首页> 外文期刊>Frontiers in Plant Science >Producing Cyclopropane Fatty Acid in Plant Leafy Biomass via Expression of Bacterial and Plant Cyclopropane Fatty Acid Synthases
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Producing Cyclopropane Fatty Acid in Plant Leafy Biomass via Expression of Bacterial and Plant Cyclopropane Fatty Acid Synthases

机译:在植物叶状物生物质中生产环丙烷脂肪酸细菌和植物环丙烷脂肪酸合成酶的表达

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Saturated mid-chain branched fatty acids (SMCBFAs) are widely used in the petrochemical industry for their high oxidative stability and low melting temperature. Dihydrosterculic acid (DHSA) is a cyclopropane fatty acid (CPA) that can be converted to SMCBFA via hydrogenation, and therefore oils rich in DHSA are a potential feedstock for SMCBFA. Recent attempts to produce DHSA in seed oil by recombinant expression of cyclopropane fatty acid synthases (CPFASes) resulted in decreased oil content and poor germination or low DHSA accumulation. Here we explored the potential for plant vegetative tissue to produce DHSA by transiently expressing CPFAS enzymes in leaf. When CPFASes from plant and bacterial origin were transiently expressed in Nicotiana benthamiana leaf, it accumulated up to 1 and 3.7% DHSA in total fatty acid methyl ester (FAME), respectively, which increased up to 4.8 and 11.8%, respectively, when the N. benthamiana endogenous oleoyl desaturase was silenced using RNA interference (RNAi). Bacterial CPFAS expression produced a novel fatty acid with a cyclopropane ring and two carbon-carbon double bonds, which was not seen with plant CPFAS expression. We also observed a small but significant additive effect on DHSA accumulation when both plant and bacterial CPFASes were co-expressed, possibly due to activity upon different oleoyl substrates within the plant cell. Lipidomics analyses found that CPFAS expression increased triacylglycerol (TAG) accumulation relative to controls and that DHSA was distributed across a range of lipid species, including diacylglycerol and galactolipids. DHSA and the novel CPA were present in phosphatidylethanolamine when bacterial CPFAS was expressed in leaf. Finally, when plant diacylglycerol acyltransferase was coexpressed with the CPFASes DHSA accumulated up to 15% in TAG. This study shows that leaves can readily produce and accumulate DHSA in leaf oil. Our findings are discussed in line with current knowledge in leaf oil production for a possible route to DHSA production in vegetative tissue.
机译:饱和的中链支链脂肪酸(SMCBFA)广泛用于石化工业中,用于其高氧化稳定性和低熔点。 Dihydrostculic酸(DHSA)是环丙烷脂肪酸(CPA),其可以通过氢化转化为SMCBFA,因此富含DHSA的油是SMCBFA的潜在原料。最近通过重组表达通过环丙烷脂肪酸合成酶(CPFases)的重组表达产生DHSA,导致油含量降低,萌发差或低DHSA积累。在这里,我们探讨了植物营养组织的潜力,通过瞬时表达叶中的CPFAS酶产生DHSA。当来自植物和细菌来源的CPFases瞬时表达尼古拉·宾果叶,其分别在总脂肪酸甲酯(名称)中累积了1和3.7%的DHSA,分别增加了4.8%和11.8%,当n时。使用RNA干扰(RNAi)静音Benthamiana内源性Oleoyl酶。细菌CPFAS表达产生了一种具有环丙烷环的新型脂肪酸和两个碳 - 碳双键,没有用植物CPFAS表达出现。当植物和细菌CpFase都是共同表达时,我们还观察到对DHSA积累的小而显着的添加剂效果,可能是由于植物细胞内不同的油酰基衬底的活性。脂多元族菌分析发现,CPFAS表达增加了相对于对照的三酰基甘油(标签)积累,并且DHSA分布在一系列脂质物种上,包括二酰基甘油和半乳糖脂。当叶片中表达细菌CPFAS时,磷脂酰乙醇胺存在DHSA和新型CPA。最后,当植物二酰基甘油酰基转移酶与CPFases DHSA共同施加时,累积高达15%的标签。本研究表明,叶子可以容易地生产和积累叶油中的DHSA。我们的研究结果符合目前叶油生产中的目前知识,以便在营养组织中进行DHSA生产的可能途径。

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