Tang Xiujun, Chen Shuning, Yan Xiaojing, Wang Zhenying, Yuan Huizhu, Yang Daibin
Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Plant Dis. 2022 Apr;106(4):1134-1142. doi: 10.1094/PDIS-07-21-1586-RE. Epub 2022 Mar 23.
Microbial communities are essential for soil health, but fungicide application may have significant effects on their structure. It is difficult to predict whether nontarget pathogens of applied fungicides in the soil will cause crop damage. Tebuconazole is a triazole fungicide that can be used as a seed treatment and, thereby, introduced to the soil. However, seed-applied tebuconazole has a potential risk of causing poor emergence of corn () seedlings. Using soil with a history of poor corn seedling emergence, we demonstrate through TA cloning and isolation that the poor emergence of corn seedlings from tebuconazole-coated corn seeds was primarily because of infection by surviving soil pathogens, specifically species that are not targeted by tebuconazole, rather than the phytotoxic effects of tebuconazole. Bioassay tests on tebuconazole-amended media showed that tebuconazole can suppress soil fungi while allowing to grow. species primarily contributing to the corn seed rot were more pathogenic at cooler temperatures. Furthermore, the nontarget biocontrol agent of spp. was strongly inhibited by tebuconazole. Taken together, the nontarget effects of tebuconazole are likely not significant under favorable plant growing conditions but are considerable because of low-temperature stress.
微生物群落对土壤健康至关重要,但施用杀菌剂可能会对其结构产生重大影响。很难预测土壤中施用的杀菌剂的非靶标病原体是否会对作物造成损害。戊唑醇是一种三唑类杀菌剂,可用于种子处理,从而引入土壤。然而,种子施用戊唑醇有导致玉米幼苗出苗不良的潜在风险。利用有玉米幼苗出苗不良历史的土壤,我们通过TA克隆和分离证明,戊唑醇包衣玉米种子的玉米幼苗出苗不良主要是由于存活的土壤病原体感染,特别是戊唑醇未靶向的物种,而不是戊唑醇的植物毒性作用。在添加戊唑醇的培养基上进行的生物测定试验表明,戊唑醇可以抑制土壤真菌,同时允许生长。主要导致玉米种子腐烂的物种在较低温度下致病性更强。此外,戊唑醇强烈抑制 spp.的非靶标生物防治剂。综上所述,在有利的植物生长条件下,戊唑醇的非靶标效应可能不显著,但由于低温胁迫,其影响相当大。