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Carotenoids biosynthesis and cleavage related genes from bacteria to plants

机译:胡萝卜素生物合成和从细菌到植物的裂解相关基因

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摘要

Carotenoids are essential for photosynthesis and photoprotection in photosynthetic organisms and beneficial for human health. Apocarotenoids derived from carotenoid degradation can serve critical functions including hormones, volatiles, and signals. They have been used commercially as food colorants, animal feed supplements, and nutraceuticals for cosmetic and pharmaceutical purposes. This review focuses on the molecular evolution of carotenogenic enzymes and carotenoid cleavage oxygenases (CCOs) from bacteria, fungi, cyanobacteria, algae, and plants. The diversity of carotenoids and apocarotenoids as well as their complicated biosynthetic pathway in different species can shed light on the history of early molecular evolution. Some carotenogenic genes (such as phytoene synthases) have high protein sequence similarity from bacteria to land plants, but some (such as phytoene desaturases, lycopene cyclases, carotenoid hydroxylases, and CCOs) have low similarity. The broad diversity of apocarotenoid volatile compounds can be attributed to large numbers of carotenoid precursors and the various cleavage sites catalyzed by CCOs enzymes. A variety of carotenogenic enzymes and CCOs indicate the functional diversification of carotenoids and apocrotenoids in different species. New carotenoids, new apocarotenoids, new carotenogenic enzymes, new CCOs, and new pathways still need to be explored.
机译:类胡萝卜素对于光合生物中的光合作用和光保护是必不可少的,对人类健康有益。衍生自类胡萝卜素降解的促甲丙酮可以用于包括激素,挥发物和信号的关键功能。它们已作为食品着色剂,动物饲料补充剂和用于化妆品和药物目的的营养保健品。本综述重点介绍了来自细菌,真菌,蓝藻,藻类和植物的雌激素酶和类胡萝卜素切割氧基酶(CCO)的分子演变。类胡萝卜素和雌藻藻的多样性以及不同物种中的复杂的生物合成途径可以在早期分子演化的历史上揭示。一些致癌基因(例如植物合成酶)与土地植物的细菌具有高蛋白质序列相似性,但是一些(例如植物去饱和酶,番茄红素环酶,类胡萝卜素羟基酶和CCOS)具有低相似性。挥发性化合物的宽多样性可归因于大量的类胡萝卜素前体和CCOS酶催化的各种切割位点。各种雌激素酶和CCO表示不同物种中类胡萝卜素和组织素的功能多样化。新的类胡萝卜素,新的雌藻素,新的雌核酶,新的CCO和新的途径仍然需要探索。

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