生物发生
生物
磷酸酶
TOR信号
磷酸化
细胞生物学
毒力
蛋白磷酸酶2
激酶
脂滴
生物化学
基因
作者
Na Liu,Yingzi Yun,Yanni Yin,Matthias Hahn,Zhonghua Ma,Yun Chen
摘要
Summary Lipid droplets ( LD s) control lipid metabolism in eukaryotic cells in general. However, the biogenesis regulation and biological functions of LD s are largely unknown in pathogenic fungi. Rapamycin treatment results in a significant increase of LD biogenesis in Fusarium graminearum . Molecular mechanisms of the target of rapamycin ( TOR ) pathway in regulating LD biogenesis and the functions of LD in virulence of F. graminearum were investigated in depth by combining genetic, cytological and phenotypic strategies. TOR in Fusarium graminearum (FgTOR) inhibition by rapamycin induces LD biogenesis through the FgPpg1/Sit4 signaling branch. FgPpg1 promotes phosphorylation of protein phosphatase FgNem1 by the protein kinase FgCak1. The phosphorylated FgNem1 dephosphorylates the phosphatidate phosphatase FgPah1. Dephosphorylated FgPah1 is active and stimulates LD biogenesis. Moreover, deletion of FgNem1/Spo7 or FgPah1 leads to serious defects in vegetative growth, sexual development and virulence. The results of this study provide novel insights into the regulatory mechanism and biological functions of the LD s in the devastating pathogenic fungus F. graminearum .
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