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Benzothiadiazole, a plant defense inducer, negatively regulates sheath blight resistance in Brachypodium distachyon

机译:苯并噻二唑,一种植物防御诱导剂,对短枝曲霉的鞘枯病抗性产生负调控作用

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Plant defense inducers that mimic functions of the plant immune hormone salicylic acid (SA) often affect plant growth. Although benzothiadiazole (BTH), a synthetic analog of SA, has been widely used to protect crops from diseases by inducing plant defense responses, we recently demonstrated that SA, but not BTH, confers resistance against Rhizoctonia solani, the causal agent of sheath blight disease, in Brachypodium distachyon. Here, we demonstrated that BTH compromised the resistance of Bd3-1 and Gaz4, the two sheath blight-resistant accessions of B. distachyon, which activate SA-dependent signaling following challenge by R. solani. Moreover, upon analyzing our published RNA-seq data from B. distachyon treated with SA or BTH, we found that BTH specifically induces expression of genes related to chloroplast function and jasmonic acid (JA) signaling, suggesting that BTH attenuates R. solani resistance by perturbing growth-defense trade-offs and/or by inducing a JA response that may increase susceptibility to R. solani. Our findings demonstrated that BTH does not work as a simple mimic of SA in B. distachyon, and consequently may presumably cause unfavorable side effects through the transcriptional alteration, particularly with respect to R. solani resistance.
机译:模仿植物免疫激素水杨酸(SA)功能的植物防御诱导剂通常会影响植物的生长。尽管苯并噻二唑(BTH)是SA的合成类似物,已通过诱导植物防御反应而广泛用于保护农作物免受疾病侵害,但我们最近证明,SA(而不是BTH)赋予了对枯萎病致病因子solani的抵抗力。 ,在短枝夜蛾distachyon中。在这里,我们证明BTH破坏了B. distachyon的两个抗白叶枯病的Bd3-1和Gaz4的抗性,它们在受到R. solani攻击后激活了SA依赖性信号传导。此外,在分析我们已发表的SA或BTH处理的B. distachyon的RNA-seq数据后,我们发现BTH特异性地诱导了与叶绿体功能和茉莉酸(JA)信号传导相关的基因的表达,表明BTH通过干扰增长防御权衡和/或通过诱导JA反应,从而增加对R. solani的敏感性。我们的发现表明,BTH不能作为B. distachyon中SA的简单模拟物,因此可能通过转录改变,特别是对茄茄R. solani抗性,可能引起不利的副作用。

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