Literature DB >> 35129347

Mechanism of Fusarium graminearum Resistance to Ergosterol Biosynthesis Inhibitors: G443S Substitution of the Drug Target FgCYP51A.

Huahua Zhao1, Xian Tao1, Wen Song1, Haorong Xu1, Meixia Li1, Yiqiang Cai1,2, Jianxin Wang1,2, Yabing Duan1,2, Mingguo Zhou1,2.   

Abstract

Fusarium head blight (FHB), caused by the Fusarium graminearum species complex, is a devastating fungal disease resulting in substantial yield and quality losses. Ergosterol biosynthesis inhibitors (EBIs) are the most popular chemicals for controlling FHB. Recently, the resistance of F. graminearum to EBIs has emerged in the field, and an amino acid substitution (G443S) of the sterol 14α-demethylase FgCYP51A was detected in the field resistant strains. To further illustrate the resistance mechanism of F. graminearum to EBIs, site-directed mutants conferring the G443S substitution of FgCYP51A were generated from the progenitor strain PH-1 via genetic transformation with site-directed mutagenesis. We found that the FgCYP51A-G443S substitution significantly decreased the sensitivity of F. graminearum to EBIs with EC50 values ranging from 0.1190 to 0.2302 μg mL-1 and EC90 values ranging from 1.3420 to 9.1119 μg mL-1 for tebuconazole. Furthermore, the FgCYP51A-G443S substitution decreased sexual reproduction and virulence, which will reduce the initial infection source of pathogen populations in the field, while the increase of sporulation capability may enhance the frequencies of the disease cycle, thereby contributing to epidemics of FHB disease. Surprisingly, the FgCYP51A-G443S substitution accelerated DON biosynthesis by upregulating TRI5 expression and enhancing the fluorescence intensity of TRI1-GFP, the marker protein of Fusarium toxisomes. Thus, we concluded that the FgCYP51A-G443S substitution regulates EBI-fungicide resistance and DON biosynthesis, increasing the risk of fungicide resistance development in the field, thereby threatening the control efficacy of EBIs against FHB.

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Keywords:  DON biosynthesis; EBI fungicides; FgCYP51A; Fusarium graminearum; G443S substitution; toxisome

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Year:  2022        PMID: 35129347     DOI: 10.1021/acs.jafc.1c07543

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  2 in total

1.  Biological characterization and in vitro fungicide screenings of a new causal agent of wheat Fusarium head blight in Tibet, China.

Authors:  Xiaoli Tang; Gongsang Yangjing; Gusang Zhuoma; Xiaofang Guo; Pengxi Cao; Benlin Yi; Wumei Wang; Matias Pasquali; Ivan Baccelli; Quirico Migheli; Xiaoyulong Chen; Tomislav Cernava
Journal:  Front Microbiol       Date:  2022-08-05       Impact factor: 6.064

2.  UvSorA and UvSorB Involved in Sorbicillinoid Biosynthesis Contribute to Fungal Development, Stress Response and Phytotoxicity in Ustilaginoidea virens.

Authors:  Xuping Zhang; Dan Xu; Xuwen Hou; Penglin Wei; Jiajin Fu; Zhitong Zhao; Mingpeng Jing; Daowan Lai; Wenbing Yin; Ligang Zhou
Journal:  Int J Mol Sci       Date:  2022-09-21       Impact factor: 6.208

  2 in total

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