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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Dissecting the genetic control of root and leaf tissue-specific anthocyanin pigmentation in carrot (Daucus carota L.)
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Dissecting the genetic control of root and leaf tissue-specific anthocyanin pigmentation in carrot (Daucus carota L.)

机译:对胡萝卜(Daucus Carota L.)的根和叶片组织特异性花青素色素沉着化的遗传控制

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摘要

Key message Inheritance, QTL mapping, phylogenetic, and transcriptome (RNA-Seq) analyses provide insight into the genetic control underlying carrot root and leaf tissue-specific anthocyanin pigmentation and identify candidate genes for root phloem pigmentation. Purple carrots can accumulate large quantities of anthocyanins in their root tissues, as well as in other plant parts. This work investigated the genetic control underlying tissue-specific anthocyanin pigmentation in the carrot root phloem and xylem, and in leaf petioles. Inheritance of anthocyanin pigmentation in these three tissues was first studied in segregating F-2 and F-4 populations, followed by QTL mapping of phloem and xylem anthocyanin pigments (independently) onto two genotyping by sequencing-based linkage maps, to reveal two regions in chromosome 3, namely P-1 and P-3, controlling pigmentation in these three tissues. Both P-1 and P-3 condition pigmentation in the phloem, with P-3 also conditioning pigmentation in the xylem and petioles. By means of linkage mapping, phylogenetic analysis, and comparative transcriptome (RNA-Seq) analysis among carrot roots with differing purple pigmentation phenotypes, we identified candidate genes conditioning pigmentation in the phloem, the main tissue influencing total anthocyanin levels in the root. Among them, a MYB transcription factor, DcMYB7, and two cytochrome CYP450 genes with putative flavone synthase activity were identified as candidates regulating both the presence/absence of pigmentation and the concentration of anthocyanins in the root phloem. Concomitant expression patterns of DcMYB7 and eight anthocyanin structural genes were found, suggesting that DcMYB7 regulates transcription levels in the latter. Another MYB, DcMYB6, was upregulated in specific purple-rooted samples, suggesting a genotype-specific regulatory activity for this gene. These data contribute to the understanding of anthocyanin regulation in the carrot root at a tissue-specific level and maybe instrumental for improving carrot nutritional value.
机译:关键消息遗传,QTL映射,系统发育和转录组(RNA-SEQ)分析提供了对遗传控制底层红萝卜根和叶片组织特异性花青素色素沉着型的洞察力,并鉴定根磷素色素沉着的候选基因。紫色胡萝卜可以在其根部组织中积累大量的花青素,以及其他植物零件。这项工作研究了胡萝卜根韧皮和木质素中的组织特异性花青素色素沉着的遗传控制,以及叶片叶柄。首先在分离F-2和F-4种群中研究了这三种组织中的花青素色素沉着,其次是通过基于测序的键的键样图进行验素和木质素花青素颜料(独立地)的QTL映射(独立地),以显示两个区域染色体3,即P-1和P-3,控制这三种组织中的色素沉着。 P-1和P-3条件的phloem中的p-3条件,P-3还在木质和叶柄中调节色素沉着。通过连杆映射,系统发育分析和比较转录组(RNA-SEQ)分析,具有不同紫色色素沉着表型的红萝卜根,我们确定了磷酸中的候选基因调节色素沉着,主要组织影响根部的总花青素水平。其中,用推定的黄酮合酶活性的MYB转录因子,DCMYB7和两个细胞色素CYP450基因被鉴定为调节色素沉着的存在/不存在和根部韧皮中的花青素的浓度。发现DCMYB7和8个三孔素结构基因的伴随表达模式,表明DCMYB7调节后者的转录水平。另一种MYB DCMYB6在特定的紫色根样上上调,表明该基因的基因型特异性调节活动。这些数据有助于了解在组织特异性水平的胡萝卜根中的花青素调节,并可能有助于改善胡萝卜营养价值。

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