Molecular and Microbiology Research Laboratory, Environmental Biotechnology Division, School of Bio Sciences and Technology, VIT University, Vellore, 632 014, Tamil Nadu, India.
Parasitol Res. 2013 Nov;112(11):3951-9. doi: 10.1007/s00436-013-3585-y. Epub 2013 Sep 8.
A novel approach to control strategies for integrated blood-feeding parasite management is in high demand, including the use of biological control agents. The present study aims to determine the efficacy of optimized crude extract of actinomycetes strain LK1 as biological control agent against the fourth-instar larvae of Anopheles stephensi and Culex tritaeniorhynchus (Diptera: Culicidae) and adults of Haemaphysalis bispinosa, Rhipicephalus (Boophilus) microplus (Acari: Ixodidae), and Hippobosca maculata (Diptera: Hippoboscidae). Antiparasitic activity was optimized using the Plackett-Burman method, and the design was developed using the software Design-Expert version 8.0.7.1. The production of the optimized crude actinomycetes LK1 strain extract was performed using response surface methodology to optimize the process parameters of protease inhibitor activity of marine actinobacteria for the independent variables like pH, temperature, glucose, casein, and NaCl at two levels (-1 and +1). The potential actinomycetes strain was identified as Saccharomonas spp., and the metamodeling surface simulation procedure was followed. It was studied using a computer-generated experimental design, automatic control of simulation experiments, and sequential optimization of the metamodels fitted to a simulation response surface function. The central composite design (CCD) used for the analysis of treatment showed that a second-order polynomial regression model was in good agreement with the experimental results at R (2) = 0.9829 (p < 0.05). The optimized values of the variables for antioxidant production were pH 6.00, glucose 1.3%, casein 0.09%, temperature 31.23 °C, and NaCl 0.10%. The LK1 strain-optimized crude extract was purified using reversed-phase high-pressure liquid chromatography, and the isolated protease inhibitor showed antiparasitic activity. The antiparasitic activity of optimized crude extract of LK1 was tested against larvae of A. stephensi (LC₅₀ = 31.82 ppm; r(2) = 0.818) and C. tritaeniorhynchus (LC₅₀ = 26.62 ppm; r(2) = 0.790) and adults of H. bispinosa (LC₅₀ = 106.58 ppm; r(2) = 0.871), R. (B.) microplus (LC₅₀ = 92.96 ppm; r(2) = 0.913), and H. maculata (LC₅₀ = 84.90 ppm; r(2) = 0.857).
一种控制集成吸血寄生虫管理的综合控制策略的新方法是非常需要的,包括使用生物防治剂。本研究旨在确定优化的放线菌菌株 LK1 粗提取物作为生物防治剂对第四龄疟蚊幼虫和三带喙库蚊(双翅目:库蚊科)以及硬蜱、牛蜱(微小牛蜱)(蛛形纲:硬蜱科)和马蝇(双翅目:马蝇科)成虫的功效。使用 Plackett-Burman 方法优化了驱虫活性,使用 Design-Expert 版本 8.0.7.1 设计了该设计。使用响应面法优化了优化的放线菌 LK1 菌株提取物的生产,以优化海洋放线菌蛋白酶抑制剂活性的过程参数,自变量为 pH 值、温度、葡萄糖、酪蛋白和 NaCl,在两个水平(-1 和+1)下。潜在的放线菌菌株被鉴定为 Saccharomonas spp.,并遵循了 metamodeling 表面模拟过程。它是使用计算机生成的实验设计、模拟实验的自动控制和拟合模拟响应面函数的 metamodels 的顺序优化来研究的。中心组合设计(CCD)用于分析处理,表明二阶多项式回归模型与 R(2)= 0.9829(p <0.05)的实验结果非常吻合。抗氧化剂生产的变量优化值为 pH 6.00、葡萄糖 1.3%、酪蛋白 0.09%、温度 31.23°C 和 NaCl 0.10%。使用反相高压液相色谱法对 LK1 菌株优化的粗提取物进行了纯化,分离出的蛋白酶抑制剂具有驱虫活性。优化的 LK1 粗提取物对 A. stephensi 幼虫(LC₅₀= 31.82 ppm;r(2)= 0.818)和 C. tritaeniorhynchus 幼虫(LC₅₀= 26.62 ppm;r(2)= 0.790)和 H. bispinosa 成虫(LC₅₀= 106.58 ppm;r(2)= 0.871)、R.(B.)microplus 成虫(LC₅₀= 92.96 ppm;r(2)= 0.913)和 H. maculata 成虫(LC₅₀= 84.90 ppm;r(2)= 0.857)进行了测试。