyploid Elymus (wheatgrass) species originated from diploid Hordeum (barley) species, but the role of hybridization between polyploid Elymus and Hordeum has not been studied. It is not clear whether gene flow across polyploid Hordeum and Elymus species has occurred following polyploid speciation. Answering these questions will provide new insights into the formation of these polyploid species, and the potential role of gene flow among polyploid species during polyploid evolution. In order to address these questions, disrupted meiotic cDNA1 (DMC1) data from the allopolyploid StH Elymus are analyzed together with diploid and polyploid Hordeum species. Phylogenetic analysis revealed that the H copies of DMC1 sequence in some Elymus are very close to the H copies of DMC1 sequence in some polyploid Hordeum species, indicating either that the H genome in theses Elymus and polyploid Hordeum species originated from same diploid donor or that gene flow has occurred among them. Our analysis also suggested that the H genomes in Elymus species originated from limited gene pool, while H genomes in Hordeum polyploids have originated from broad gene pools. Nucleotide diversity (π) of the DMC1 sequences on H genome from polyploid species (π = 0.02083 in Elymus, π = 0.01680 in polyploid Hordeum) is higher than that in diploid Hordeum (π = 0.01488). The estimates of Tajima's D were significantly departure from the equilibrium neutral model at this locus in diploid Hordeum species (P<0.05), suggesting an excess of rare variants in diploid species which may not contribute to the origination of polyploids. Nucleotide diversity (π) of the DMC1 sequences in Elymus polyploid species (π = 0.02083) is higher than that in polyploid Hordeum (π = 0.01680), suggesting that the degree of relationships between two parents of a polyploid might be a factor affecting nucleotide diversity in allopolyploids.
机译:在小麦中发现了许多杂种和息肉种类。有人提出异多倍体披碱草(小麦草)的 H 亚基因组起源于二倍体大麦(大麦)物种,但尚未研究多倍草皮与大麦之间的杂交作用。尚不清楚多倍体物种形成后是否发生了跨多倍体大麦和披碱草属物种的基因流动。回答这些问题将为这些多倍体物种的形成以及多倍体物种进化过程中基因流在多倍体物种之间的潜在作用提供新的见解。为了解决这些问题,分析了来自异源多倍体StH Elymus的减数分裂cDNA1(DMC1)数据以及二倍体和多倍体大麦属物种。系统发育分析表明,一些大麦草中DMC1序列的H拷贝与某些多倍体大麦中的DMC1序列的H拷贝非常接近,表明这些大草中的E基因组和多倍体大麦的H基因组均来自同一二倍体供体或该基因。其中发生了流量。我们的分析还表明,披碱草属物种的H基因组起源于有限的基因库,而大麦多倍体中的H基因组起源于广泛的基因库。多倍体物种(Elymus中的π= 0.02083,多倍体大麦的π= 0.01680)的H基因组上DMC1序列的核苷酸多样性(π)高于二倍体 Hordeum (π= 0.01488)。 Tajima D的估计值在二倍体 Hordeum 物种的该基因座处显着偏离平衡中性模型(P <0.05),表明二倍体物种中稀有变异体过多,这可能无助于多倍体。 Elymus 多倍体物种(πspecies = 0.02083)中DMC1序列的核苷酸多样性(π)高于 Hordeum 多倍体物种(π= 0.01680),这表明多倍体的两个亲本之间的关系可能是影响同素多倍体中核苷酸多样性的因素。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Dongfa Sun; Genlou Sun;

  • 作者单位
  • 年(卷),期 2009(7),12
  • 年度 2009
  • 页码 e50369
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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