Zhao Fan, Mao Yufei, Yang Jiahong, Yang Sheng, Guan Xiong, Wang Zixuan, Huang Tianpei
State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Key Laboratory of Biopesticide and Chemical Biology of Ministry of Education, Biopesticide Research Center, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Microorganisms. 2025 Feb 24;13(3):499. doi: 10.3390/microorganisms13030499.
This study investigated the effects of fertilizers on the biofilm formation, ultraviolet (UV) resistance, and insecticidal activity of (Bt). , a widely used microbial pesticide, has a minimal environmental impact and is highly effective against specific pests but is susceptible to environmental factors in field applications. Bacterial biofilms provide protection for Bt, enhancing its survival and functionality in the environment. However, the mechanisms by which fertilizers regulate the characteristics of microbial pesticides and enhance biofilm formation are not well understood. This study evaluated the effects of six fertilizers on the bacterial biofilm formation, the UV resistance, and the insecticidal activities of Bt wettable powders. The results demonstrated that fertilizers significantly enhanced the performance of three Bt preparations (Lv'an, Kang'xin, and Lu'kang). A compound fertilizer with 8.346 g/L of KCl, 2.751 g/L of ZnSO·7HO, and 25.681 μL/mL of humic acid was identified by response surface optimization, achieving the maximum BBF formation with OD value of 2.738. Furthermore, KHPO, HA, and ZnSO·7HO notably improved the survivability of Bt preparations under prolonged UV exposure, with the compound fertilizer providing the greatest protection. What's more, fertilizers reduced the LC values of all Bt preparations, with the compound fertilizer decreasing the LC of the Lv'an Bt wettable powder to 0.139 g/L, a 3.12-fold increase in efficacy. This study demonstrated that fertilizers significantly enhance the UV resistance and insecticidal activity of Bt wettable powders by promoting bacterial biofilm formation. Herein, this study provides new strategies and theoretical support for Bt applications in modern sustainable agriculture.
本研究调查了肥料对苏云金芽孢杆菌(Bt)生物膜形成、抗紫外线能力及杀虫活性的影响。Bt是一种广泛使用的微生物杀虫剂,对环境影响极小,对特定害虫高效,但在田间应用中易受环境因素影响。细菌生物膜可为Bt提供保护,增强其在环境中的存活能力和功能。然而,肥料调节微生物农药特性并增强生物膜形成的机制尚不清楚。本研究评估了六种肥料对Bt可湿性粉剂细菌生物膜形成、抗紫外线能力及杀虫活性的影响。结果表明,肥料显著提高了三种Bt制剂(绿安、康欣和绿康)的性能。通过响应面优化确定了一种含有8.346 g/L氯化钾、2.751 g/L七水硫酸锌和25.681 μL/mL腐殖酸的复合肥,其生物膜形成量最大,OD值为2.738。此外,磷酸二氢钾、腐殖酸和七水硫酸锌显著提高了Bt制剂在长时间紫外线照射下的存活率,其中复合肥提供的保护作用最大。此外,肥料降低了所有Bt制剂的LC值,复合肥使绿安Bt可湿性粉剂的LC值降至0.139 g/L,药效提高了3.12倍。本研究表明,肥料通过促进细菌生物膜形成显著增强了Bt可湿性粉剂的抗紫外线能力和杀虫活性。在此,本研究为Bt在现代可持续农业中的应用提供了新策略和理论支持。