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Global transcriptome analysis and differentially expressed genes in grapevine after application of the yeast-derived defense inducer cerevisane

机译:葡萄树在施用酵母衍生的防御诱导酵母酿酒酵母后的全局转录组分析和差异表达基因

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BACKGROUND Cerevisane, made up of cell wall derivatives from the Saccharomyces cerevisiae strain LAS117, is proposed as a resistance inducer in plants. The mode of action of cerevisane was investigated through transcriptome analysis (RNA-Seq) carried out on leaves of potted vines cv. Italia grown in the greenhouse and sprayed at 1-week intervals with cerevisane. Analyses were performed at three time points after one and three sprays as well as on vines challenged with artificial inoculation with Plasmopara viticola, Erysiphe necator and Botrytis cinerea. RESULTS Cerevisane proved effective against downy mildew and caused an increase in expression levels of several genes related to defense responses to fungal pathogens and other stresses and down-regulation of genes involved in several processes related to plant growth and development. Up-regulated genes included genes encoding (i) enzymes involved in hormone metabolism (i.e. salicylic acid, jasmonate, ethylene) and related plant responses, (ii) defense compounds (i.e. pathogenesis-related proteins, phenylalanine ammonia-lyase, stilbene synthases, lipoxygenase, leucine-rich repeat receptor-like protein kinases, non-specific plant lipid transfer proteins, serine-threonine protein kinases involved in signal transduction, superoxide dismutase and glutathione S-transferase involved in response to oxidative stress), (iii) secondary metabolites (i.e. phenylpropanoids, terpenoids, lignin), and (iv) photosynthetic processes (light harvesting chlorophyll A/B-binding proteins and components of the photosystems). CONCLUSION Cerevisane can be a useful tool in protection schedules against downy mildew on grapevine aimed at reducing the usage of synthetic fungicides and preventing fungicide resistance. The results provide the first basic knowledge on the mode of action of yeast-derived elicitors effective against P. viticola on grapevine. (c) 2019 Society of Chemical Industry
机译:背景技术由来自酿酒酵母菌菌菌株LAS117的细胞壁衍生物组成的林乙胺被提出为植物的阻力诱导剂。通过在盆栽葡萄叶CV的叶片上进行的转录组分析(RNA-SEQ)来研究辛氰烷的作用方式。 Italia在温室中生长,并以1周的间隔喷洒,酿酒园。在一次和三个喷雾后的三个时间点以及用plasmopara viticola,erysiphe necator和botrytis cinerea挑战挑战的葡萄藤进行分析。结果酿酒叶证明有效地对抗柔软的霉菌,并导致与防御病原体和其他应力和涉及植物生长和发育有关的几种过程的基因的其他应力和下调基因的几种基因的表达水平增加。上调基因包括编码(I)参与激素代谢(即水杨酸,己酸酯,乙烯)和相关植物反应的基因(I)酶,(ii)防御化合物(即致病相关蛋白质,苯丙氨酸氨 - 裂解酶,苯乙烯合酶,脂氧合酶,富含亮氨酸的重复受体样蛋白激酶,非特异性植物脂质转移蛋白,参与响应氧化应激的信号转导,超氧化物歧化酶和谷胱甘肽S转移酶,(III)次生代谢物(即苯基丙二醇,三萜类化合物,木质素)和(iv)光合作用(光收缩叶绿素A / B结合蛋白和光系统的组分)。结论煤矿可以是防止葡萄霉素对蠕动霉菌的一种有用工具,旨在减少合成杀菌剂的用途并防止杀菌剂抗性。结果提供了酵母衍生的菌的作用方式的第一种基本知识,其有效针对葡萄葡萄酒对P. viticola的作用。 (c)2019年化学工业协会

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