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苏云金芽孢杆菌以色列变种和球孢白僵菌基于生物杀虫剂对水生昆虫摇蚊的致死和亚致死毒性评估。

Lethal and sublethal toxicity assessment of Bacillus thuringiensis var. israelensis and Beauveria bassiana based bioinsecticides to the aquatic insect Chironomus riparius.

机构信息

Department of Biology & CESAM, University of Aveiro, Portugal.

Faculty of Sciences & CESAM, University of Lisbon, Portugal.

出版信息

Sci Total Environ. 2020 Jan 1;698:134155. doi: 10.1016/j.scitotenv.2019.134155. Epub 2019 Aug 31.

Abstract

Despite being considered environmentally safe, a deeper environmental risk assessment is needed for microbial insecticides; special attention should be devoted to their sublethal toxicity to non-target species. This study evaluated effects of VectoBac® 12AS - VB (based on the bacterium Bacillus thurigiensis var. israelensis) and Naturalis®-L - NL (based on the fungus Beauveria bassiana) on the aquatic insect Chironomus riparius life-history and biochemical responses. Acute tests estimated a 48 h-LC (median lethal concentration) of 1.85 μg/L (VB) and 34.7 mg/L (NL). Under sublethal exposure, VB decreased adults' emergence (LOEC - lowest observed effect concentration of 80 ng/L) while NL impaired larval growth (LOEC of 0.32 mg/L) and delayed emergence (LOEC of 2 mg/L for males and 0.8 mg/L for females). Despite not being monotonic, phenoloxidase activity increased (LOEC of 20 ng/L (VB) and 2 mg/L (NL)), suggesting activation of the immune system. There were no indications of oxidative damage nor neurotoxicity. Catalase activity was stimulated with all VB treatments, possibly associated with detoxification of immune response products. Under NL exposure, glutathione-S-transferase activity increased but did not show a dose-dependent response and, total glutathione decreased in the highest concentration. Exposure to both formulations caused the increase in protein content, while carbohydrate and lipids were not altered. This study revealed the susceptibility of C. riparius to VB and NL at concentrations below the ones recommended for field application, with potential population-level effects. These results add important information for the risk assessment of these microbial insecticides in aquatic ecosystems, considering relevant sublethal endpoints and raising concern about the adverse effects on non-target aquatic organisms.

摘要

尽管微生物杀虫剂被认为对环境安全,但仍需要进行更深入的环境风险评估;特别应注意它们对非靶标物种的亚致死毒性。本研究评估了 VectoBac® 12AS-VB(基于苏云金芽孢杆菌 var. israelensis)和 Naturalis®-L-NL(基于球孢白僵菌)对水生昆虫摇蚊生活史和生化反应的影响。急性试验估计 48 小时 LC(半数致死浓度)分别为 1.85μg/L(VB)和 34.7mg/L(NL)。在亚致死暴露下,VB 降低了成虫的羽化率(最低观察效应浓度为 80ng/L),而 NL 则损害了幼虫的生长(0.32mg/L 的最低观察效应浓度)并延迟了羽化(雄性的最低观察效应浓度为 2mg/L,雌性为 0.8mg/L)。尽管不是单调的,酚氧化酶活性增加(VB 的最低观察效应浓度为 20ng/L,NL 的最低观察效应浓度为 2mg/L),表明免疫系统被激活。没有氧化损伤或神经毒性的迹象。所有 VB 处理均刺激了过氧化氢酶活性,这可能与免疫反应产物的解毒有关。在 NL 暴露下,谷胱甘肽-S-转移酶活性增加,但没有表现出剂量依赖性反应,且在最高浓度下总谷胱甘肽减少。两种制剂的暴露均导致蛋白质含量增加,而碳水化合物和脂质没有改变。本研究表明,摇蚊对 VB 和 NL 的敏感性在低于田间应用推荐浓度的浓度下,可能对种群水平产生影响。这些结果为这些微生物杀虫剂在水生生态系统中的风险评估提供了重要信息,考虑了相关的亚致死终点,并对非靶标水生生物的不利影响表示关注。

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