Protatrans – growth biostimulants for centomopathogenic bacteria Bacillus thuringiensis

S. N. Adamovich, O. F. Vyatchina, N. A. Rubanenko, E. N. Oborina, M. D. Katerinich, I. M. Gritsenko, Y. Dzhioev, I. A. Ushakov, A. S. Grigorieva, B. A. Bugdaeva, K. M. Zalutskaya, L. A. Stepanenko, N. A. Arefieva, V. P. Salovarova, V. Zlobin
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Abstract

The study investigates the use of protatran compounds as growth stimulators for Bacillus thuringiensis bacteria, which are widely used as producers of biopesticides. Cultivation of the Bacillus thuringiensis strain subsp. kurstaki was carried out in a Luria-Bertani (LB) liquid medium. Protatrans (2-Me-C6H4OCH2COO- were added to the NN+(CH2CH2OH)3 (1), 4-Cl-C6H4 -SCH2COO-NN(CHCHOH) (2) and 4-Cl-CSOCHCOO NN+(CH2CH2OH)3 (3) media in concentrations of 1×10-4–1×10-8wt %. The LB medium without the addition of compounds 1–3 was used as a control. Cultures were incubated at a temperature of 30°C for 24 hours. The number of Bacillus thuringiensis cells was determined by serial dilution. The maximum growth was observed in a medium containing 1×10-4wt % of protatran 3. The number of cells was almost 10 times (966.7%) higher than in the control. In media with 1×10-5, 1×10-6, 1×10-7 and 1×10-8 wt % of compound 3, the number of cells was 4–7 times higher than in the control (by 371.7–666.7%). Protatrans 1 and 2 had a positive effect on Bacillus thuringiensis, increasing the number of cells by 83–292% compared to control. Therefore, it was demonstrated for the first time that commercially available non-toxic protatran compounds in microconcentrations are powerful growth stimulators for the entomopathogenic bacteria Bacillus thuringiensis. This indicates the potential for significant improvement and cost reduction of biotechnology for the production of bacterial insecticides based on Bacillus thuringiensis, used in agriculture, forestry and homesteads to control harmful insects.
Protatrans - 中心致病菌苏云金芽孢杆菌的生长生物刺激剂
该研究调查了原烷化合物作为苏云金芽孢杆菌生长刺激剂的用途,苏云金芽孢杆菌被广泛用作生物杀虫剂的生产者。苏云金芽孢杆菌 kurstaki 亚种菌株的培养是在 Luria-Bertani (LB)液体培养基中进行的。在 NN+(CH2CH2OH)3 (1)、4-Cl-C6H4 -SCH2COO-NN(CHCHOH)(2)和 4-Cl-CSOCHCOO NN+(CH2CH2OH)3 (3) 培养基中添加了原反式(2-Me-C6H4OCH2COO-),浓度为 1×10-4-1×10-8wt%。不添加化合物 1-3 的 LB 培养基用作对照。培养物在 30°C 温度下培养 24 小时。苏云金芽孢杆菌细胞数通过系列稀释法测定。在含有 1×10-4wt % 的普特朗 3 的培养基中观察到了最大的生长量。细胞数量几乎是对照组的 10 倍(966.7%)。在含有 1×10-5、1×10-6、1×10-7 和 1×10-8 重量百分比化合物 3 的培养基中,细胞数比对照组高出 4-7 倍(371.7-666.7%)。原药 1 和原药 2 对苏云金芽孢杆菌有积极作用,与对照组相比,细胞数量增加了 83-292%。因此,研究首次证明,市售的无毒原药化合物在微浓度下对昆虫病原菌苏云金芽孢杆菌具有强大的生长刺激作用。这表明以苏云金芽孢杆菌为基础生产细菌杀虫剂的生物技术具有大幅提高和降低成本的潜力,可用于农业、林业和家庭控制有害昆虫。
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