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在辣椒炭疽菌 SdhB 的保守结构域中,两个相邻的突变赋予了对氟吡菌胺的多种抗性表型。

Two adjacent mutations in the conserved domain of SdhB confer various resistance phenotypes to fluopyram in Corynespora cassiicola.

机构信息

The Key Laboratory of Vegetable Disease Control, Insititute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Pest Manag Sci. 2021 Sep;77(9):3980-3989. doi: 10.1002/ps.6420. Epub 2021 May 12.

Abstract

BACKGROUND

For Corynespora cassiicola (Berk. & M.A. Curtis) C.T. Wei, a necrotrophic pathogen with a broad host range and a worldwide distribution, resistance to fluopyram has been attributed to mutations in SdhB/C/D subunit of the succinate dehydrogenase (SDH) complex. In our previous study, two point mutations in SdhB from isoleucine to valine at position 280 (I280V) and histidine to tyrosine at position 278 (H278Y) showed different resistance phenotypes to fluopyram and boscalid. This research was conducted to explore the correlation between the mutation of SdhB-I280V or SdhB-H278Y and resistance to fluopyram or boscalid and its effect on the fitness characteristics of C. cassiicola.

RESULTS

The sdhB gene in a succinate dehydrogenase inhibitor (SDHI)-sensitive C. cassiicola strain (wild type) was successfully replaced with the mutant sdhB gene (GTT at position 280, SdhB-I280V) or with the mutant sdhB gene (TAC at position 278, SdhB-H278Y,). Compared with the wild-type strain, the replacement mutants exhibited significantly different resistance phenotypes, with SdhB-V280 demonstrating moderate resistance to fluopyram and low resistance to boscalid, while SdhB-Y278 was supersensitive to fluopyram and very highly resistant to boscalid. Both of the mutants exhibited decreased sensitivity to salt stress and increased SDH activity. These two mutations had no effect on the mycelial growth rate, sporulation ability, pathogenicity in vivo, sensitivity to osmotic stress and oxidative stress, cell wall damaging agents, or SHAM.

CONCLUSION

Two adjacent mutations in the SdhB gene conferred different resistance phenotypes to SDHIs in C. cassiicola, which is important for the development of alternative antifungal fungicides and fluopyram resistance management. © 2021 Society of Chemical Industry.

摘要

背景

对于广宿主分布的坏死性病原菌姜球腔菌(Corynespora cassiicola)(Berk. & M.A. Curtis)C.T. Wei,其对氟吡菌酰胺的抗性归因于琥珀酸脱氢酶(SDH)复合物 SdhB/C/D 亚基的突变。在我们之前的研究中,SdhB 中的两个点突变,即位置 280 处的异亮氨酸突变为缬氨酸(I280V)和位置 278 处的组氨酸突变为酪氨酸(H278Y),对氟吡菌酰胺和肟菌酯表现出不同的抗性表型。本研究旨在探讨 SdhB-I280V 或 SdhB-H278Y 突变与对氟吡菌酰胺或肟菌酯的抗性及其对姜球腔菌适应特性的关系。

结果

成功地将一个琥珀酸脱氢酶抑制剂(SDHI)敏感型姜球腔菌菌株(野生型)中的 sdhB 基因替换为突变 sdhB 基因(位置 280 处的 GTT,SdhB-I280V)或突变 sdhB 基因(位置 278 处的 TAC,SdhB-H278Y)。与野生型菌株相比,替换突变体表现出明显不同的抗性表型,其中 SdhB-V280 对氟吡菌酰胺表现出中等抗性和对肟菌酯的低抗性,而 SdhB-Y278 对氟吡菌酰胺表现出超敏性和对肟菌酯的极高抗性。两个突变体对盐胁迫的敏感性降低,SDH 活性增加。这两个突变对菌丝生长速度、产孢能力、体内致病性、对渗透胁迫和氧化应激的敏感性、细胞壁破坏剂和 SHAM 没有影响。

结论

SdhB 基因中的两个相邻突变赋予了姜球腔菌对 SDHIs 的不同抗性表型,这对于开发替代的抗真菌剂和氟吡菌酰胺抗性管理至关重要。 © 2021 化学工业协会。

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