首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Concomitant Induction of Systemic Resistance to Pseudomonas syringae pv. lachrymans in Cucumber by Trichoderma asperellum (T-203) and Accumulation of Phytoalexins
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Concomitant Induction of Systemic Resistance to Pseudomonas syringae pv. lachrymans in Cucumber by Trichoderma asperellum (T-203) and Accumulation of Phytoalexins

机译:全身诱导对丁香假单胞菌PV的抗性。曲霉木霉菌(T-203)在黄瓜中的催泪弹和植物抗毒素的积累

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摘要

Most studies on the reduction of disease incidence in soil treated with Trichoderma asperellum have focused on microbial interactions rather than on plant responses. This study presents conclusive evidence for the induction of a systemic response against angular leaf spot of cucumber (Pseudomonas syringae pv. lachrymans) following application of T. asperellum to the root system. To ascertain that T. asperellum was the only microorganism present in the root milieu, plants were grown in an aseptic hydroponic growth system. Disease symptoms were reduced by as much as 80%, corresponding to a reduction of 2 orders of magnitude in bacterial cell densities in leaves of plants pretreated with T. asperellum. As revealed by electron microscopy, bacterial cell proliferation in these plants was halted. The protection afforded by the biocontrol agent was associated with the accumulation of mRNA of two defense genes: the phenylpropanoid pathway gene encoding phenylalanine ammonia lyase (PAL) and the lipoxygenase pathway gene encoding hydroxyperoxide lyase (HPL). This was further supported by the accumulation of secondary metabolites of a phenolic nature that showed an increase of up to sixfold in inhibition capacity of bacterial growth in vitro. The bulk of the antimicrobial activity was found in the acid-hydrolyzed extract containing the phenolics in their aglycone form. High-performance liquid chromatography analysis of phenolic compounds showed a marked change in their profile in the challenged, preelicited plants relative to that in challenged controls. The results suggest that similar to beneficial rhizobacteria, T. asperellum may activate separate metabolic pathways in cucumber that are involved in plant signaling and biosynthesis, eventually leading to the systemic accumulation of phytoalexins.
机译:关于减少用曲霉木霉处理过的土壤中疾病发生率降低的大多数研究都集中在微生物的相互作用上,而不是植物的反应上。这项研究提供了确凿的证据,证明在将曲霉菌应用于根系后,诱导对黄瓜角叶斑病的系统性反应(Pseudomonas syringae pv。lachrymans)。为了确定曲霉菌是根环境中唯一的微生物,将植物在无菌水培生长系统中生长。病害症状减少了多达80%,相当于用曲霉菌预处理的植物叶片中细菌细胞密度降低了2个数量级。如电子显微镜所揭示的,这些植物中的细菌细胞增殖被停止。生物防治剂提供的保护作用与两个防御基因的mRNA积累有关:两个是编码苯丙氨酸氨裂合酶(PAL)的苯丙烷途径基因和一个编码羟过氧化物裂合酶(HPL)的脂氧合酶途径基因。酚类次生代谢产物的积累进一步支持了这一点,该产物在体外对细菌生长的抑制能力上提高了多达六倍。在含有糖苷配基形式的酚的酸水解提取物中发现了大部分的抗菌活性。酚类化合物的高效液相色谱分析显示,与受攻击的对照相比,受攻击,预先引诱的植物中酚类化合物的谱具有显着变化。结果表明,与有益的根瘤菌相似,曲霉T. asperellum可能激活黄瓜中参与植物信号传导和生物合成的单独代谢途径,最终导致植物抗毒素的系统性积累。

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