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A high-quality carrot genome assembly provides new insights into carotenoid accumulation and asterid genome evolution

机译:高质量的胡萝卜基因组装配为类胡萝卜素积累和星状基因组进化提供了新见解

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We report a high-quality chromosome-scale assembly and analysis of the carrot (Daucus carota) genome, the first sequenced genome to include a comparative evolutionary analysis among members of the euasterid II clade. We characterized two new polyploidization events, both occurring after the divergence of carrot from members of the Asterales order, clarifying the evolutionary scenario before and after radiation of the two main asterid clades. Large-and small-scale lineage-specific duplications have contributed to the expansion of gene families, including those with roles in flowering time, defense response, flavor, and pigment accumulation. We identified a candidate gene, DCAR_032551, that conditions carotenoid accumulation (Y) in carrot taproot and is coexpressed with several isoprenoid biosynthetic genes. The primary mechanism regulating carotenoid accumulation in carrot taproot is not at the biosynthetic level. We hypothesize that DCAR_032551 regulates upstream photosystem development and functional processes, including photomorphogenesis and root de-etiolation.
机译:我们报告了高质量的染色体规模的组装和胡萝卜(Daucus carota)基因组的分析,这是第一个测序的基因组,包括在euasterid II进化枝成员之间的比较进化分析。我们表征了两个新的多倍体化事件,都发生在胡萝卜与紫ster科成员的分化之后,阐明了两个主要星状进化枝辐射前后的进化情况。大规模和小规模的谱系特异性重复已经促进了基因家族的扩展,包括在开花时间,防御反应,风味和色素积累中起作用的那些。我们确定了候选基因DCAR_032551,该基因可调节胡萝卜主根中的类胡萝卜素积累(Y),并与几种类异戊二烯生物合成基因共表达。调节胡萝卜主根中类胡萝卜素积累的主要机制不在生物合成水平。我们假设DCAR_032551调节上游光系统的发育和功能过程,包括光形态发生和根去黄化。

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