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首页> 外文期刊>Journal of vector ecology: journal of the Society for Vector Ecology >Effects of a larval mosquito biopesticide and Culex larvae on a freshwater nanophytoplankton (Selenastrum capricornatum) under axenic conditions
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Effects of a larval mosquito biopesticide and Culex larvae on a freshwater nanophytoplankton (Selenastrum capricornatum) under axenic conditions

机译:幼虫蚊生物杀虫剂和库蚊幼虫对缺水条件下淡水纳米浮游植物(Selenastrum capricornatum)的影响

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The effects of microbial biopesticides used for mosquito control on autotrophic microorganisms such as nanophytoplankton are equivocal. We examined impacts of mosquito biopesticides and mosquito larvae on primary producers in two independent experiments. In the first experiment, we examined the effects of a commonly used microbial biopesticide formulation (VectoMax® CG) on a unicellular microalga, Selenastrum capricornatum Printz, under axenic laboratory conditions. The biopesticide treatments included two concentrations (0.008 and 0.016 g liter−1) of VectoMax® CG and two controls (one untreated and another with autoclaved 0.016 g VectoMax® CG liter−1) in replicated axenic experimental microcosms. Spectrophotometric analysis of chlorophyll a (proxy for algal biomass) and direct enumeration of algal cells following the treatments revealed no significant effects of the microbial biopesticide on algal population growth during the four-week study. In the second experiment, we tested the effects of different densities of Culex larvae on the population of S. capricornatum. Effects of mosquito larvae feeding on S. capricornatum were significant with a curvilinear relationship between larval density and algal abundance in the water column. Together, these studies demonstrated a lack of direct cytological/toxicological effects of Bacillus-based microbial pesticides on freshwater primary production and support the hypothesis that the reduction in algal primary production previously reported when Bti products were applied to aquatic environments was likely independent of the Bacillus-based larvicidal toxins. Instead, it was likely mediated by microbial interactions in the water column and the trophic cascade effects that resulted from the removal of larval mosquitoes. These studies suggest that mosquito larvae independent of pesticide application can influence primary production. Our method of evaluating biopesticides against small photoautotrophs can be very useful for studying the unintended effects on autotrophic microorganisms of other pesticides, including herbicides and pesticides applied to aquatic environments.
机译:用于灭蚊的微生物生物农药对诸如纳米浮游植物等自养微生物的影响是模棱两可的。在两个独立的实验中,我们研究了灭蚊剂和杀虫剂对初级生产者的影响。在第一个实验中,我们检查了在微生物实验室条件下,常用的微生物杀虫剂配方(VectoMax®CG)对单细胞微藻,硒环硒虫(Selenastrum capricornatum Printz)的影响。生物农药处理包括在重复的树胶实验微观世界中使用两种浓度(0.008和0.016 g升-1)的VectoMax®CG和两种对照(一种未经处理,另一种采用高压灭菌的0.016 gVectoMax®CG升-1)。处理后的叶绿素a(用于藻类生物量的代理)的分光光度分析和藻类细胞的直接计数表明,在为期四周的研究中,微生物杀虫剂对藻类种群的生长没有显着影响。在第二个实验中,我们测试了不同密度的库蚊幼虫对山羊草链球菌种群的影响。取食蚊虫幼虫对摩cap链球菌的影响是显着的,在水柱中幼虫密度与藻类丰度之间存在曲线关系。总之,这些研究表明,基于芽孢杆菌的微生物农药对淡水初级生产缺乏直接的细胞学/毒理作用,并支持以下假设:先前报道的将Bti产品应用于水生环境时藻类初级生产的减少可能与芽孢杆菌无关的幼虫毒素。取而代之的是,它很可能是由水柱中的微生物相互作用以及幼虫灭除引起的营养级联效应介导的。这些研究表明,与杀虫剂施用无关的蚊虫幼虫可以影响初级生产。我们评估生物农药对小型光合自养生物的方法,对于研究其他农药(包括除草剂和应用于水生环境的农药)对自养微生物的意外影响非常有用。

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