Literature DB >> 34889668

A Megabirnavirus Alleviates the Pathogenicity of Fusarium pseudograminearum to Wheat.

Yuan Xie1, Zhifang Wang1, Ke Li1, Dongwei Liu1, Yifan Jia1, Fei Gao1, Junli Dai1, Songbai Zhang2, Xiaoting Zhang1, Honglian Li1,3.   

Abstract

Fusarium pseudograminearum is a phytopathogen that causes wheat crown rot disease worldwide. Fusarium pseudograminearum megabirnavirus 1 (FpgMBV1) was isolated from the hypovirulent strain FC136-2A of F. pseudograminearum as a novel double-stranded RNA mycovirus belonging to the family Megabirnaviridae. Here we examined the effects of FpgMBV1 on colony morphology and pathogenicity of F. pseudograminearum. Through hyphal tip culture, we obtained virus-free progeny of strain FC136-2A, referred to as FC136-2A-V-. FpgMBV1 was transferred horizontally to another virus-free strain, WZ-8A-HygR-V-. The progeny obtained through horizontal transfer was referred to as WZ-8A-HygR-V+. Colony morphology was similar between the FpgMBV1-positive and -negative strains. The ability to penetrate cellophane in vitro was lost, and pathogenicity on wheat plants was reduced significantly in the FpgMBV1-positive strains relative to the FpgMBV1-negative strains. Microscopic observations showed a 6-h delay in the formation of appressoria-like structures in FC136-2A relative to FC136-2A-V-. Mycelium extension was significantly longer in wheat coleoptiles infected by WZ-8A-HygR-V- than in that infected by WZ-8A-HygR-V+ at 12 and 20 h after inoculation (hai). In addition, expression of five genes that encode cell wall-degrading enzymes differed significantly between FpgMBV1-positive and -negative strains at 12 and 20 hai during early infection of wheat cells by conidia. This study provides evidence for the hypovirulence effect of FpgMBV1 on F. pseudograminearum and suggests that the underlying mechanism involves unsuccessful early infection and perhaps cell wall degradation.

Entities:  

Keywords:  Fusarium pseudograminearum; Fusarium pseudograminearum megabirnavirus 1; fungal pathogens; hypovirulence; megabirnavirus; virology; wheat crown rot disease

Mesh:

Year:  2022        PMID: 34889668     DOI: 10.1094/PHYTO-03-21-0126-R

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  1 in total

1.  Deoxynivalenol Biosynthesis in Fusarium pseudograminearum Significantly Repressed by a Megabirnavirus.

Authors:  Ke Li; Dongmei Liu; Xin Pan; Shuwei Yan; Jiaqing Song; Dongwei Liu; Zhifang Wang; Yuan Xie; Junli Dai; Jihong Liu; Honglian Li; Xiaoting Zhang; Fei Gao
Journal:  Toxins (Basel)       Date:  2022-07-19       Impact factor: 5.075

  1 in total

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