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球孢白僵菌与吡虫啉对褐飞虱协同作用的时间-浓度-死亡率建模

Time-concentration-mortality modeling of the synergistic interaction of Beauveria bassiana and imidacloprid against Nilaparvata lugens.

作者信息

Feng Ming-Guang, Pu Xiao-Ying

机构信息

Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang 310029, China.

出版信息

Pest Manag Sci. 2005 Apr;61(4):363-70. doi: 10.1002/ps.983.

Abstract

Interactions between the entomopathogenic fungus, Beauveria bassiana SG8702, and imidacloprid on Nilaparvata lugens (Homoptera: Delphacidae) were studied in laboratory bioassays by spraying suspensions of unformulated conidia (assay 1) and aqueous dilutions of emulsifiable conidia formulation alone (assay 2) or together with imidacloprid at the sub-lethal rates of 0.5, 1.0 and 2.0 microg ml(-1) (assays 3-5). Each assay consisted of five conidia concentrations plus an appropriate control and three replicates, each including 30-40 third-instar nymphs, so as to generate time-concentration-mortality data for modeling analysis. A mineral oil-based emulsion used to formulate B bassiana slightly enhanced fungal activity but had no significant impact on the background mortality of N lugens. On the basis of LC50 estimates and associated variances on days 4-12 after spraying, synergistic interactions of both agents or formulations were determined by estimating relative potencies of assay 2 over assay 1 (1.2-9.0), assay 3 over assay 2 (1.3-1.7), assay 4 over assay 2 (7.5-9.6), assay 5 over assay 2 (22.7-101), assay 4 over assay 3 (3.8-5.8), assay 5 over assay 3 (16.1-61.0), and assay 5 over assay 4 (3.0-10.5). The time-concentration-mortality modeling method was not only mathematically but also biologically robust to evaluate the interactions of B bassiana and imidacloprid on N lugens. Compared with their counterparts, enhanced fungal formulations displayed consistently earlier or greater activities against the pest species based on LC50 and LT50 estimates determined from their time-concentration-mortality relationships. The results highlight a potential for pest control by combined formulation or application of B bassiana and imidacloprid.

摘要

通过在实验室生物测定中喷洒未配制的分生孢子悬浮液(试验1)和仅乳化分生孢子制剂的水性稀释液(试验2),或与吡虫啉以0.5、1.0和2.0微克/毫升(-1)的亚致死率一起喷洒(试验3 - 5),研究了昆虫病原真菌球孢白僵菌SG8702与吡虫啉对褐飞虱(同翅目:飞虱科)的相互作用。每个试验包括五个分生孢子浓度加上一个适当的对照和三个重复,每个重复包括30 - 40只三龄若虫,以便生成时间 - 浓度 - 死亡率数据用于建模分析。用于配制球孢白僵菌的矿物油基乳液略微增强了真菌活性,但对褐飞虱的背景死亡率没有显著影响。根据喷洒后第4 - 12天的LC50估计值和相关方差,通过估计试验2相对于试验1(1.2 - 9.0)、试验3相对于试验2(1.3 - 1.7)、试验4相对于试验2(7.5 - 9.6)、试验5相对于试验2(22.7 - 101)、试验4相对于试验3(3.8 - 5.8)、试验5相对于试验3(16.1 - 61.0)以及试验5相对于试验4(3.0 - 10.5)的相对效力,确定了两种药剂或制剂的协同相互作用。时间 - 浓度 - 死亡率建模方法在数学上和生物学上都具有稳健性,可用于评估球孢白僵菌和吡虫啉对褐飞虱的相互作用。与相应的制剂相比,基于从其时间 - 浓度 - 死亡率关系确定的LC50和LT50估计值,增强型真菌制剂对害虫物种始终表现出更早或更大的活性。结果突出了通过联合配制或应用球孢白僵菌和吡虫啉进行害虫防治的潜力。

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