Resistance risk assessment for benzovindiflupyr in Sclerotium rolfsii and transmission of resistance genes among population

IF 3.8 1区 农林科学 Q1 AGRONOMY Pest Management Science Pub Date : 2024-03-23 DOI:10.1002/ps.8101
Kaidi Cui, Chaofan Jiang, Longjiang Sun, Mengke Wang, Leiming He, Lin Zhou
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Abstract

BACKGROUND

Sclerotium rolfsii is a destructive soil-borne fungal pathogen which is distributed worldwide. In previous study, the succinate dehydrogenase inhibitor (SDHI) fungicide benzovindiflupyr has been identified for its great antifungal activity against Sclerotium rolfsii. This study is aimed to investigate the resistance risk and mechanism of benzovindiflupyr in Sclerotium rolfsii.

RESULTS

Eight stable benzovindiflupyr-resistant isolates were generated by fungicide adaptation. Although the obtained eight resistant isolates have a stronger pathogenicity than the parental sensitive isolate, they have a fitness penalty in the mycelial growth and sclerotia formation compared to the parental isolate. A positive cross-resistance existed in the resistant isolates between benzovindiflupyr and thifluzamide, carboxin, boscalid and isopyrazam. Three-point mutations, including SdhBN180D, SdhCQ68E and SdhDH103Y, were identified in the benzovindiflupyr-resistant isolates. However, molecular docking analysis indicated that only SdhDH103Y could influence the sensitivity of Sclerotium rolfsii to benzovindiflupyr. After mycelial co-incubation of resistant isolates and the sensitive isolate, resistance genes may be transmitted to the sensitive isolate. The in vivo efficacy of benzovindiflupyr and thifluzamide against benzovindiflupyr-resistant isolates was a little lower than that against the sensitive isolate but with no significant difference.

CONCLUSION

The results suggested a low to medium resistance risk of Sclerotium rolfsii to benzovindiflupyr. However, once resistance occurs, it is possible to spread in the population of Sclerotium rolfsii. This study is helpful to understanding the risk and mechanism of resistance to benzovindiflupyr in multinucleate pathogens such as Sclerotium rolfsii. © 2024 Society of Chemical Industry.

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苯并茚虫威的抗性风险评估和抗性基因在种群间的传播。
背景:Sclerotium rolfsii 是一种破坏性土传真菌病原体,分布于世界各地。在以前的研究中,琥珀酸脱氢酶抑制剂(SDHI)杀菌剂苯并茚虫威被认为对 S. rolfsii 具有很强的抗真菌活性。本研究的目的是调查苯并茚虫威在 S. rolfsii 中的抗性风险和机制:结果:通过对杀真菌剂的适应,产生了 8 个稳定的苯并茚虫威抗性分离株。虽然所获得的 8 个抗性分离株比亲本敏感分离株具有更强的致病性,但与亲本分离株相比,它们在菌丝生长和硬菌丝形成方面的适应性较差。在抗性分离株中,苯并茚虫威与噻虫嗪、呋虫胺、啶虫脒和异吡嗪之间存在正交叉抗性。在苯并嘧啶氟吡啶抗性分离物中发现了三个点突变,包括 SdhBN180D、SdhCQ68E 和 SdhDH103Y。然而,分子对接分析表明,只有 SdhDH103Y 能影响 S. rolfsii 对苯并茚虫威的敏感性。抗性分离物与敏感分离物进行菌丝共培养后,抗性基因可能会传递给敏感分离物。苯并烯氟虫酰胺和噻虫嗪对苯并烯氟虫酰胺抗性分离物的体内药效略低于对敏感分离物的药效,但无显著差异:上述结果表明,根腐镰刀菌对苯并嘧啶氟吡啶的抗性风险为中低。然而,一旦产生抗性,就有可能在 S. rolfsii 群体中传播。这项研究有助于了解多核病原菌(如 S. rolfsii)对苯并茚虫威产生抗性的风险和机制。本文受版权保护。保留所有权利。
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来源期刊
Pest Management Science
Pest Management Science 农林科学-昆虫学
CiteScore
7.90
自引率
9.80%
发文量
553
审稿时长
4.8 months
期刊介绍: Pest Management Science is the international journal of research and development in crop protection and pest control. Since its launch in 1970, the journal has become the premier forum for papers on the discovery, application, and impact on the environment of products and strategies designed for pest management. Published for SCI by John Wiley & Sons Ltd.
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