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Genome sequence of the date palm Phoenix dactylifera L

机译:枣椰树Phoenix dactylifera L的基因组序列

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Date palm (Phoenix dactylifera L.) is a cultivated woody plant species with agricultural and economic importance. Here we report a genome assembly for an elite variety (Khalas), which is 605.4 Mb in size and covers >90% of the genome (similar to 671 Mb) and >96% of its genes (similar to 41,660 genes). Genomic sequence analysis demonstrates that P. dactylifera experienced a clear genome-wide duplication after either ancient whole genome duplications or massive segmental duplications. Genetic diversity analysis indicates that its stress resistance and sugar metabolism-related genes tend to be enriched in the chromosomal regions where the density of single-nucleotide polymorphisms is relatively low. Using transcriptomic data, we also illustrate the date palm's unique sugar metabolism that underlies fruit development and ripening. Our large-scale genomic and transcriptomic data pave the way for further genomic studies not only on P. dactylifera but also other Arecaceae plants.RI Yin, Yuxin/G-2694-2014OI Yin, Yuxin/0000-0002-1639-285X
机译:枣椰子(Phoenix dactylifera L.)是一种栽培的木本植物,具有农业和经济意义。在这里,我们报告了一个精英品种(哈拉斯)的基因组装配,其大小为605.4 Mb,覆盖了90%以上的基因组(类似于671 Mb)和96%以上的基因(类似于41,660个基因)。基因组序列分析表明,古生全基因组重复或大规模节段重复后,乳杆菌(P. dactylifera)经历了清晰的全基因组重复。遗传多样性分析表明,它的抗逆性和糖代谢相关基因倾向于在单核苷酸多态性密度相对较低的染色体区域富集。使用转录组学数据,我们还说明了枣椰子独特的糖代谢,它是果实发育和成熟的基础。我们大规模的基因组和转录组数据为进一步的基因组研究铺平了道路,不仅对拟杆菌(P. dactylifera)而且对其他槟榔科植物也是如此.RI Yin,Yuxin / G-2694-2014OI Yin,Yuxin / 0000-0002-1639-285X

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