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Novel biopesticide based on Erinnyis ello betabaculovirus: characterization and preliminary field evaluation to control Erinnyis ello in rubber plantations

机译:基于Erinnyis Ello Betabaculovirus的新型生物农药:对控制Erinnyis Ello橡胶种植园的特征和初步田间评估

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Background The hornworn Erinnyis ello is the major pest of natural rubber crops in Colombia, mainly controlled using toxic chemical insecticides. The use of E. ello Betabaculovirus is an environmentally sustainable alternative for its control. The aim of the present work was to characterize a prototype biopesticide formulation and evaluate its efficacy under different conditions. Results Quality control evaluations of formulated biopesticide revealed that all the parameters evaluated were under the permissible level. The lethal concentrations LC50 and LC90 of the biopesticide were 4.3 x 10(3) and 5.5 x 10(4) occlusion bodies (OBs) mL(-1), respectively. Biopesticide efficacies against second and fourth instar larvae under greenhouse conditions were higher than 80%. Evaluation of two application rates in a clonal garden resulted in 84% and 88% efficacy, comparable to that obtained with the chemical. The biopesticide in a commercial plantation showed efficacies between 74% and 82%. Biopesticide post-application persistence was estimated at least in 1 week under field natural conditions. Results allowed selection of the lowest evaluated dose (1 x 10(11) OBs ha(-1)) as the basis for further field evaluations. Conclusion Formulated ErelGV showed high efficacy to control the hornworm in rubber crops and high potential to be included in integrated pest management programs, thus it could be an interesting alternative to replace agrochemicals. (c) 2018 Society of Chemical Industry
机译:背景技术Hornworn Erinnyis Ello是哥伦比亚天然橡胶作物的主要害虫,主要使用有毒化学杀虫剂控制。 E. Ello Betabaculovirus的使用是一种环境可持续的控制。本作本作的目的是表征原型生物农药制剂,并在不同条件下评估其疗效。结果质量控制配制生物农药的评估显示,评估的所有参数都在允许的水平下。生物农药的致死浓度LC50和LC90分别为4.3×10(3)和5.5×10(4)次闭塞体(OBS)mL(-1)。温室条件下对抗第二和第四龄​​幼虫的生物农药效率高于80%。评估克隆园中的两种应用率导致84%和88%的疗效,与化学品获得的效果相当。商业种植园中的生物农药显示出74%至82%的效率。申请后申请后的生物物质持久性至少在现场自然条件下的1周内估计。结果允许选择最低评估剂量(1×10(11)ob(-1))作为进一步的现场评估的基础。结论配制ERELGV表现出高疗效,以控制橡胶作物中的角虫和高潜力,包括在综合害虫管理方案中,因此可能是替换农业化学物种的有趣替代方案。 (c)2018化学工业协会

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