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Complete chloroplast and ribosomal sequences for 30 accessions elucidate evolution of Oryza AA genome species

机译:完整的叶绿体和核糖体序列(共30个种)阐明了 Oryza AA基因组物种的进化

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Cytoplasmic chloroplast (cp) genomes and nuclear ribosomal DNA (nR) are the primary sequences used to understand plant diversity and evolution. We introduce a high-throughput method to simultaneously obtain complete cp and nR sequences using Illumina platform whole-genome sequence. We applied the method to 30 rice specimens belonging to nine Oryza species. Concurrent phylogenomic analysis using cp and nR of several of specimens of the same Oryza AA genome species provides insight into the evolution and domestication of cultivated rice, clarifying three ambiguous but important issues in the evolution of wild Oryza species. First, cp-based trees clearly classify each lineage but can be biased by inter-subspecies cross-hybridization events during speciation. Second, O. glumaepatula , a South American wild rice, includes two cytoplasm types, one of which is derived from a recent interspecies hybridization with O. longistminata . Third, the Australian O. rufipogan -type rice is a perennial form of O. meridionalis .
机译:细胞质叶绿体(cp)基因组和核糖体DNA(nR)是用于了解植物多样性和进化的主要序列。我们介绍了一种高通量方法,可使用Illumina平台全基因组序列同时获得完整的cp和nR序列。我们将该方法应用于属于9个Oryza物种的30个水稻标本。使用cp和nR进行的同时Oryza AA基因组物种的几个标本的同时系统发育分析,可以深入了解栽培稻的进化和驯化,从而阐明了野生Oryza物种进化中的三个模棱两可但重要的问题。首先,基于cp的树清楚地将每个谱系分类,但是在物种形成过程中可能会因亚种间的杂种杂交事件而产生偏差。其次,南美野生稻O. glumaepatula包含两种细胞质类型,其中一种来源于最近与O. longistminata的种间杂交。第三,澳大利亚O. rufipogan型稻是多年生O. meridionalis的形式。

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