首页> 外文期刊>Plant Physiology and Biochemistry >Biosynthesis of flavan 3-ols by leucoanthocyanidin 4-reductases and anthocyanidin reductases in leaves of grape (Vitis vinifera L.), apple (Malus x domestica Borkh.) and other crops
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Biosynthesis of flavan 3-ols by leucoanthocyanidin 4-reductases and anthocyanidin reductases in leaves of grape (Vitis vinifera L.), apple (Malus x domestica Borkh.) and other crops

机译:葡萄(Vitis vinifera L.),苹果(Malus x domestica Borkh。)和其他农作物叶片中的花青素4-还原酶和花青素-还原酶对黄烷3-醇的生物合成

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摘要

Catechin and epicatechin biosyntheses were studied of grape (Vitis vinifera L.), apple (Malus x domestica Borkh.) and other crop leaves, since these monomers and the derived proanthocyanidins are important disease resistance factors. Grape and apple leucoanthocyanidin 4-reductase (LAR; EC 1.17.1.3) enzymes were characterized on basis of plant and recombinant enzymes. In case of grape, two LAR cDNAs were cloned by assembling available EST sequences. Grape and apple leaf anthocyanidin reductase (ANR; EC 1.3.1.77) cDNAs were also obtained and the respective plant and recombinant enzymes were characterized. Despite general low substrate specificity, within the respective flavonoid biosyntheses of grape and apple leaves, both enzyme types deliver differently hydroxylated catechins and epicatechins, due to substrate availability in vivo. Furthermore, for LAR enzymes conversion of 3-deoxyleucocyanidin was shown. Beside relevance for plant protection, this restricts the number of possible reaction mechanisms of LAR. ANR enzyme activity was demonstrated for a number of other crop plants and its correlation with (-)-epicatechin and obvious competition with UDP-glycosyl:flavonoid-3-O-glycosyltransferases was considered.
机译:研究了葡萄(Vitis vinifera L.),苹果(Malus x domestica Borkh。)和其他农作物叶片的儿茶素和表儿茶素生物合成,因为这些单体和衍生的原花色素是重要的抗病因子。根据植物和重组酶对葡萄和苹果中的花青素4-还原酶(LAR; EC 1.17.1.3)进行了表征。如果是葡萄,则通过组装可用的EST序列来克隆两个LAR cDNA。还获得了葡萄和苹果叶片的花青素还原酶(ANR; EC 1.3.1.77)cDNA,并鉴定了相应的植物和重组酶。尽管底物特异性普遍较低,但在葡萄和苹果叶片各自的类黄酮生物合成中,由于体内底物的可用性,两种酶类型均递送不同的羟基化儿茶素和表儿茶素。此外,对于LAR酶,显示了3-脱氧隐花青素的转化。除了与植物保护有关,这还限制了LAR可能的反应机理。证实了许多其他农作物的ANR酶活性,并考虑了与(-)-表儿茶素的相关性以及与UDP-糖基:类黄酮-3-O-糖基转移酶的明显竞争。

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