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首页> 外文期刊>Tropical plant biology >Synthesis of Short-Chain-Length/Medium-Chain Length Polyhydroxyalkanoate (PHA) Copolymers in Peroxisomes of Transgenic Sugarcane Plants
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Synthesis of Short-Chain-Length/Medium-Chain Length Polyhydroxyalkanoate (PHA) Copolymers in Peroxisomes of Transgenic Sugarcane Plants

机译:转甘蔗植物过氧化物酶体中短链长度/中链长度的聚羟基链烷酸酯(PHA)共聚物的合成

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Metabolic engineering of crops is a potential route to economically viable production of polyhydroxyalkanoates (PHAs), biodegradable and renewable alternatives to conventional plastics. In particular, short-chain-length (SCL)/medi-um-chain-length (MCL) PHA copolymers have attracted commercial interest for their wide range of potential applications. To date, examples of SCL/MCL PHA copolymer production in plant peroxisomes have involved single trans-gene approaches in transgenic Arabidopsis. We attempted to produce SCL/MCL PHA copolymers using a multigene strategy in peroxisomes of the high biomass food and industrial crop, sugarcane (Saccharum hybrids). Our approach involved peroxisomal targeting of a 3-ketothiolase, acetoacetyl-CoA reductase, enoyl-CoA hydratase and PHA synthase, as well as plastid targeting of a acyl-ACP thioesterase and 3-ketoacyl-ACP synthase to increase peroxisomal beta -oxidation flux. Of 143 transgenic sugarcane lines generated by co-bombardment with the six transgenes, sixwere identified with PHA copolymers at up to 0.015% leaf dry mass, consisting mainly of saturated C_4-C_(16) 3-hydroxyalkanoic acids. One line with high acetoacetyl-CoA reductase and low 3-ketothiolase transcript levels had increased 3-hydroxybutyrate content, and acyl-ACP thioesterase and 3-ketoacyl-ACP synthase expression were associated with altered MCL monomer profiles. SCL/MCL PHA copolymer from the highest-yielding line showed a weight-average molecular weight of 111 KDa and polydispersity index of 1.2. Transmission electron microscopy of leaf sections from this line indicated the presence of PHA granules in peroxisomes. This work demonstrates SCL/MCL PHA copolymer biosynthesis in sugarcane peroxisomes and provides a basis for further developmentof mechanisms for controlling PHA composition in transgenic crop plants.
机译:作物的代谢工程是经济上可行的生产聚羟基链烷酸酯(PHA),可生物降解和可再生的常规塑料替代品的潜在途径。特别地,短链长度(SCL)/中链长度(MCL)PHA共聚物因其广泛的潜在应用而引起了商业兴趣。迄今为止,在植物过氧化物酶体中生产SCL / MCL PHA共聚物的例子涉及转基因拟南芥中的单转基因方法。我们试图在高生物质食品和工业作物甘蔗(蔗糖杂种)的过氧化物酶体中使用多基因策略生产SCL / MCL PHA共聚物。我们的方法涉及过氧化物酶体靶向3-酮硫醇酶,乙酰乙酰辅酶A还原酶,烯酰CoA水合酶和PHA合酶,以及质体靶向酰基-ACP硫酯酶和3-酮酰基-ACP合酶以增加过氧化物酶体β-氧化通量。在与六个转基因的共同轰击中产生的143个转基因甘蔗品系中,六个以PHA共聚物鉴定为叶干质量最高达0.015%,主要由饱和C_4-C_(16)3-羟基链烷酸组成。具有高乙酰乙酰辅酶A还原酶和低3-酮硫解酶转录水平的一系具有增加的3-羟基丁酸酯含量,并且酰基-ACP硫酯酶和3-酮酰基-ACP合酶表达与改变的MCL单体谱相关。来自最高产率线的SCL / MCL PHA共聚物显示出111 KDa的重均分子量和1.2的多分散指数。该线的叶切片的透射电子显微镜表明过氧化物酶体中存在PHA颗粒。这项工作证明了甘蔗过氧化物酶体中SCL / MCL PHA共聚物的生物合成,并为进一步开发控制转基因作物植物中PHA组成的机制提供了基础。

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