首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of a Gene Product Induced by Hard-Surface Contact of Colletotrichum gloeosporioides Conidia as a Ubiquitin-Conjugating Enzyme by Yeast Complementation
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Identification of a Gene Product Induced by Hard-Surface Contact of Colletotrichum gloeosporioides Conidia as a Ubiquitin-Conjugating Enzyme by Yeast Complementation

机译:通过酵母互补鉴定炭疽菌分生孢子硬表面接触作为泛素结合酶诱导的基因产物。

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摘要

The germinating conidia of many phytopathogenic fungi on hosts must differentiate into an infection structure called the appressorium in order to penetrate their hosts. Chemical signals, such as the host’s surface wax or fruit ripening hormone, ethylene, trigger germination and appressorium formation of the avocado pathogen Colletotrichum gloeosporioides only after the conidia are in contact with a hard surface. What role this contact plays is unknown. Here, we describe isolation of genes expressed during the early stage of hard-surface treatment by a differential-display method and report characterization of one of these cloned genes, chip1 (Colletotrichum hard-surface induced protein 1 gene), which encodes a ubiquitin-conjugating enzyme. RNA blots clearly showed that it is induced by hard-surface contact and that ethylene treatment enhanced this induction. The predicted open reading frame (ubc1Cg) would encode a 16.2-kDa ubiquitin-conjugating enzyme, which shows 82% identity to the Saccharomyces cerevisiae UBC4-UBC5 E2 enzyme, comprising a major part of total ubiquitin-conjugating activity in stressed yeast cells. UBC1Cg can complement the proteolysis deficiency of the S. cerevisiae ubc4 ubc5 mutant, indicating that ubiquitin-dependent protein degradation is involved in conidial germination and appressorial differentiation.
机译:寄主上许多植物病原真菌的萌发分生孢子必须分化成称为app的感染结构,才能穿透其寄主。仅在分生孢子与硬表面接触后,诸如宿主表面的蜡或果实成熟激素,乙烯等化学信号才会触发鳄梨病原体炭疽菌的发芽和ress生。此联系人扮演的角色尚不清楚。在这里,我们通过差异显示方法描述了在硬表面处理的早期阶段表达的基因的分离,并报告了这些克隆基因之一的特征码,即chip1(Colletotrichum硬表面诱导蛋白1基因),该基因编码泛素-结合酶。 RNA印迹清楚地表明,它是由硬表面接触诱导的,乙烯处理增强了这种诱导作用。预测的开放阅读框(ubc1Cg)将编码16.2kDa的泛素结合酶,与酿酒酵母UBC4-UBC5 E2酶显示82%的同一性,占应激酵母细胞中总泛素结合活性的主要部分。 UBC1Cg可以弥补酿酒酵母ubc4 ubc5突变体的蛋白水解缺陷,表明泛素依赖性蛋白降解与分生孢子萌发和肠壁分化有关。

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