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首页> 外文期刊>Planta: An International Journal of Plant Biology >Accumulation of hydroxycinnamic acid amides induced by pathogen infection and identification of agmatine coumaroyltransferase in Arabidopsis thaliana
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Accumulation of hydroxycinnamic acid amides induced by pathogen infection and identification of agmatine coumaroyltransferase in Arabidopsis thaliana

机译:病原菌感染诱导的羟基肉桂酰胺的积累和拟南芥中胍丁胺香豆酰转移酶的鉴定

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摘要

Hydroxycinnamic acid amides (HCAAs) are secondary metabolites involved in the defense of plants against pathogens. Here, we report the first identification of HCAAs, p-coumaroylagmatine, feruloylagmatine, p-coumaroylputrescine and feruloylputrescine, in Arabidopsis thaliana rosette leaves infected with Alternaria brassicicola and the assignment of At5g61160 as the agmatine coumaroyltransferase (AtACT) that catalyzes the last reaction in the biosynthesis of the HCAAs. Feeding experiments with putative labeled precursors revealed that the four HCAAs were synthesized from hydroxycinnamic acids and agmatine or putrescine. AtACT gene function was identified from an analysis of a mutant that did not accumulate HCAAs. In wild-type Arabidopsis, AtACT transcripts markedly increased in response to A. brassicicola infection. Enzymatic activity that catalyzes the synthesis of the HCAAs was confirmed in vitro by using a recombinant AtACT expressed in Escherichia coli. The Atact mutant was susceptible to infection by A. brassicicola, indicating that HCAAs are responsible for defense against pathogens in A. thaliana.
机译:羟基肉桂酰胺(HCAAs)是次生代谢产物,参与植物对病原体的防御。在这里,我们报道了在感染了Alternariaaria braciicicola的拟南芥玫瑰花叶中首次鉴定出HCAAs,对-香豆素,阿魏酸,对香豆素和阿魏酸,并将At5g61160指定为最后催化该素的香豆素转移酶(AtACT) HCAA的生物合成。用推定的标记前体进料的实验表明,四种HCAA是由羟基肉桂酸和胍丁胺或腐胺合成的。通过对不积累HCAA的突变体的分析鉴定了AtACT基因功能。在野生型拟南芥中,AtACT转录物显着增加了对油菜曲霉感染的反应。通过使用在大肠杆菌中表达的重组AtACT在体外证实了催化HCAA合成的酶活性。 Atact突变体易受黄铜假单胞菌感染,表明HCAA负责防御拟南芥中的病原体。

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