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CCR4-Not Complex Subunit Not2 Plays Critical Roles in Vegetative Growth, Conidiation and Virulence in Watermelon Fusarium Wilt Pathogen Fusarium oxysporum f. sp. niveum.
Dai, Yi; Cao, Zhongye; Huang, Lihong; Liu, Shixia; Shen, Zhihui; Wang, Yuyan; Wang, Hui; Zhang, Huijuan; Li, Dayong; Song, Fengming.
  • Dai Y; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Cao Z; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Huang L; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Liu S; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Shen Z; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Wang Y; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Wang H; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Zhang H; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Li D; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
  • Song F; State Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University Hangzhou, China.
Front Microbiol ; 7: 1449, 2016.
Article en En | MEDLINE | ID: mdl-27695445
ABSTRACT
CCR4-Not complex is a multifunctional regulator that plays important roles in multiple cellular processes in eukaryotes. In the present study, the biological function of FonNot2, a core subunit of the CCR4-Not complex, was explored in Fusarium oxysporum f. sp. niveum (Fon), the causal agent of watermelon wilt disease. FonNot2 was expressed at higher levels in conidia and germinating conidia and during infection in Fon-inoculated watermelon roots than in mycelia. Targeted disruption of FonNot2 resulted in retarded vegetative growth, reduced conidia production, abnormal conidial morphology, and reduced virulence on watermelon. Scanning electron microscopy observation of infection behaviors and qRT-PCR analysis of in planta fungal growth revealed that the ΔFonNot2 mutant was defective in the ability to penetrate watermelon roots and showed reduced fungal biomass in root and stem of the inoculated plants. Phenotypic and biochemical analyses indicated that the ΔFonNot2 mutant displayed hypersensitivity to cell wall perturbing agents (e.g., Congo Red and Calcofluor White) and oxidative stress (e.g., H2O2 and paraquat), decreased fusaric acid content, and reduced reactive oxygen species (ROS) production during spore germination. Our data demonstrate that FonNot2 plays critical roles in regulating vegetable growth, conidiogenesis and conidia morphology, and virulence on watermelon via modulating cell wall integrity, oxidative stress response, ROS production and FA biosynthesis through the regulation of transcription of genes involved in multiple pathways.
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Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2016 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2016 Tipo del documento: Article