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评价生防菌对温室棉花粉虱(半翅目:粉虱科)的生物功效和杀虫剂相容性

Evaluation of the Bioefficacy and Insecticide Compatibility of Entomopathogens for Management of Whitefly (Hemiptera: Aleyrodidae) on Upland Cotton Under Laboratory and Polyhouse Conditions.

机构信息

ICAR - Central Institute for Cotton Research, Regional Station, Sirsa, Haryana, India.

International Cotton Advisory Committee, Washington, DC, USA.

出版信息

Neotrop Entomol. 2022 Aug;51(4):600-612. doi: 10.1007/s13744-022-00964-9. Epub 2022 Jun 9.

Abstract

Entomopathogens (EPFs) are potential alternatives to chemical insecticides for managing Bemisia tabaci (Genn.), an invasive pest of the cotton crop. EPFs alone may not always provide enough insect pest control, but combining EPFs with pesticides, provided both components are compatible, can make an integrated pest management program considerably more effective. Hence, the bioefficacy of EPFs against whitefly, their compatibility with pesticides, and the factors responsible for determining compatibility were studied. The highest nymphal mortality was recorded with the Beauveria bassiana strains Bb-4511 (95.1%) and Bb-4565 (89.9%), and Metarhizium anisopliae Ma-1299 (86.7%) at 1 × 10 conidia ml. Lower LC values were observed for Cordyceps javanica Cj-089 and Bb-4511, 0.2 × 10 and 0.5 × 10conidia ml, respectively. The toxicity index values in insecticide sensitivity assays ranged from 19.4 to 119.6% among all the EPFs. Comparatively, all the EPFs except Bb-4543 and Bb-4565 showed compatible to moderately toxic reactions to neonicotinoids and spinosyns. Organophosphates (ethion) and pyrethrins (bifenthrin) were toxic to very toxic to all the EPFs except Bb-4511, Fv-083, and Ma-1299. Cj-102 and Cj-089 were compatible with 50% of the average recommended dose of bifenthrin and ethion, and the average recommended dose for the field application of neonicotinoids and spinosyns. Principal component analysis showed that spore production and toxicity index values correlate with each other and are responsible for determining the EPF compatibility with insecticides. The EPF spore production and toxicity index are important factors for determining chemical compatibility. Compatible EPFs can be used individually or in combination as promising and compatible biological alternatives to insecticides in the management of whitefly in cotton.

摘要

昆虫病原真菌(EPFs)是防治烟粉虱(Bemisia tabaci)这种棉花作物入侵害虫的化学杀虫剂的潜在替代品。单独使用 EPFs 可能无法提供足够的虫害防治效果,但将 EPFs 与杀虫剂结合使用,如果两者成分兼容,那么综合虫害管理方案的效果会显著增强。因此,本研究旨在评估 EPFs 对粉虱的生物活性、与杀虫剂的兼容性以及决定兼容性的因素。结果表明,菌株 Bb-4511(95.1%)和 Bb-4565(89.9%)以及 Ma-1299(86.7%)对烟粉虱若虫的致死率最高,浓度为 1×10 个分生孢子/ml。而 Cj-089 和 Bb-4511 的 LC 值较低,分别为 0.2×10 和 0.5×10 个分生孢子/ml。在杀虫剂敏感性测定中,所有 EPFs 的毒性指数值在 19.4%至 119.6%之间。相比之下,除了 Bb-4543 和 Bb-4565 之外,所有 EPFs 对新烟碱类和多杀菌素类杀虫剂表现出相容或中度毒性反应。有机磷(乙硫磷)和拟除虫菊酯(溴氰菊酯)对除 Bb-4511、Fv-083 和 Ma-1299 之外的所有 EPFs 均为高毒或剧毒。Cj-102 和 Cj-089 与 50%的溴氰菊酯和乙硫磷的田间推荐剂量以及新烟碱类和多杀菌素类杀虫剂的田间推荐剂量相容。主成分分析表明,产孢量和毒性指数值相互关联,是决定 EPF 与杀虫剂兼容性的关键因素。EPF 的产孢量和毒性指数是决定化学兼容性的重要因素。在棉花上管理烟粉虱时,具有相容性的 EPFs 可以单独或组合使用,作为有前景且兼容的杀虫剂替代物。

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