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环孢菌素 C(一种真菌毒素)对(L.)的致死性和亚致死毒性评估。

Lethal and Sublethal Toxicity Assessment of Cyclosporin C (a Fungal Toxin) against (L.).

机构信息

Key Laboratory of Bio-Pesticide Innovation and Application, College of Plant Protection, South China Agricultural University, Guangzhou 510642, China.

Engineering Research Center of Biological Control, Ministry of Education and Guangdong Province, South China Agricultural University, Guangzhou 510642, China.

出版信息

Toxins (Basel). 2022 Jul 28;14(8):514. doi: 10.3390/toxins14080514.

Abstract

Secondary metabolites/toxins produced by (Hypocreales; Phiocordycipitaceae), a well-known insect pathogen, can be used for the management of different insect pests. We report the lethal and sublethal effects of cyclosporin C (a toxin produced by ) against a major vegetable pest, , at specific organismal (feeding rate, larval growth, adult emergence, fecundity, and adult longevity) and sub-organismal levels (changes in antioxidant and neurophysiological enzyme activities). The toxicity of cyclosporin C against different larval instars of increased with increasing concentrations of the toxin and the maximum percent mortality rates for different larval instars at different times were observed for the 300 µg/mL cyclosporin C treatment, with an average mortality rate of 100% for all larval instars. The median lethal concentrations (LC) of cyclosporin C against the first, second, third, and fourth larval instars of 72 h post-treatment were 78.05, 60.42, 50.83, and 83.05 μg/mL, respectively. Different concentrations of cyclosporin C caused a reduction in the average leaf consumption and average larval weight. Different life history parameters, such as the pupation rate (%), adult emergence (%), female fecundity, and female longevity were also inhibited when different concentrations of cyclosporin C were applied topically. The cyclosporin C concentrations inhibited the activities of different detoxifying (glutathione S-transferase, carboxylesterase, and acetylcholinesterase) and antioxidant enzyme (superoxide dismutase, catalase, and peroxidase) activities of when compared to the control. These findings can serve as baseline information for the development of cyclosporin C as an insect control agent, although further work on mass production, formulation, and field application is still required.

摘要

(Hypocreales; Phiocordycipitaceae)是一种著名的昆虫病原体,其产生的次生代谢物/毒素可用于防治不同的昆虫害虫。我们报告了环孢菌素 C(一种由 产生的毒素)对主要蔬菜害虫 (斜纹夜蛾)的致死和亚致死作用,在个体(摄食率、幼虫生长、成虫出现、繁殖力和成虫寿命)和亚个体水平(抗氧化和神经生理酶活性的变化)上。随着毒素浓度的增加,环孢菌素 C 对不同龄期 幼虫的毒性增加,在不同时间用 300µg/mL 环孢菌素 C 处理时,不同 幼虫龄期的最大死亡率百分率为观察到,所有幼虫龄期的平均死亡率为 100%。72 h 后,环孢菌素 C 对 第一、第二、第三和第四龄幼虫的致死中浓度(LC)分别为 78.05、60.42、50.83 和 83.05µg/mL。不同浓度的环孢菌素 C 导致平均叶片消耗量和平均幼虫体重减少。不同浓度的环孢菌素 C 还抑制了不同的生活史参数,如化蛹率(%)、成虫出现率(%)、雌虫繁殖力和雌虫寿命。与对照相比,环孢菌素 C 浓度抑制了不同解毒(谷胱甘肽 S-转移酶、羧酸酯酶和乙酰胆碱酯酶)和抗氧化酶(超氧化物歧化酶、过氧化氢酶和过氧化物酶)的活性。尽管仍需要进行大规模生产、配方和田间应用方面的进一步工作,但这些发现可以为将环孢菌素 C 开发为昆虫控制剂提供基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eada/9414777/dede929e29ef/toxins-14-00514-g001.jpg

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