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田间氟啶酮抗性禾谷镰刀菌的生物学和分子特征。

Biological and molecular characterizations of field fludioxonil-resistant isolates of Fusarium graminearum.

机构信息

State Key Laboratory of Rice Biology, Key Laboratory of Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, China.

State Key Laboratory of Rice Biology, Key Laboratory of Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, China.

出版信息

Pestic Biochem Physiol. 2022 Jun;184:105101. doi: 10.1016/j.pestbp.2022.105101. Epub 2022 Apr 19.

Abstract

Fusarium head blight (FHB) predominately caused by F. graminearum, is an economical devastating disease for grain cereal crops especially on wheat. The phenylpyrrole fungicide fludioxonil exhibits excellent activity against F. graminearum and has been registered to control FHB in China. In this study, 6 fludioxonil-resistant (FludR) isolates of F. graminearum were identified from 2910 isolates collected from wheat cultivated field in Jiang Su, An Hui and Henan province of China in 2020. The sensitivity assay showed that resistance factor (RF) of FludR isolates ranges from 170.73 to >1000. In comparison with fludioxonil-sensitive (FludS) isolates, all of FludR isolates showed fitness defects in terms of mycelial growth, conidiation and virulence. Under fludioxonil treatment condition, the glycerol accumulation was obviously increased in FludS isolates, but was slightly increased in FludR isolates. Four FludR isolates exhibited increased sensitivity to osmotic stresses. Moreover, there is no positive cross-resistance between fludioxonil and other fungicides including phenamacril, carbendazim and tebuconazole. When treated with fludioxonil, the phosphorylation level of Hog1 was significantly decreased in the four FludR isolates, which was in contrast to the observation in the FludS and two FludR isolates where phosphorylation level of Hog1 was increased. Sequencing assay showed that the mutations were identified in different domains in FgOS1, FgOS2 or FgOS4 in FludR isolates. This was first reported that biological and molecular characterizations of field isolates of F. graminearum resistant to fludioxonil. The results can provide scientific directions for controlling FHB using fludioxonil.

摘要

镰刀菌穗腐病(FHB)主要由禾谷镰刀菌引起,是一种对谷物,特别是小麦具有严重经济危害性的疾病。苯吡咯类杀菌剂氟啶酮对禾谷镰刀菌具有优异的活性,已在中国注册用于防治 FHB。本研究从 2020 年在中国江苏、安徽和河南三省小麦种植区采集的 2910 个禾谷镰刀菌分离物中鉴定出 6 个氟啶酮抗性(FludR)分离物。敏感性测定表明,FludR 分离物的抗性系数(RF)范围为 170.73 至>1000。与氟啶酮敏感(FludS)分离物相比,所有 FludR 分离物在菌丝生长、产孢和毒性方面都表现出适应性缺陷。在氟啶酮处理条件下,FludS 分离物中的甘油积累明显增加,而 FludR 分离物中的甘油积累略有增加。4 个 FludR 分离物对渗透压胁迫表现出更高的敏感性。此外,氟啶酮与包括苯醚甲环唑、多菌灵和戊唑醇在内的其他杀菌剂之间没有正交叉抗性。用氟啶酮处理时,4 个 FludR 分离物中 Hog1 的磷酸化水平明显降低,而 FludS 分离物和 2 个 FludR 分离物中 Hog1 的磷酸化水平增加。测序分析表明,FludR 分离物中在 FgOS1、FgOS2 或 FgOS4 的不同结构域中发现了突变。这是首次报道对氟啶酮抗性的禾谷镰刀菌田间分离物的生物学和分子特征进行研究。这些结果可为使用氟啶酮防治 FHB 提供科学方向。

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