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A novel carotenoid cleavage activity involved in the biosynthesis of Citrus fruit-specific apocarotenoid pigments

机译:一种新的类胡萝卜素裂解活性,涉及柑橘类水果特有的类胡萝卜素色素的生物合成

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摘要

Citrus is the first tree crop in terms of fruit production. The colour of Citrus fruit is one of the main quality attributes, caused by the accumulation of carotenoids and their derivative C30 apocarotenoids, mainly ?-citraurin (3-hydroxy-?-apo-8?-carotenal), which provide an attractive orange-reddish tint to the peel of oranges and mandarins. Though carotenoid biosynthesis and its regulation have been extensively studied in Citrus fruits, little is known about the formation of C30 apocarotenoids. The aim of this study was to the identify carotenoid cleavage enzyme(s) [CCD(s)] involved in the peel-specific C30 apocarotenoids. In silico data mining revealed a new family of five CCD4-type genes in Citrus. One gene of this family, CCD4b1, was expressed in reproductive and vegetative tissues of different Citrus species in a pattern correlating with the accumulation of C30 apocarotenoids. Moreover, developmental processes and treatments which alter Citrus fruit peel pigmentation led to changes of ?-citraurin content and CCD4b1 transcript levels. These results point to the involvement of CCD4b1 in ?-citraurin formation and indicate that the accumulation of this compound is determined by the availability of the presumed precursors zeaxanthin and ?-cryptoxanthin. Functional analysis of CCD4b1 by in vitro assays unequivocally demonstrated the asymmetric cleavage activity at the 7?,8? double bond in zeaxanthin and ?-cryptoxanthin, confrming its role in C30 apocarotenoid biosynthesis. Thus, a novel plant carotenoid cleavage activity targeting the 7?,8? double bond of cyclic C40 carotenoids has been identified. These results suggest that the presented enzyme is responsible for the biosynthesis of C30 apocarotenoids in Citrus which are key pigments in fruit coloration. The Author 2013.
机译:就水果产量而言,柑橘是第一种树木。柑橘类水果的颜色是主要的品质属性之一,这是由于类胡萝卜素及其衍生的C30类非类胡萝卜素(主要是α-柠檬黄素(3-羟基-α-apo-8α-胡萝卜素))的积累而引起的,从而提供了诱人的橙色-橘子和橘子的果皮略带红色。尽管在柑橘类水果中对类胡萝卜素的生物合成及其调控进行了广泛的研究,但对C30类胡萝卜素的形成知之甚少。这项研究的目的是确定与果皮特异性C30的类胡萝卜素有关的类胡萝卜素裂解酶[CCD]。在计算机技术中,数据挖掘揭示了柑橘中五个CCD4型基因的新家族。该家族的一个基因CCD4b1以与C30类胡萝卜素积累相关的模式在不同柑橘类物种的生殖和营养组织中表达。此外,改变柑橘类水果皮色素沉着的发育过程和处理方法导致β-柠檬醛含量和CCD4b1转录水平的变化。这些结果表明了CCD4b1参与β-柠檬黄素的形成,并表明该化合物的积累是由推测的玉米黄质和β-隐黄质的前体的可用性决定的。通过体外测定对CCD4b1的功能分析清楚地表明了在7′,8′的不对称裂解活性。玉米黄质和β-隐黄质中的双键,证实了其在C30类胡萝卜素生物合成中的作用。因此,靶向7′,8′的新型植物类胡萝卜素裂解活性。已经鉴定出环状C40类胡萝卜素的双键。这些结果表明,所提出的酶负责柑橘中C30类胡萝卜素的生物合成,柑橘中的C30类胡萝卜素是水果着色中的关键色素。作者2013。

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