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首页> 外文期刊>Plant Biotechnology Journal >Synthesis of oleyl oleate wax esters in Arabidopsis thaliana and Camelina sativa seed oil
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Synthesis of oleyl oleate wax esters in Arabidopsis thaliana and Camelina sativa seed oil

机译:拟南芥和山茶种子油中油酸油酸酯蜡酯的合成

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摘要

Seed oil composed of wax esters with long?¢????chain monoenoic acyl moieties represents a high?¢????value commodity for industry. Such plant?¢????derived sperm oil?¢????like liquid wax esters are biodegradable and can have excellent properties for lubrication. In addition, wax ester oil may represent a superior substrate for biodiesel production. In this study, we demonstrate that the low?¢????input oil seed crop Camelina sativa can serve as a biotechnological platform for environmentally benign wax ester production. Two biosynthetic steps catalysed by a fatty alcohol?¢????forming acyl?¢????CoA reductase (FAR) and a wax ester synthase (WS) are sufficient to achieve wax ester accumulation from acyl?¢????CoA substrates. To produce plant?¢????derived sperm oil?¢????like liquid wax esters, the WS from Mus musculus ( Mm WS) or Simmondsia chinensis ( Sc WS) were expressed in combination with the FAR from Mus musculus ( Mm FAR1) or Marinobacter aquaeolei ( Ma FAR) in seeds of Arabidopsis thaliana and Camelina sativa . The three analysed enzyme combinations Oleo3:mCherry: Mm FAR1?¢????c/Oleo3:EYFP: Mm WS, Oleo3:mCherry: Mm FAR1?¢????c/ Sc WS and Ma FAR/ Sc WS showed differences in the wax ester molecular species profiles and overall biosynthetic performance. By expressing Ma FAR/ Sc WS in Arabidopsis or Camelina up to 59% or 21% of the seed oil TAGs were replaced by wax esters, respectively. This combination also yielded wax ester molecular species with highest content of monounsaturated acyl moieties. Expression of the enzyme combinations in the Arabidopsis fae1 fad2 mutant background high in oleic acid resulted in wax ester accumulation enriched in oleyl oleate (18:1/18:1????>????60%), suggesting that similar values may be obtained with a Camelina high oleic acid line.
机译:由具有长链单烯丙基酰基部分的蜡酯组成的种子油代表了工业上的高价值商品。这种植物来源的精油,像液体蜡酯一样,是可生物降解的,并且具有优异的润滑性能。另外,蜡酯油可能代表了生物柴油生产的优良基质。在这项研究中,我们证明了低投入的油料作物苜蓿苜蓿(Camelina sativa)可以作为生产环境友好的蜡酯的生物技术平台。由脂肪醇催化的两个生物合成步骤是形成酰基,CoA还原酶(FAR)和蜡酯合酶(WS)足以从酰基中积累蜡酯。 CoA基材。为了生产植物来源的精油,像液态蜡酯一样,将小家鼠(Mm WS)或Simmondsia chinensis(Sc WS)的WS与小家鼠(Fus musculus)的FAR结合表达。 Mm FAR1)或拟南芥和Camelina sativa种子中的Amarebacter aquaeolei(Ma FAR)。分析的三种酶组合Oleo3:mCherry:Mm FAR1 ??????? c / Oleo3:EYFP:Mm WS,Oleo3:mCherry:Mm FAR1 ???? c / Sc WS和Ma FAR / Sc WS显示出差异蜡酯的分子种类分布和整体生物合成性能。通过在拟南芥或骆驼科植物中表达Ma FAR / Sc WS,分别高达59%或21%的种子油TAG被蜡酯替代。这种结合还产生具有最高单不饱和酰基部分含量的蜡酯分子种类。酶组合在油酸含量较高的拟南芥fae1 fad2突变体背景中的表达导致蜡酯积累富集了油酸油酸酯(18:1/18:1≥60%),表明该值相似可以用Camelina高油酸线获得。

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