Harries Eleonora, Gandía Mónica, Carmona Lourdes, Marcos Jose F
Departamento de Ciencia de los Alimentos, Instituto de Agroquímica y Tecnología de Alimentos (IATA), CSIC, Avda, Agustín Escardino-7, Paterna, 46980, Valencia, Spain.
Mol Plant Pathol. 2015 Sep;16(7):748-61. doi: 10.1111/mpp.12232. Epub 2015 Feb 4.
The activity of protein O-mannosyltransferases (Pmts) affects the morphogenesis and virulence of fungal pathogens. Recently, PMT genes have been shown to determine the sensitivity of Saccharomyces cerevisiae to the antifungal peptide PAF26. This study reports the identification and characterization of the three Pdpmt genes in the citrus post-harvest pathogen Penicillium digitatum. The Pdpmt genes are expressed during fungal growth and fruit infection, with the highest induction for Pdpmt2. Pdpmt2 complemented the growth defect of the S. cerevisiae Δpmt2 strain. The Pdpmt2 gene mutation in P. digitatum caused pleiotropic effects, including a reduction in fungal growth and virulence, whereas its constitutive expression had no phenotypic effect. The Pdpmt2 null mutants also showed a distinctive colourless phenotype with a strong reduction in the number of conidia, which was associated with severe alterations in the development of conidiophores. Additional effects of the Pdpmt2 mutation were hyphal morphological alterations, increased sensitivity to cell wall-interfering compounds and a blockage of invasive growth. In contrast, the Pdpmt2 mutation increased tolerance to oxidative stress and to the antifungal activity of PAF26. These data confirm the role of protein O-glycosylation in the PAF26-mediated antifungal mechanism present in distantly related fungal species. Important to future crop protection strategies, this study demonstrates that a mutation rendering fungi more resistant to an antifungal peptide results in severe deleterious effects on fungal growth and virulence.
蛋白质O-甘露糖基转移酶(Pmts)的活性影响真菌病原体的形态发生和毒力。最近,已表明PMT基因决定酿酒酵母对抗真菌肽PAF26的敏感性。本研究报告了柑橘采后病原菌指状青霉中三个Pdpmt基因的鉴定和特征。Pdpmt基因在真菌生长和果实感染过程中表达,其中Pdpmt2的诱导程度最高。Pdpmt2弥补了酿酒酵母Δpmt2菌株的生长缺陷。指状青霉中Pdpmt2基因突变产生了多效性影响,包括真菌生长和毒力降低,而其组成型表达没有表型效应。Pdpmt2缺失突变体还表现出独特的无色表型,分生孢子数量大幅减少,这与分生孢子梗发育的严重改变有关。Pdpmt2突变的其他影响包括菌丝形态改变、对细胞壁干扰化合物的敏感性增加以及侵入性生长受阻。相反,Pdpmt2突变增加了对氧化应激和PAF26抗真菌活性的耐受性。这些数据证实了蛋白质O-糖基化在远缘真菌物种中存在的PAF26介导的抗真菌机制中的作用。对未来作物保护策略很重要的是,本研究表明,使真菌对一种抗真菌肽更具抗性的突变会对真菌生长和毒力产生严重的有害影响。