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Carotenoid gene expression explains the difference of carotenoid accumulation in carrot root tissues

机译:类胡萝卜素基因表达解释了胡萝卜根组织中类胡萝卜素积累的差异

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摘要

The carrot root is well divided into two different tissues separated by vascular cambium: the secondary phloem and xylem. The equilibrium between these two tissues represents an important issue for carrot quality, but the knowledge about the respective carotenoid accumulation is sparse. The aim of this work was (i) to investigate if variation in carotenoid biosynthesis gene expression could explain differences in carotenoid content in phloem and xylem tissues and (ii) to investigate if this regulation is differentially modulated in the respective tissues by water-restricted growing conditions. In this work, five carrot genotypes contrasting by their root color were studied in control and water-restricted conditions. Carotenoid content and the relative expression of 13 genes along the carotenoid biosynthesis pathway were measured in the respective tissues. Results showed that in orange genotypes and the purple one, carotenoid content was higher in phloem compared to xylem. For the red one, no differences were observed. Moreover, in control condition, variations in gene expression explained the different carotenoid accumulations in both tissues, while in water-restricted condition, no clear association between gene expression pattern and variations in carotenoid content could be detected except in orange-rooted genotypes. This work shows that the structural aspect of carrot root is more important for carotenoid accumulation in relation with gene expression levels than the consequences of expression changes upon water restriction.
机译:胡萝卜根被血管形成层分为两个不同的组织:次生韧皮部和木质部。这两个组织之间的平衡代表着胡萝卜质量的重要问题,但是关于各个类胡萝卜素积累的知识却很少。这项工作的目的是(i)研究类胡萝卜素生物合成基因表达的变化是否可以解释韧皮部和木质部组织中类胡萝卜素含量的差异,以及(ii)研究是否由于水分限制生长而在各个组织中差异调节了这种调节条件。在这项工作中,研究了五个胡萝卜基因型在根系和水分受限条件下的根色对比。在各个组织中测量类胡萝卜素含量和沿着类胡萝卜素生物合成途径的13个基因的相对表达。结果表明,在橙色和紫色的基因型中,韧皮部的类胡萝卜素含量高于木质部。对于红色,没有观察到差异。此外,在对照条件下,基因表达的变化解释了两种组织中不同类胡萝卜素的积累,而在缺水条件下,除橙根基因型外,未检测到基因表达模式与类胡萝卜素含量变化之间的明确关联。这项工作表明,胡萝卜根的结构方面对类胡萝卜素积累与基因表达水平的关系比对水分限制的表达变化的结果更为重要。

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