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The septins FaCdc3 and FaCdc12 are required for cytokinesis and affect asexual and sexual development, lipid metabolism and virulence in Fusarium asiaticum

文献类型: 外文期刊

作者: Zhang, Yu 1 ; Gao, Tao 1 ; Shao, Wenyong 1 ; Zheng, Zhitian 1 ; Zhou, Mingguo 1 ; Chen, Changjun 1 ;

作者机构: 1.Nanjing Agr Univ, Coll Plant Protect, Key Lab Pesticide, Nanjing 210095, Jiangsu, Peoples R China

2.Jiangsu Acad Agr Sci, Inst Food Qual & Safety, 50 Zhongling St, Nanjing 210014, Jiangsu, Peoples R China

关键词: asexual and sexual development;cytokinesis;deoxynivalenol;Fusarium asiaticum;lipid metabolism;pathogenicity;septins

期刊名称:MOLECULAR PLANT PATHOLOGY ( 影响因子:5.663; 五年影响因子:5.626 )

ISSN: 1464-6722

年卷期: 2017 年 18 卷 9 期

页码:

收录情况: SCI

摘要: Septins are a highly conserved family of GTP-binding proteins that contribute to many cellular and metabolic functions, including cell polarity, cytokinesis, cell morphogenesis and pathogenesis. In this study, we characterized the septins FaCdc3 and FaCdc12 in the filamentous fungus Fusarium asiaticum. The functions of FaCdc3 and FaCdc12 were evaluated by constructing deletion mutants of FaCdc3 and FaCdc12, designated Delta FaCdc3-5 and Delta FaCdc12-71, respectively. The deletion mutants exhibited a reduced rate of mycelial growth, increased aerial hyphae formation, irregularly shaped hyphae, reduced conidiation and a lack of sexual reproduction in wheat kernels. Histochemical analysis revealed that the conidia and hyphae of Delta FaCdc3-5 and Delta FaCdc12-71 formed large lipid droplets (LDs). Delta FaCdc3-5 and Delta FaCdc12-71 also exhibited increased resistance to agents that induce osmotic stress and damage the cell membrane and cell wall. In addition, the hyphae and conidia of the two mutants formed fewer septa than those of the wild-type and exhibited aberrant nuclear distribution. Pathogenicity assays showed that Delta FaCdc3-5 and Delta FaCdc12-71 exhibited reduced virulence on wheat spikelets, which was indirectly correlated with a reduced level of deoxynivalenol accumulation. All of these defects were restored by genetic complementation of the two mutants with the parental FaCdc3 and FaCdc12. These results indicate that FaCdc3 and FaCdc12 play a critical role in various cellular processes in F. asiaticum.

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