首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Carot-4-en-910-Diol a Conidiation-Inducing Sesquiterpene Diol Produced by Trichoderma virens PS1-7 upon Exposure to Chemical Stress from Highly Active Iron Chelators
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Carot-4-en-910-Diol a Conidiation-Inducing Sesquiterpene Diol Produced by Trichoderma virens PS1-7 upon Exposure to Chemical Stress from Highly Active Iron Chelators

机译:Carot-4-en-910-Diol木霉木霉PS1-7暴露于高活性铁螯合剂的化学胁迫后会产生一种成瘾诱导的倍半萜烯二醇

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摘要

To screen biocontrol agents against Burkholderia plantarii, the causative agent of rice seedling blight, we employed catechol, an analog of the virulence factor tropolone, to obtain chemical stress-resistant microorganisms. The fungal isolate PS1-7, identified as a strain of Trichoderma virens, showed the highest resistance to catechol (20 mM) and exhibited efficacy as a biocontrol agent for rice seedling blight. During investigation of metabolic traits of T. virens PS1-7 exposed to catechol, we found a secondary metabolite that was released extracellularly and uniquely accumulated in the culture. The compound induced by chemical stress due to catechol was subsequently isolated and identified as a sesquiterpene diol, carot-4-en-9,10-diol, based on spectroscopic analyses. T. virens PS1-7 produced carot-4-en-9,10-diol as a metabolic response to tropolone at concentrations from 0.05 to 0.2 mM, and the response was enhanced in a dose-dependent manner, similar to its response to catechol at concentrations from 0.1 to 1 mM. Some iron chelators, such as pyrogallol, gallic acid, salicylic acid, and citric acid, at 0.5 mM also showed activation of T. virens PS1-7 production of carot-4-en-9,10-diol. This sesquiterpene diol, formed in response to chemical stress, promoted conidiation of T. virens PS1-7, suggesting that it is involved in an autoregulatory signaling system. In a bioassay of the metabolic and morphological responses of T. virens PS1-7, conidiation in hyphae grown on potato dextrose agar (PDA) plates was either promoted or induced by carot-4-en-9,10-diol. Carot-4-en-9,10-diol can thus be regarded as an autoregulatory signal in T. virens, and our findings demonstrate that intrinsic intracellular signaling regulates conidiation of T. virens.
机译:为了筛选针对稻瘟病病原体植物伯克霍尔德氏菌的生物防治剂,我们使用了儿茶酚(一种毒力因子托酚酮的类似物)来获得耐化学胁迫的微生物。真菌分离株PS1-7被鉴定为维氏木霉菌株,对儿茶酚的抗药性最高(20 mM),并且作为水稻白叶枯病的生物防治剂具有功效。在研究暴露于邻苯二酚的维尔纽斯猪笼草PS1-7的代谢特性时,我们发现了次级代谢产物在细胞外释放并在培养物中独特地积累。随后,根据光谱分析,将由于邻苯二酚引起的化学胁迫诱导的化合物分离并鉴定为倍半萜烯二醇,carot-4-en-9,10-diol。 T. virens PS1-7产生浓度为0.05至0.2 mM的carot-4-en-9,10-diol作为对托酚酮的代谢反应,并且该反应以剂量依赖性方式增强,类似于其对儿茶酚的反应浓度从0.1到1 mM。一些铁螯合剂(例如邻苯三酚,没食子酸,水杨酸和柠檬酸)的浓度为0.5 mM时,也显示了T. virens PS1-7生成carot-4-en-9,10-diol的活化。响应化学胁迫而形成的倍半萜二醇促进了维尔纽斯氏菌PS1-7的灭绝,表明它参与了自动调节信号系统。在生物分析中,T。virens PS1-7的代谢和形态反应中,在马铃薯葡萄糖琼脂(PDA)平板上生长的菌丝中的分生被carot-4-en-9,10-diol促进或诱导。因此,Carot-4-en-9,10-diol可以被认为是维尔纽斯菌中的自调节信号,我们的发现表明内在的细胞内信号传导调节了维尔纽斯菌的分生。

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