首页> 外文期刊>Plant physiology >Red clover hct2, a hydroxycinnamoyl-coenzyme A: Malate hydroxycinnamoyl transferase, plays a crucial role in biosynthesis of phaselic acid and other hydroxycinnamoyl-malate esters in vivo
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Red clover hct2, a hydroxycinnamoyl-coenzyme A: Malate hydroxycinnamoyl transferase, plays a crucial role in biosynthesis of phaselic acid and other hydroxycinnamoyl-malate esters in vivo

机译:红三叶草hct2,一种羟基肉桂酸辅酶A:苹果酸羟基肉桂酸转移酶,在体内体内相酸和其他羟基肉桂酸苹果酸酯的生物合成中起着至关重要的作用

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摘要

In red clover (Trifolium pratense) leaves, phaselic acid (2-O-caffeoyl-L-malate) accumulates to several mmol kg-1 fresh weight and is a crucial component of a natural system that prevents protein breakdown during harvest and storage of this forage crop. Previously, we identified HCT2, a red clover gene encoding a hydroxycinnamoyl-Coenzyme A (CoA) hydroxycinnamoyl transferase capable of transferring p-coumaroyl and caffeoyl moieties from their CoA derivatives to malic acid to form the corresponding hydroxycinnamoyl-malate esters in vitro. Here, we carried out a detailed kinetic analysis of the enzyme and examined its in vivo function in red clover via reverse genetics. The kinetic analysis indicates that in vitro, despite similar K_m values for the tested hydroxycinnamoyl-CoA derivatives, HCT2 favors transfer to malate of p-coumaroyl and feruloyl moieties over caffeoyl moieties by greater than 5-fold. Reverse reaction (transfer of hydroxycinnamoyl moieties from malate to CoA) by HCT2 was observed with p-coumaroyl-malate but not phaselic acid. Analysis of red clover plants down-regulated for HCT2 expression via RNA interference showed a significant and substantial correlation between HCT2 mRNA levels and phaselic acid accumulation (P < 0.005). In several of the HCT2-silenced plants, phaselic acid and p-coumaroyl-malate levels were reduced to <5% that of wild-type controls. These reductions resulted in easily observable phenotypes including reduced polyphenol oxidase-mediated browning and a reduction in blue epidermal fluorescence under ultraviolet light. These results demonstrate a crucial role for HCT2 in phaselic acid accumulation in red clover and define a previously undescribed pathway for the biosynthesis of hydroxycinnamoyl-malate esters in plants. Copy; 2011 American Society of Plant Biologists.
机译:在红三叶草(Trifolium pratense)的叶子中,相酸(2-O-咖啡酰-L-苹果酸)累积至几mmol kg-1的鲜重,并且是天然系统的重要组成部分,可防止蛋白质在收获和储存过程中分解饲料作物。以前,我们鉴定了HCT2,这是一个红色三叶草基因,编码一个羟基肉桂酸辅酶A(CoA)羟基肉桂酸转移酶,能够将p-香豆酰基和咖啡酰基部分从其CoA衍生物转移至苹果酸,从而在体外形成相应的羟基肉桂酸苹果酸酯。在这里,我们对该酶进行了详细的动力学分析,并通过反向遗传学检查了其在红三叶草中的体内功能。动力学分析表明,尽管在体外,尽管所测试的羟基肉桂酰基-CoA衍生物的K_m值相似,但HCT2还是将对-香豆酰基和阿魏酰基部分转移至苹果酸而不是咖啡酰基部分的作用大于5倍。用对-香豆酸-苹果酸而不是相酸观察到HCT2的逆反应(羟基肉桂酸部分从苹果酸转移到CoA)。通过RNA干扰而下调HCT2表达的红三叶草植物的分析表明,HCT2 mRNA水平与相酸积累之间存在显着且显着的相关性(P <0.005)。在一些HCT2沉默的植物中,相酸和对香豆酰苹果酸的水平降低至野生型对照的<5%。这些减少导致易于观察的表型,包括减少的多酚氧化酶介导的褐变和在紫外线下蓝色表皮荧光的减少。这些结果证明了HCT2在红三叶草中相酸积累中的关键作用,并为植物中羟基肉桂酸苹果酸酯的生物合成定义了先前未描述的途径。复制; 2011美国植物生物学家学会。

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