Sterol 14α-Demethylase CaCYP51A and CaCYP51B are Functionally Redundant, but Differentially Regulated in Colletotrichum acutatum: Responsibility for DMI-Fungicide Resistance

炭疽菌 生物 杀菌剂 戊唑醇 交叉电阻 突变体 突变 去甲基化 遗传学 微生物学 植物 园艺 基因 接种 基因表达 DNA甲基化
作者
Lingling Wei,Xiujuan Li,Bin Chen,Wenchan Chen,Lihui Wei,Dongmei Zhou,Changjun Chen,Chengdong Wu
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:70 (38): 11911-11922
标识
DOI:10.1021/acs.jafc.2c04824
摘要

Colletotrichum acutatum, the main pathogen causing anthracnose on chili worldwide, is controlled by tebuconazole [a sterol C14-demethylation inhibitor (DMI) fungicide, abbreviated as Teb] with excellent efficacy. Our previous study exhibited that all C. acutatum isolates were sensitive to Teb while the Colletotrichum gloeosporioides population had developed resistance to Teb on the same fungicide-pressure selection. Therefore, the assessment of Teb-resistance in C. acutatum is impending. Twenty Teb-resistant (TebR) mutants obtained by fungicide domestication and ultraviolet (UV)-mutagenesis displayed similar fitness compared to parental isolates. Data in the current study exhibited that mutations at CaCYP51A and/or overexpression of CaCYP51s were responsible for Teb-resistance. Furthermore, the deletion mutants ΔCaCYP51A and ΔCaCYP51B played different roles in sensitivities to DMIs. Taken together, this study first reported that mutations at CaCYP51A and/or overexpression of CaCYP51s conferred resistance to Teb in C. acutatum, CaCYP51A and CaCYP51B are functionally redundant, but differentially regulated in DMI resistance.
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