首页> 外文期刊>FEMS Yeast Research >Phenylethanol promotes adhesion and biofilm formation of the antagonistic yeast Kloeckera apiculata for the control of blue mold on citrus.
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Phenylethanol promotes adhesion and biofilm formation of the antagonistic yeast Kloeckera apiculata for the control of blue mold on citrus.

机译:苯乙醇可促进拮抗性酵母Kloeckera apiculata的粘附和生物膜形成,从而控制柑橘上的蓝霉病。

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The yeast Kloeckera apiculata strain 34-9 is an antagonist with biological control activity against postharvest diseases of citrus fruit. In a previous study it was demonstrated that K. apiculata produced the aromatic alcohol phenylethanol. In the present study, we found that K. apiculata was able to form biofilm on citrus fruit and embed in an extracellular matrix, which created a mechanical barrier interposed between the wound surface and pathogen. As a quorum-sensing molecule, phenylethanol can promote the formation of filaments by K. apiculata in potato dextrose agar medium, whereas on the citrus fruit, the antagonist remains as yeast after being treated with the same concentration of phenylethanol. It only induced K. apiculata to adhere and form biofilm. Following genome-wide computational and experimental identification of the possible genes associated with K. apiculata adhesion, we identified nine genes possibly involved in triggering yeast adhesion. Six of these genes were significantly induced after phenylethanol stress treatment. This study provides a new model system of the biology of the antagonist-pathogen interactions that occur in the antagonistic yeast K. apiculata for the control of blue mold on citrus caused by Penicillium italicum
机译:酵母Kloeckera apiculata菌株34-9是一种对柑橘类水果采后病具有生物防治活性的拮抗剂。在先前的研究中,证明了K. apiculata产生了芳香醇苯乙醇。在当前的研究中,我们发现尖吻鲈能够在柑橘类水果上形成生物膜并嵌入到细胞外基质中,从而在伤口表面和病原体之间形成机械屏障。苯乙醇作为一种群体感应分子,可促进马铃薯葡萄糖琼脂培养基中的尖酸克鲁维酵母(K. apiculata)形成细丝,而在柑桔类水果上,拮抗剂经相同浓度的苯乙醇处理后仍可作为酵母。它仅诱导尖角K.粘附并形成生物膜。在全基因组的计算和实验鉴定与阿米库拉霉菌粘附相关的可能基因之后,我们鉴定了九种可能触发酵母粘附的基因。这些基因中的六个在苯乙醇胁迫处理后被显着诱导。这项研究提供了一种新的生物学模型系统,该模型研究了拮抗性酵母K. apiculata中发生的拮抗物-病原体相互作用的生物学过程,以控制由意大利青霉引起的柑桔上的蓝色霉菌。

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