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转录因子FgAtrR调节无性和有性发育、毒力及脱氧雪腐镰刀菌烯醇的产生,并有助于对唑类杀菌剂的内在抗性。

The Transcription Factor FgAtrR Regulates Asexual and Sexual Development, Virulence, and DON Production and Contributes to Intrinsic Resistance to Azole Fungicides in .

作者信息

Zhao Yanxiang, Sun Huilin, Li Jingwen, Ju Chao, Huang Jinguang

机构信息

College of Plant Health and Medicine, Key Lab of Integrated Crop Disease and Pest Management of Shandong Province, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Biology (Basel). 2022 Feb 18;11(2):326. doi: 10.3390/biology11020326.

Abstract

is the predominant causal agent of cereal Fusarium head blight disease (FHB) worldwide. The application of chemical fungicides such as azole antifungals is still the primary method for FHB control. However, to date, our knowledge of transcriptional regulation in the azole resistance of is quite limited. In this study, we identified and functionally characterized a Zn(II)2-Cys6 transcription factor FgAtrR in . We constructed a FgAtrR deletion mutant and found that deletion of FgAtrR resulted in faster radial growth with serious pigmentation defects, significantly reduced conidial production, and an inability to form perithecia. The pathogenicity of the ΔFgAtrR mutant on wheat spikes and corn silks was severely impaired with reduced deoxynivalenol production, while the tolerance to prochloraz and propiconazole of the deletion mutant was also significantly decreased. RNA-seq indicated that many metabolic pathways were affected by the deletion of FgAtrR. Importantly, FgAtrR could regulate the expression of the FgCYP51A and ABC transporters, which are the main contributors to azole resistance. These results demonstrated that FgAtrR played essential roles in asexual and sexual development, DON production, and pathogenicity, and contributed to intrinsic resistance to azole fungicides in . This study will help us improve the understanding of the azole resistance mechanism in .

摘要

是全球谷物镰刀菌穗腐病(FHB)的主要致病因子。应用化学杀菌剂如唑类抗真菌剂仍然是控制FHB的主要方法。然而,迄今为止,我们对其唑类抗性中的转录调控的了解相当有限。在本研究中,我们在中鉴定并对一个Zn(II)2-Cys6转录因子FgAtrR进行了功能表征。我们构建了一个FgAtrR缺失突变体,发现FgAtrR的缺失导致径向生长更快,伴有严重的色素沉着缺陷,分生孢子产量显著降低,且无法形成子囊壳。ΔFgAtrR突变体对小麦穗和玉米花丝的致病性严重受损,脱氧雪腐镰刀菌烯醇产量降低,而缺失突变体对咪鲜胺和丙环唑的耐受性也显著下降。RNA测序表明许多代谢途径受到FgAtrR缺失的影响。重要的是,FgAtrR可以调节FgCYP51A和ABC转运蛋白的表达,它们是唑类抗性的主要贡献者。这些结果表明FgAtrR在无性和有性发育、DON产生和致病性中起重要作用,并有助于其对唑类杀菌剂的内在抗性。本研究将有助于我们提高对其唑类抗性机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db7b/8869466/dedd88605b24/biology-11-00326-g001.jpg

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