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PNAS Plus: Extensive sequence divergence between the reference genomes of two elite indica rice varieties Zhenshan 97 and Minghui 63

机译:PNAS Plus:两个优质in稻品种珍山97和明慧63的参考基因组之间的广泛序列差异

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摘要

Asian cultivated rice consists of two subspecies: Oryza sativa subsp. indica and O. sativa subsp. japonica. Despite the fact that indica rice accounts for over 70% of total rice production worldwide and is genetically much more diverse, a high-quality reference genome for indica rice has yet to be published. We conducted map-based sequencing of two indica rice lines, Zhenshan 97 (ZS97) and Minghui 63 (MH63), which represent the two major varietal groups of the indica subspecies and are the parents of an elite Chinese hybrid. The genome sequences were assembled into 237 (ZS97) and 181 (MH63) contigs, with an accuracy >99.99%, and covered 90.6% and 93.2% of their estimated genome sizes. Comparative analyses of these two indica genomes uncovered surprising structural differences, especially with respect to inversions, translocations, presence/absence variations, and segmental duplications. Approximately 42% of nontransposable element related genes were identical between the two genomes. Transcriptome analysis of three tissues showed that 1,059–2,217 more genes were expressed in the hybrid than in the parents and that the expressed genes in the hybrid were much more diverse due to their divergence between the parental genomes. The public availability of two high-quality reference genomes for the indica subspecies of rice will have large-ranging implications for plant biology and crop genetic improvement.
机译:亚洲栽培稻由两个亚种组成:Oryza sativa亚种。 and和苜蓿亚种。粳稻尽管the米占全世界稻米总产量的70%以上,并且在遗传上更加多样化,但尚未发布高质量的rice米参考基因组。我们对两个in稻品系,分别是Zhen亚种的两个主要品种组,是中国优良杂交种的亲本的Zhen山97(ZS97)和Minghui 63(MH63)进行了基于图谱的测序。基因组序列被组装成237(ZS97)和181(MH63)重叠群,准确性> 99.99%,覆盖了估计的基因组大小的90.6%和93.2%。对这两个in稻基因组的比较分析发现了令人惊讶的结构差异,尤其是在倒位,易位,存在/不存在变异和节段重复方面。两个基因组之间约有42%的不可转座元件相关基因相同。对三个组织的转录组分析表明,杂种中表达的基因比亲本中表达的基因多1,059–2,217,并且杂种中表达的基因由于其亲本基因组之间的差异而更加多样化。稻the稻亚种的两个高质量参考基因组的公众可获得性将对植物生物学和作物遗传改良产生广泛的影响。

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