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首页> 外文期刊>Plant molecular biology reporter >Loss of Function of the Carotenoid Isomerase Gene BrCRTISO Confers Orange Color to the Inner Leaves of Chinese Cabbage (Brassica rapa L. ssp pekinensis)
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Loss of Function of the Carotenoid Isomerase Gene BrCRTISO Confers Orange Color to the Inner Leaves of Chinese Cabbage (Brassica rapa L. ssp pekinensis)

机译:类胡萝卜素异构酶基因BrCRTISO的功能丧失赋予大白菜(Brassica rapa L. ssp pekinensis)内叶橙色

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摘要

Chinese cabbage varieties with orange inner leaves are of interest due to their attractive appearance and high carotenoid content. Previously, a recessive locus, Br-or, that confers this trait was mapped to linkage group A09 in Brassica rapa, and Bra031539 was identified as the candidate gene. We used a backcross population consisting of 1,392 individuals for fine mapping; three linked markers delimited the Br-or locus to a region of 9.47 kb, which contained only one predicted functional gene, Bra031539 (the carotenoid isomerase gene BrCRTISO). We identified two bacterial artificial chromosome (BAC) clones carrying Br-or and confirmed that this allele of BrCRTISO confers the mutant phenotype by sequencing. Many DNA sequence variations are present in Br-or, including a 90-bp DNA deletion in the promoter and a 501-bp insertion at the 3' end of the gene. GUS staining showed that the spatial expression of BrCRTISO was perfectly coincident with the site of carotenoid synthesis and that the 90-bp deletion in the promoter slightly downregulated expression of the gene. Using an in vitro enzyme assay, we showed that the mutant Br-or protein cannot convert prolycopene to all-trans-lycopene. Light has a positive effect on the expression of carotenoid biosynthesis genes, except for beta-ring carotene hydroxylase (CHXB), and this coincided with the increase in total lycopene and beta-carotene in the Br-or mutant. We also demonstrated that loss of BrCRTISO function, upregulation of the upstream genes, and downregulation of downstream genes lead to the accumulation of prolycopene and confer an orange color to the inner head leaves in Chinese cabbage.
机译:带有橙色内叶的大白菜品种因其诱人的外观和高的类胡萝卜素含量而备受关注。以前,赋予该性状的隐性基因座Br-or被定位到甘蓝型油菜中的连锁群A09,而Bra031539被鉴定为候选基因。我们使用包含1,392个个体的回交种群进行精细定位;三个连接的标记将Br-或基因座界定为9.47 kb的区域,该区域仅包含一个预测的功能基因Bra031539(类胡萝卜素异构酶基因BrCRTISO)。我们鉴定了两个携带Br-or的细菌人工染色体(BAC)克隆,并确认BrCRTISO的这一等位基因通过测序赋予了突变表型。 Br-or中存在许多DNA序列变异,包括启动子中90 bp的DNA缺失和基因3'端的501 bp插入。 GUS染色显示BrCRTISO的空间表达与类胡萝卜素合成的位点完全吻合,并且启动子中90 bp的缺失略微下调了基因的表达。使用体外酶分析,我们表明突变的Br-或蛋白质不能将番茄红素转化为全反式番茄红素。除β-环胡萝卜素羟化酶(CHXB)以外,光对类胡萝卜素生物合成基因的表达具有积极作用,这与Br-or突变体中番茄红素和β-胡萝卜素总量的增加相吻合。我们还证明了BrCRTISO功能的丧失,上游基因的上调和下游基因的下调导致大白菜中聚番茄红素的积累并赋予其内部叶橙色。

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