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Carotenoid accumulation in orange-pigmented Capsicum annuum fruit, regulated at multiple levels

机译:橙色色素辣椒果实中的类胡萝卜素积累,在多个水平上受到调节

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The pericarp of Capsicum fruit is a rich dietary source of carotenoids. Accumulation of these compounds may be controlled, in part, by gene transcription of biosynthetic enzymes. The carotenoid composition in a number of orange-coloured C. annuum cultivars was determined using HPLC and compared with transcript abundances for four carotenogenic enzymes, Psy, LcyB, CrtZ-2, and Ccs determined by qRT-PCR. There were unique carotenoid profiles as well as distinct patterns of transcription of carotenogenic enzymes within the seven orange-coloured cultivars. In one cultivar, ‘Fogo’, carrying the mutant ccs-3 allele, transcripts were detected for this gene, but no CCS protein accumulated. The premature stop termination in ccs-3 prevented expression of the biosynthetic activity to synthesize the capsanthin and capsorubin forms of carotenoids. In two other orange-coloured cultivars, ‘Orange Grande’ and ‘Oriole’, both with wild-type versions of all four carotenogenic enzymes, no transcripts for Ccs were detected and no red pigments accumulated. Finally, in a third case, the orange-coloured cultivar, Canary, transcripts for all four of the wild-type carotenogenic enzymes were readily detected yet no CCS protein appeared to accumulate and no red carotenoids were synthesized. In the past, mutations in Psy and Ccs have been identified as the loci controlling colour in the fruit. Now there is evidence that a non-structural gene may control colour development in Capsicum.
机译:辣椒果实的果皮是类胡萝卜素的丰富饮食来源。这些化合物的积累可以部分地通过生物合成酶的基因转录来控制。使用HPLC测定了许多橙色桔梗栽培种中的类胡萝卜素成分,并与qRT-PCR确定的四种类胡萝卜素酶Psy,LcyB,CrtZ-2和Ccs的转录本丰度进行了比较。在七个橙色品种中,有独特的类胡萝卜素谱以及类胡萝卜素酶的独特转录模式。在一个携带突变型ccs-3等位基因的'Fogo'品种中,检测到该基因的转录本,但未积累CCS蛋白。 ccs-3中的过早终止终止阻止了生物合成活性的表达,以合成辣椒素和辣椒素形式的类胡萝卜素。在其他两个橙色品种“ Orange Grande”和“ Oriole”中,它们都具有所有四种类胡萝卜素酶的野生型,均未检测到Ccs的转录本,也没有红色色素的积累。最后,在第三种情况下,很容易检测到所有四种野生型类胡萝卜素酶的橙色品种Canary的转录本,但似乎没有CCS蛋白积累,也没有合成红色类胡萝卜素。过去,Psy和Ccs中的突变已被确定为控制果实颜色的基因座。现在有证据表明,非结构基因可以控制辣椒的颜色发育。

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