首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >In vivo investigation of the volatile metabolome of antiphytopathogenic yeast strains active against Penicillium digitatum using comprehensive two-dimensional gas chromatography and multivariate data analysis
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In vivo investigation of the volatile metabolome of antiphytopathogenic yeast strains active against Penicillium digitatum using comprehensive two-dimensional gas chromatography and multivariate data analysis

机译:使用综合二维气相色谱法和多变量数据分析,体内研究抗脑致病酵母菌菌株活性抗肺疗法酵母菌菌株的挥发性代谢物

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Penicillium digitatum is the responsible for green mold decay on citrus fruits, which contributes to economic losses in agriculture industry during storage, transportation and in the market. Biocontrol agents may be a viable and low-cost alternative in the control of different plant pathogens: metabolites from some yeast strains can prevent infection, decreasing host tissue colonization and reducing pathogen survival and sporulation with varying degrees of efficiency. Eight S. cerevisae strains and one Candida stellimalicola strain all were evaluated in vitro as biological control agents against P. digitatum. After in vitro tests the headspace of yeast strains were extracted in vivo using an optimized HS-SPME + GC x GC MS method. The correlation between antiphytopathogenic activity with the volatile metabolite profiles was assessed using principal component analysis. Nine compounds were associated with the volatile metabolome of strains with higher antifungal action: ethyl propionate, 3-methyl-1-butanol, 2-methyl-1-butanol, ethyl butyrate, 3-methylbutyl acetate, 3-methylbutyl propionate, n-pentyl butyrate, phenylethyl alcohol and 2-phenethyl acetate. This study allowed for the first time a comprehensive overview of the effect of individual volatile metabolites from yeast strains on P. digitatum infection.
机译:青霉铝是对柑橘类水果的绿色模具腐烂的负责,这在储存,运输和市场储存期间有助于农业产业的经济损失。在不同植物病原体的控制中,生物控制剂可能是一种可行和低成本的替代方法:来自一些酵母菌株的代谢物可以预防感染,降低宿主组织定植和降低具有不同程度的效率的病原体存活和孢子。八颗荚膜菌株和一项念珠菌菌株均为针对P. Digitatum的生物对照剂的体外评估。体外测试后,使用优化的HS-SPME + GC X GC MS方法在体内萃取酵母菌株的顶部空间。利用主成分分析评估与挥发性代谢物谱之间的抗骨盆致病活性的相关性。九种化合物与具有较高抗真菌作用的菌株的挥发性代谢物相关:丙酸乙酯,3-甲基-1-丁醇,2-甲基-1-丁醇,丁酸乙酯,3-甲基丁酯,3-甲基丁酯,N-戊基丁酸盐,苯乙醇和2-乙酸乙酯。本研究首次允许全面概述各自挥发性代谢产物对酵母菌菌株对P.天线感染的影响。

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