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首页> 外文期刊>Molecular Plant-Microbe Interactions >The Global Regulatory Protein VelA Is Required for Symbiosis Between the Endophytic Fungus Epichloe festucae and Lolium perenne
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The Global Regulatory Protein VelA Is Required for Symbiosis Between the Endophytic Fungus Epichloe festucae and Lolium perenne

机译:全球调节蛋白质Vela是内生真菌癫痫素生长和Lolium perenne之间的共生

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摘要

Epichloe species fungi form bioprotective endophytic symbioses with many cool-season grasses, including agriculturally important forage grasses. Despite its importance, relatively little is known about the molecular details of the interaction and the regulatory genes involved. The conserved velvet-domain protein VelA (or VeA) is a global regulator of a number of cellular and developmental functions in fungi. In this study, the E. festucae velA gene was functionally characterized in vitro and during interaction with perennial ryegrass. The velA gene is required in E. festucae for resistance to osmotic and cell wall-damaging stresses, repression of conidiation, and normal hyphal morphology during nutrient-limited in-vitro conditions. Expression of velA in E. festucae is light- and nitrogen-dependent and is tissue-specific in mature infected plants. In-planta studies showed that velA is required in E. festucae for a compatible interaction. Inoculating seedlings with mutant A velA induced callose deposition and H2O2 production, and a high level of seedling death was observed. In surviving plants infected with A velA mutant fungi, plants were stunted and we observed increased biomass and invasion of vascular bundles. Overall, this work characterizes a key fungal regulatory factor in this increasingly important model symbiotic association.
机译:Epichloe物种真菌与许多凉爽的季节草一起形成生物保护生成的共生,包括农业牧草草地。尽管重要的是,关于相互作用的分子细节和所涉及的调节基因的分子细节相对较少。保守的天鹅绒结构域蛋白质Vela(或VEA)是真菌中许多细胞和发育功能的全球调节因子。在该研究中,E. Festurcape Vela基因在功能上具有体外和与多年生黑麦草相互作用。在E. Festucah中需要Vela基因,用于抗渗透和细胞壁损伤的抗性,在营养的在体外条件下抑制结合和正常亚酚形态。 Vela在E. Festurcae中的表达是光和氮的依赖性,并且在成熟的感染植物中是组织特异性的。在植物中的研究表明,在E. Festucae中需要Vela进行兼容相互作用。用突变体接种幼苗,Vela诱导的胼舌沉积和H2O2产生,并且观察到高水平的幼苗死亡。在幸存的植物中感染了VELA突变真菌,植物被发育不全,我们观察到增加生物量和血管束的侵袭。总体而言,这项工作表征了这种越来越重要的模型共生协会中的关键真菌监管因素。

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