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首页> 外文期刊>The Plant Cell >The Arabidopsis Glucosyltransferase UGT76B1 Conjugates Isoleucic Acid and Modulates Plant Defense and Senescence
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The Arabidopsis Glucosyltransferase UGT76B1 Conjugates Isoleucic Acid and Modulates Plant Defense and Senescence

机译:拟南芥葡萄糖基转移酶UGT76B1结合异亮氨酸并调节植物防御和衰老。

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摘要

Plants coordinate and tightly regulate pathogen defense by the mostly antagonistic salicylate (SA)- and jasmonate (JA)-mediated signaling pathways. Here, we show that the previously uncharacterized glucosyltransferase UGT76B1 is a novel player in this SA-JA signaling crosstalk. UGT76B1 was selected as the top stress-induced isoform among all 122 members of the Arabidopsis thaliana UGT family. Loss of UGT76B1 function leads to enhanced resistance to the biotrophic pathogen Pseudomonas syringae and accelerated senescence but increased susceptibility toward necrotrophic Alternaria brassicicola. This is accompanied by constitutively elevated SA levels and SA-related marker gene expression, whereas JA-dependent markers are repressed. Conversely, UGT76B1 overexpression has the opposite effect. Thus, UGT76B1 attenuates SA-dependent plant defense in the absence of infection, promotes the JA response, and delays senescence. The ugt76b1 phenotypes were SA dependent, whereas UGT76B1 overexpression indicated that this gene possibly also has a direct effect on the JA pathway. Nontargeted metabolomic analysis of UGT76B1 knockout and overexpression lines using ultra-high-resolution mass spectrometry and activity assays with the recombinant enzyme led to the ab initio identification of isoleucic acid (2-hydroxy-3-methyl-pentanoic acid) as a substrate of UGT76B1. Exogenously applied isoleucic acid increased resistance against P. syringae infection. These findings indicate a novel link between amino acid-related molecules and plant defense that is mediated by small-molecule glucosylation.
机译:植物通过水杨酸(SA)和茉莉酸(JA)拮抗的信号传导途径来协调和严格调节病原体的防御。在这里,我们显示了以前未表征的葡糖基转移酶UGT76B1在此SA-JA信号串扰中是一个新颖的参与者。在拟南芥UGT家族的所有122个成员中,UGT76B1被选为最强胁迫诱导的同工型。 UGT76B1功能的丧失导致对生物营养性病原体丁香假单胞菌的抗性增强,并加速衰老,但对坏死性铜斑病链球菌的敏感性增加。这伴随着组成性升高的SA水平和SA相关标志物基因表达,而JA依赖性标志物被阻遏。相反,UGT76B1过表达具有相反的作用。因此,在没有感染的情况下,UGT76B1减弱了SA依赖性植物的防御能力,促进了JA反应,并延迟了衰老。 ugt76b1表型是SA依赖性的,而UGT76B1过表达表明该基因可能也对JA途径有直接影响。使用超高分辨率质谱对UGT76B1敲除和过表达系进行非目标代谢组学分析以及重组酶的活性测定,从头开始鉴定异亮氨酸(2-羟基-3-甲基戊酸)作为UGT76B1的底物。外用异亮氨酸增加了对丁香假单胞菌感染的抵抗力。这些发现表明氨基酸相关分子与植物防御之间的新型联系,这是由小分子糖基化介导的。

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