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Relationships of wild and domesticated rices (Oryza AA genome species) based upon whole chloroplast genome sequences

机译:基于完整叶绿体基因组序列的野生稻和驯化稻( Oryza AA基因组物种)之间的关系

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Rice is the most important crop in the world, acting as the staple food for over half of the world’s population. The evolutionary relationships of cultivated rice and its wild relatives have remained contentious and inconclusive. Here we report on the use of whole chloroplast sequences to elucidate the evolutionary and phylogenetic relationships in the AA genome Oryza species, representing the primary gene pool of rice. This is the first study that has produced a well resolved and strongly supported phylogeny of the AA genome species. The pan tropical distribution of these rice relatives was found to be explained by long distance dispersal within the last million years. The analysis resulted in a clustering pattern that showed strong geographical differentiation. The species were defined in two primary clades with a South American/African clade with two species, O glumaepatula and O longistaminata , distinguished from all other species. The largest clade was comprised of an Australian clade including newly identified taxa and the African and Asian clades. This refined knowledge of the relationships between cultivated rice and the related wild species provides a strong foundation for more targeted use of wild genetic resources in rice improvement and efforts to ensure their conservation.
机译:水稻是世界上最重要的作物,是世界一半以上人口的主食。栽培稻及其野生近缘种的进化关系仍然存在争议和不确定性。在这里,我们报道了使用完整的叶绿体序列阐明AA基因组Oryza物种(代表水稻的主要基因库)中的进化和系统发育关系。这是第一项获得良好解决方案并得到AA基因组物种系统发育支持的研究。发现这些稻亲属的泛热带分布是近一百万年来的远距离传播所解释的。分析得出的聚类模式显示出强烈的地理差异。该物种被定义为两个主要进化枝,其中南美/非洲进化枝具有两个物种O glumaepatula和O longistaminata,与所有其他物种区分开。最大的进化枝是由澳大利亚的进化枝组成,其中包括新近确定的分类单元以及非洲和亚洲的进化枝。对栽培稻与相关野生物种之间关系的了解,为在稻谷改良中更加有针对性地利用野生遗传资源和确保其保护的努力奠定了坚实的基础。

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