Li Yonghua, Beisson Fred
UMR, CNRS-Université Victor Segalen Bordeaux, France.
Biochimie. 2009 Jun;91(6):685-91. doi: 10.1016/j.biochi.2009.03.016. Epub 2009 Apr 1.
Oxygenated fatty acids such as ricinoleic acid and vernolic acid can serve in the industry as synthons for the synthesis of a wide range of chemicals and polymers traditionally produced by chemical conversion of petroleum derivatives. Oxygenated fatty acids can also be useful to synthesize specialty chemicals such as cosmetics and aromas. There is thus a strong interest in producing these fatty acids in seed oils (triacylglycerols) of crop species. In the last 15 years or so, much effort has been devoted to isolate key genes encoding proteins involved in the synthesis of oxygenated fatty acids and to express them in the seeds of the model plant Arabidopsis thaliana or crop species. An often overlooked but rich source of enzymes catalyzing the synthesis of oxygenated fatty acids and their esterification to glycerol is the biosynthetic pathways of the plant lipid polyesters cutin and suberin. These protective polymers found in specific tissues of all higher plants are composed of a wide variety of oxygenated fatty acids, many of which have not been reported in seed oils (e.g. saturated omega-hydroxy fatty acids and alpha,omega-diacids). The purpose of this mini-review is to give an overview of the recent advances in the biosynthesis of cutin and suberin and discuss their potential utility in producing specific oxygenated fatty acids for specialty chemicals. Special emphasis is given to the role played by specific acyltransferases and P450 fatty acid oxidases. The use of plant surfaces as possible sinks for the accumulation of high value-added lipids is also highlighted.
诸如蓖麻油酸和 Vernolic 酸之类的氧化脂肪酸在工业上可作为合成子,用于合成一系列传统上通过石油衍生物化学转化生产的化学品和聚合物。氧化脂肪酸还可用于合成特种化学品,如化妆品和香料。因此,人们对在作物种子油(三酰甘油)中生产这些脂肪酸有着浓厚的兴趣。在过去大约 15 年里,人们投入了大量精力来分离编码参与氧化脂肪酸合成的蛋白质的关键基因,并在模式植物拟南芥或作物种子中表达这些基因。植物脂质聚酯角质和木栓质的生物合成途径是催化氧化脂肪酸合成及其与甘油酯化的酶的一个经常被忽视但丰富的来源。这些存在于所有高等植物特定组织中的保护性聚合物由多种氧化脂肪酸组成,其中许多在种子油中尚未见报道(例如饱和ω-羟基脂肪酸和α,ω-二酸)。本综述的目的是概述角质和木栓质生物合成的最新进展,并讨论它们在生产用于特种化学品的特定氧化脂肪酸方面的潜在用途。特别强调了特定酰基转移酶和 P450 脂肪酸氧化酶所起的作用。还强调了将植物表面用作高附加值脂质积累的可能库的用途。