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L-Histidine Induces Resistance in Plants to the Bacterial Pathogen Ralstonia solanacearum Partially Through the Activation of Ethylene Signaling

机译:L-组氨酸通过激活乙烯信号传导诱导植物对细菌病原体 Ralstonia solanacearum 的耐药性

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摘要

Wilt disease in plants, which is caused by the soil-borne bacterial pathogen Ralstonia solanacearum, is one of the most devastating plant diseases. We previously detected bacterial wilt disease-inhibiting activity in an extract from yeast cells. In the present study, we purified this activity and identified one of the substances responsible for the activity as the amino acid histidine. The exogenous application of L-histidine, but not D-histidine, inhibited wilt disease in tomato and Arabidopsis plants without exhibiting any anti-bacterial activity. L-Histidine induced the expression of genes related to ethylene (ET) biosynthesis and signaling as well as the production of ET in tomato and Arabidopsis plants. L-Histidine-induced resistance to R. solanacearum was partially abolished in ein3-1, an ET-insensitive Arabidopsis mutant line. Resistance to the fungal pathogen Botrytis cinerea, which is known to require ET biosynthesis or signaling, was also induced by exogenously applied L-histidine. These results suggest that L-histidine induces resistance to R. solanacearum and B. cinerea partially through the activation of ET signaling in plants.
机译:植物枯萎病是由土壤传播的细菌病原体Ralstonia solanacearum引起的,是最具破坏性的植物病害之一。我们之前在酵母细胞提取物中检测到细菌枯萎病抑制活性。在本研究中,我们纯化了这种活性,并确定了负责该活性的一种物质作为氨基酸组氨酸。外源性施用L-组氨酸,而非D-组氨酸,抑制番茄和拟南芥植物的枯萎病,而不表现出任何抗菌活性。L-组氨酸诱导番茄和拟南芥植物中乙烯 (ET) 生物合成和信号传导相关基因的表达以及 ET 的产生。L-组氨酸诱导的对 R. solanacearum 的抗性在 ein3-1 中被部分消除,ein3-1 是一种对 ET 不敏感的拟南芥突变株系。对真菌病原体灰霉病的抗性,已知需要ET生物合成或信号传导,也是由外源性应用的L-组氨酸诱导的。这些结果表明,L-组氨酸部分通过激活植物中的ET信号转导诱导对R. solanacearum和B. cinerea的抗性。

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