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Downregulation of a CYP74 Rubber Particle Protein Increases Natural Rubber Production in Parthenium argentatum

机译:CYP74橡胶颗粒蛋白的下调增加了阳律钯的天然橡胶产量

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摘要

We report functional genomics studies of a CYP74 rubber particle protein from Parthenium argentatum, commonly called guayule. Previously identified as an allene oxide synthase (AOS), this CYP74 constitutes the most abundant protein found in guayule rubber particles. Transgenic guayule lines with AOS gene expression down-regulated by RNAi (AOSi) exhibited strong phenotypes that included agricultural traits conducive to enhancing rubber yield. AOSi lines had higher leaf and stem biomass, thicker stembark tissues, increased stem branching and improved net photosynthetic rate. Importantly, the rubber content was significantly increased in AOSi lines compared to the wild-type (WT), vector control and AOS overexpressing (AOSoe) lines, when grown in controlled environments both in tissue-culture media and in greenhouse/growth chambers. Rubber particles from AOSi plants consistently had less AOS particle-associated protein, and lower activity (for conversion of 13-HPOT to allene oxide). Yet plants with downregulated AOS showed higher rubber transferase enzyme activity. The increase in biomass in AOSi lines was associated with not only increases in the rate of photosynthesis and non-photochemical quenching (NPQ), in the cold, but also in the content of the phytohormone SA, along with a decrease in JA, GAs, and ABA. The increase in biosynthetic activity and rubber content could further result from the negative regulation of AOS expression by high levels of salicylic acid in AOSi lines and when introduced exogenously. It is apparent that AOS in guayule plays a pivotal role in rubber production and plant growth.
机译:我们报告了来自寄生碱的CYP74橡胶颗粒蛋白的功能基因组学研究,通常称为瓜素素。以前鉴定为联烯氧合合酶(AOS),该CYP74构成胍橡胶颗粒中最丰富的蛋白质。 RNAi(Aosi)下调的转基因瓜素线具有下调的AOS基因表达,表现出强大的表型,包括有利于提高橡胶产量的农业性状。 Aosi系具有更高的叶子和茎生物质,厚度茎组织,茎枝增加,净光合速率提高。重要的是,与野生型(WT),载体对照和AOS过表达(AOSOE)线相比,橡胶含量在组织培养基和温室/生长室中的受控环境中生长时,AOSi线在野生型(WT),载体对照和AOS线中显着增加。来自Aosi植物的橡胶颗粒始终如一的AOS颗粒相关蛋白,较低的活性(用于将13-HPOT转化为联烯氧化物)。然而,具有下调AOS的植物显示出更高的橡胶转移酶活性。 AOSi系中的生物量增加与光合作用和非光化学猝灭(NPQ)的速率增加,而且在植物激素SA的含量下,以及JA,天然气的降低,和aba。生物合成活性和橡胶含量的增加可以通过AOSi系中的高水平水杨酸的AOS表达的负调节和外源引入时产生。很明显,瓜纳的AOS在橡胶生产和植物生长中起着枢轴作用。

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