Fusarium graminearum pyruvate dehydrogenase kinase 1 (FgPDK1) Is Critical for Conidiation, Mycelium Growth, and Pathogenicity
文献类型: 外文期刊
第一作者: Gao, Tao
作者: Gao, Tao;Chen, Jian;Shi, Zhiqi;Gao, Tao;Chen, Jian;Shi, Zhiqi;Gao, Tao;Chen, Jian;Shi, Zhiqi
作者机构:
期刊名称:PLOS ONE ( 影响因子:3.24; 五年影响因子:3.788 )
ISSN: 1932-6203
年卷期: 2016 年 11 卷 6 期
页码:
收录情况: SCI
摘要: Pyruvate dehydrogenase kinase (PDK) is an important mitochondrial enzyme that blocks the production of acetyl-CoA by selectively inhibiting the activity of pyruvate dehydrogenase (PDH) through phosphorylation. PDK is an effectively therapeutic target in cancer cells, but the physiological roles of PDK in phytopathogens are largely unknown. To address these gaps, a PDK gene (FgPDK1) was isolated from Fusarium graminearum that is an economically important pathogen infecting cereals. The deletion of FgPDK1 in F. graminearum resulted in the increase in PDH activity, coinciding with several phenotypic defects, such as growth retardation, failure in perithecia and conidia production, and increase in pigment formation. The Delta FgPDK1 mutants showed enhanced sensitivity to osmotic stress and cell membrane-damaging agent. Physiological detection indicated that reactive oxygen species (ROS) accumulation and plasma membrane damage (indicated by PI staining, lipid peroxidation, and electrolyte leakage) occurred in Delta FgPDK1 mutants. The deletion of FgPDK1 also prohibited the production of deoxynivalenol (DON) and pathogenicity of F. graminearum, which may resulted from the decrease in the expression of Tri6. Taken together, this study firstly identified the vital roles of FgPDK1 in the development of phytopathogen F. graminearum, which may provide a potentially novel clue for target-directed development of agricultural fungicides.
分类号:
- 相关文献
作者其他论文 更多>>
-
Metabolomics and ionomics reveal the quality differences among peach, acacia and karaya gums
作者:Zhang, Kaiwei;Yu, Xiangyang;Zhang, Kaiwei;Chen, Meng;Zhang, Xue;Chen, Jian;Chen, Xiaolong;Li, Yong;Yu, Xiangyang;Zhang, Kaiwei;Chen, Meng;Zhang, Xue;Chen, Jian;Chen, Xiaolong;Li, Yong;Yu, Xiangyang;Liu, Xin
关键词:Gum; Metabolomics; Flavonoids; Total phenols content; Metabolites
-
Determination of Stable Reference Genes for Gene Expression Analysis in Black Rockfish (Sebastes schlegeli) Under Hypoxia Stress
作者:Chen, Xiatian;Yu, Yujie;Gao, Tao;Liu, Zhifei;Chen, Shuaiyu;Jia, Yudong
关键词:dissolved oxygen; fish; reference gene; RT-qPCR; stability
-
Genetic Mapping of QTL Associated with 100-Kernel Weight Using a DH Population in Maize
作者:Li, Huawei;Li, Hao;Chen, Jian;Song, Weibin;Lai, Jinsheng;Zhao, Haiming;Chen, Jian;Song, Weibin;Lai, Jinsheng;Zhao, Haiming;Zhang, Xiangbo;Wang, Baobao;Zhi, Shujun;Guan, Haiying;Gao, Rixin
关键词:maize (
Zea mays L.); QTL mapping; 100-kernel weight; DH population -
Preparation, characterization, and antibacterial application of cross-linked nanoparticles composite films
作者:Zhao, Yuxin;Li, Kaimian;Ye, Jianqiu;Zhang, Jie;Zhao, Yuxin;Yao, Guanglong;Chen, Jian;Zhao, Yuxin;Yao, Guanglong;Chen, Jian;Zhao, Yuxin;Yao, Guanglong;Chen, Jian
关键词:Antibacterial activity; Cross-linked tapioca starch; Silver nanoparticles; ZnO nanoparticles
-
Physiological and molecular mechanisms of exogenous salicylic acid in enhancing salt tolerance in tobacco seedlings by regulating antioxidant defence system and gene expression
作者:Song, Xiliang;Xu, Can;Chen, Jian;Cai, Xianjie;Song, Wenjing;Chang, Aixia;Zhang, Yu;Luo, Chenggang
关键词:soil salinity; iron toxicity; oxidative damage; salicylic acid; salt tolerance
-
Thymol Stimulates Lateral Root Formation via Regulating Endogenous Reactive Oxygen Species
作者:Li, Jiajun;Hu, Liangbin;Chen, Jian;Hao, Yini;Li, Yong;Wang, Ya;Yu, Xiangyang;Wang, Liyuan;Lu, Chuan
关键词:thymol; lateral root; reactive oxygen species; Rboh; NADPH oxidase; biostimulant
-
Effects of dietary resveratrol supplementation on the growth performance, physiological health, transcriptomic response, and intestinal microflora of Litopenaeus vannamei
作者:Fu, Zhibin;Chen, Jian;Yuan, Hang;Zheng, Yudong;Li, Gongyu;Ke, Sheng;Zhang, Shuang;Shi, Lili;Shi, Lili;Chen, Jian
关键词:Resveratrol; Litopenaeus vannamei; Physiological health; Transcriptomic response; Intestinal microflora