Health and Crop Sciences Research Laboratory, Sumitomo Chemical Co., Ltd., Takarazuka, Japan.
Pest Manag Sci. 2024 Jun;80(6):2874-2880. doi: 10.1002/ps.7995. Epub 2024 Feb 12.
Resistance to succinate dehydrogenase inhibitor (SDHI) fungicides has been reported in some rust fungi within Pucciniales. However, measuring the resistance factors conferred by a specific substitution at the target site is difficult for most species because of the difficulty in performing in vitro experiments and the complexity of the binuclear state in these obligate parasites. We focused on Puccinia horiana because it easily forms homozygous basidiospores that are sensitive to SDHIs during in vitro germination, whereas the uredospores of other rust fungi are less sensitive.
We identified two substitutions, SdhC-I88F and SdhD-C125Y, that drive SDHI resistance in Pu. horiana. Using basidiospore germination inhibition tests, we measured the resistance factors for six SDHI fungicides in Pu. horiana isolates harboring SdhC-I88F substitutions, wherein orthologous substitutions were most frequently observed in SDHI-resistant Pucciniales, such as soybean rust (Phakopsora pachyrhizi). The resistance factors were high for penthiopyrad and benzovindiflupyr (>150), moderate for oxycarboxin and inpyrfluxam (10-30), and low for mepronil and fluxapyroxad (3-10). The most potent SDHI against SdhC-I88F-harboring isolates was inpyrfluxam, with a half-maximal effective concentration (EC) of 0.0082 mg L owing to its high intrinsic activity. SdhD-C125Y played a minor, but significant role in increasing the resistance factors (one- to tenfold increases), depending on the individual SDHIs.
This study is the first to use basidiospore germination inhibitory tests to quantify the resistance factors for SDHI-resistant Pucciniales. Owing to its homozygous binucleate nature and the high availability of basidiospores, Pu. horiana is useful for investigating SDHI resistance in Pucciniales. © 2024 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
在某些 Pucciniales 锈菌中已报道对琥珀酸脱氢酶抑制剂(SDHI)杀菌剂的抗性。然而,由于在体外实验中难以进行,并且这些专性寄生虫的双核状态复杂,因此对于大多数物种来说,测量靶标部位特定取代赋予的抗性因子是困难的。我们专注于 Puccinia horiana,因为它在体外萌发过程中很容易形成对 SDHIs 敏感的纯合担子孢子,而其他锈菌的冬孢子则不那么敏感。
我们鉴定了两个导致 Pu. horiana 对 SDHI 产生抗性的取代,即 SdhC-I88F 和 SdhD-C125Y。使用担子孢子萌发抑制试验,我们测量了携带 SdhC-I88F 取代的 Pu. horiana 分离株对六种 SDHI 杀菌剂的抗性因子,其中在 SDHI 抗性 Pucciniales 中最常观察到同源取代,例如大豆锈病(Phakopsora pachyrhizi)。对于戊吡丙醚和苯并呋氟草酮(>150)的抗性因子很高,对于氧羧肟和啶氧菌酯(10-30)的抗性因子中度,对于嘧菌酯和氟环唑(3-10)的抗性因子低。针对携带 SdhC-I88F 的分离株最有效的 SDHI 是啶氧菌酯,由于其高内在活性,其半最大有效浓度(EC)为 0.0082mg/L。SdhD-C125Y 在增加抗性因子方面(根据个别 SDHIs,增加一到十倍)发挥了次要但重要的作用。
这项研究首次使用担子孢子萌发抑制试验来量化对 SDHI 抗性 Pucciniales 的抗性因子。由于其纯合双核性质和担子孢子的高可用性,Pu. horiana 可用于研究 Pucciniales 中的 SDHI 抗性。©2024 作者。Pest Management Science 由 John Wiley & Sons Ltd 出版,代表化学工业协会。