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The Golgin Protein RUD3 Regulates Fusarium graminearum Growth and Virulence

机译:高尔蛋白Rud3调节镰刀菌·克兰花生长和毒力

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Golgins are coiled-coil proteins that play prominent roles in maintaining the structure and function of the Golgi complex. However, the role of golgin proteins in phytopathogenic fungi remains poorly understood. In this study, we functionally characterized the Fusarium graminearum golgin protein RUD3, a homolog of _(Sc)RUD3/GMAP-210 in Saccharomyces cerevisiae and mammalian cells. Cellular localization observation revealed that RUD3 is located in the cis -Golgi. Deletion of RUD3 caused defects in vegetative growth, ascospore discharge, deoxynivalenol (DON) production, and virulence. Moreover, the Δ rud3 mutant showed reduced expression of tri genes and impairment of the formation of toxisomes, both of which play essential roles in DON biosynthesis. We further used green fluorescent protein (GFP)-tagged SNARE protein SEC22 (SEC22-GFP) as a tool to study the transport between the endoplasmic reticulum (ER) and Golgi and observed that SEC22-GFP was retained in the cis -Golgi in the Δ rud3 mutant. RUD3 contains the coiled coil (CC), GRAB-associated 2 (GA2), GRIP-related Arf binding (GRAB), and GRAB-associated 1 (GA1) domains, which except for GA1, are indispensable for normal localization and function of RUD3, whereas only CC is essential for normal RUD3-RUD3 interaction. Together, these results demonstrate how the golgin protein RUD3 mediates retrograde trafficking in the ER-to-Golgi pathway and is necessary for growth, ascospore discharge, DON biosynthesis, and pathogenicity in F. graminearum .IMPORTANCE Fusarium head blight (FHB) caused by the fungal pathogen Fusarium graminearum is an economically important disease of wheat and other small grain cereal crops worldwide, and limited effective control strategies are available. A better understanding of the regulation mechanisms of F. graminearum development, deoxynivalenol (DON) biosynthesis, and pathogenicity is therefore important for the development of effective control management of this disease. Golgins are attached via their extreme carboxy terminus to the Golgi membrane and are involved in vesicle trafficking and organelle maintenance in eukaryotic cells. In this study, we systematically characterized a highly conserved Golgin protein, RUD3, and found that it is required for vegetative growth, ascospore discharge, DON production, and pathogenicity in F. graminearum . Our findings provide a comprehensive characterization of the golgin family protein RUD3 in plant-pathogenic fungus, which could help to identify a new potential target for effective control of this devastating disease.
机译:胶林是卷轴卷蛋白,在维持Golgi复合物的结构和功能方面发挥着突出的作用。然而,Golin蛋白在植物疗法真菌中的作用仍然明显差不多。在这项研究中,我们在功能上表征了镰刀酸纤维蛋白RUD3,酿酒酵母和哺乳动物细胞中的_(SC)RUD3 / GMAP-210的同源物。细胞定位观察显示RUD3位于CIS-GOLGI中。缺失rud3引起植物生长的缺陷,ascospore放电,脱氧性苯酚(Don)生产和毒力。此外,ΔRUD3突变体表明TRI基因的表达减少以及毒素形成的损伤,其中两者在唐生物合成中起主要作用。我们进一步使用绿色荧光蛋白(GFP) - 作为研究内质网(ER)和GOLGI之间的输送的工具,观察到SEC22-GFP在CIS-GOLGI中保留了SEC22-GFP δrud3突变体。 RUD3包含盘绕线圈(CC),抓取相关的2(GA2),抓握相关的ARF绑定(GRAB)和抓取相关的1(GA1)域,其除GA1之外是对RUD的正常定位和功能的必不可少的,而仅CC对于正常的RUD3-RUD3交互至关重要。这些结果一起表明了Golgin蛋白RUD3如何介导逆行贩运ER-to-Golgi途径,并且是生长,ascospore,Don生物合成和f. graminearum中的致病性所必需的真菌病原体镰刀酸纤维素是全球小麦和其他小谷物作物的经济上重要的疾病,有限的有效控制策略可获得。因此,更好地理解F.甘油蛋白发育的调节机制,脱氧性苯酚(DON)生物合成,以及致病性对该疾病的有效控制管理的发展是重要的。胶林通过它们的极端羧基末端连接到高尔基膜,并且参与真核细胞中的囊泡贩运和细胞器维持。在这项研究中,我们系统地表征了高度保守的床蛋白,RUD3,发现它是在F. Graminearum中的营养生长,雌激素放电,唐生产和致病性所必需的。我们的研究结果提供了植物致病菌的床上家族蛋白Rud3的全面表征,这有助于识别有效控制这种破坏性疾病的新潜在目标。

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