Qiu Yurong, Meng Yaling, Lian Wenxu, Jian Shasha, Du Yannan, Wang Meng, Yang Ye, Liang Xiaoyu, Zhang Yu
Sanya Institute of Breeding and Multiplication, School of Tropical Agriculture and Forestry, Hainan University, Sanya, China.
Sanya Institute of Breeding and Multiplication, School of Tropical Agriculture and Forestry, Hainan University, Sanya, China.
Fungal Genet Biol. 2023 Dec;169:103844. doi: 10.1016/j.fgb.2023.103844. Epub 2023 Nov 19.
Among succinate dehydrogenase inhibiter (SDHI) fungicides, penthiopyrad and benzovindiflupyr particularly inhibit Colletotrichum. Studying SDH amino acid polymorphism in Colletotrichum, along with its fungicide binding sites, is key to understanding their mechanisms of action. This study explores the SDH amino acid polymorphisms in Colletotrichum siamense strains from rubber trees in China and their interaction with SDHI fungicides, specifically penthiopyrad and benzovindiflupyr. Sequencing revealed most polymorphisms were in the SDHC subunit, particularly at positions 85 and 86, which are key to penthiopyrad resistance. Among 33 isolates, 33.3 % exhibited a substitution at position 85, and 9 % at position 86. A strain with W85L and T86N substitutions in SDHC showed reduced SDH activity, ATP content, mycelial growth, and virulence, and decreased sensitivity to penthiopyrad but not benzovindiflupyr. Molecular docking with Alphafold2 modeling suggested distinct binding modes of the two fungicides to C. siamense SDH. These findings underscore the importance of SDHC polymorphisms in C. siamense's fitness and sensitivity to SDHIs, enhancing our understanding of pathogen-SDHI interactions and aiding the development of novel SDHI fungicides.
在琥珀酸脱氢酶抑制剂(SDHI)类杀菌剂中,戊唑吡菌胺和苯并烯氟菌唑对炭疽菌有特别的抑制作用。研究炭疽菌中琥珀酸脱氢酶(SDH)的氨基酸多态性及其与杀菌剂的结合位点,是理解其作用机制的关键。本研究探讨了来自中国橡胶树的暹罗炭疽菌菌株中SDH的氨基酸多态性及其与SDHI类杀菌剂(特别是戊唑吡菌胺和苯并烯氟菌唑)的相互作用。测序显示,大多数多态性存在于SDHC亚基中,特别是在第85和86位,这是对戊唑吡菌胺抗性的关键位点。在33个分离株中,33.3%在第85位出现替换,9%在第86位出现替换。SDHC中具有W85L和T86N替换的菌株显示出SDH活性、ATP含量、菌丝生长和毒力降低,对戊唑吡菌胺的敏感性降低,但对苯并烯氟菌唑不敏感。与Alphafold2模型的分子对接表明,这两种杀菌剂与暹罗炭疽菌SDH的结合模式不同。这些发现强调了SDHC多态性在暹罗炭疽菌适应性和对SDHIs敏感性中的重要性,增进了我们对病原体与SDHI相互作用的理解,并有助于新型SDHI类杀菌剂的开发。