Naturally Occurring Anthocyanin, Structure, Functions and BiosyntheticPathway in Fruit Plants

Tariq Pervaiz, Jiu Songtao, F. Faghihi, M. S. Haider, Jinggui Fang
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引用次数: 72

Abstract

Anthocyanins are naturally occurring compounds, member of the flavonoid groups of photochemical, involved in defense against the damaging effects of UV irradiation in plants and protect from many oxidants. The anthocyanins, group of pigments are relatively small and diverse flavonoid family in nature, and responsible for the attractive colors, red and purple to blue in many plants. Presence of pigments in flowers and fruits seems to provide attraction for pollination and aiding seed distribution, it also provides antiviral and antimicrobial activities, however their occurrence in the vacuoles remains ambiguous. During the last decades, anthocyanin gene expression and many structural genes encoding enzymes has been extensively studied in fruits, flowers and leaves in many plants. In addition, the genetic regulating mechanism, their biosynthesis and other factors involved are well described. The biosynthesis pathway of anthocyanin is a complex with diverse branches responsible to produce variety of metabolites. In general Anthocyanins, production through the flavonoid path, are a class of vital phenolic compounds. Over six thousand diverse anthocyanins have been reported from various species. So far, the potential health benefits of anthocyanins have been reported in the contexts of their antioxidant properties. Anthocyanins are also extensively studied for their several positive effects on body. Based on these facts, the present review briefly summarizes recent advances, highlighting the importance of biosynthetic pathway of anthocyanins, thus will serve to encourage advance investigation in this field.
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植物天然花青素的结构、功能及生物合成途径
花青素是一种天然存在的化合物,是光化学类黄酮的成员,参与防御紫外线照射对植物的破坏作用,并保护植物免受许多氧化剂的侵害。花青素是自然界中数量较少、种类繁多的类黄酮类色素,是许多植物呈现红色、紫色到蓝色等诱人颜色的主要原因。花和果实中色素的存在似乎为授粉和帮助种子分布提供了吸引力,它还具有抗病毒和抗菌活性,但它们在液泡中的作用尚不清楚。在过去的几十年里,花青素基因的表达和许多编码酶的结构基因在许多植物的果实、花和叶中得到了广泛的研究。并对其遗传调控机制、生物合成等相关因素进行了阐述。花青素的生物合成途径是一个复杂的分支,负责产生各种代谢产物。一般来说,花青素通过类黄酮途径产生,是一类重要的酚类化合物。据报道,从不同的物种中有超过6000种不同的花青素。到目前为止,花青素的潜在健康益处已经在其抗氧化特性的背景下被报道。花青素也因其对身体的积极作用而被广泛研究。在此基础上,本文对近年来花青素生物合成途径的研究进展进行了简要的综述,强调了花青素生物合成途径的重要性,以期促进这一领域的进一步研究。
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