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农药对水生生态系统中微生物持久性影响的综合研究

A synthesis of the effects of pesticides on microbial persistence in aquatic ecosystems.

作者信息

Staley Zachery R, Harwood Valerie J, Rohr Jason R

机构信息

a Department of Integrative Biology , University of South Florida , Tampa , FL , USA.

出版信息

Crit Rev Toxicol. 2015;45(10):813-36. doi: 10.3109/10408444.2015.1065471. Epub 2015 Nov 13.

Abstract

Pesticides have a pervasive presence in aquatic ecosystems throughout the world. While pesticides are intended to control fungi, insects, and other pests, their mechanisms of action are often not specific enough to prevent unintended effects, such as on non-target microbial populations. Microorganisms, including algae and cyanobacteria, protozoa, aquatic fungi, and bacteria, form the basis of many food webs and are responsible for crucial aspects of biogeochemical cycling; therefore, the potential for pesticides to alter microbial community structures must be understood to preserve ecosystem services. This review examines studies that focused on direct population-level effects and indirect community-level effects of pesticides on microorganisms. Generally, insecticides, herbicides, and fungicides were found to have adverse direct effects on algal and fungal species. Insecticides and fungicides also had deleterious direct effects in the majority of studies examining protozoa species, although herbicides were found to have inconsistent direct effects on protozoans. Our synthesis revealed mixed or no direct effects on bacterial species among all pesticide categories, with results highly dependent on the target species, chemical, and concentration used in the study. Examination of community-level, indirect effects revealed that all pesticide categories had a tendency to reduce higher trophic levels, thereby diminishing top-down pressures and favoring lower trophic levels. Often, indirect effects exerted greater influence than direct effects. However, few studies have been conducted to specifically address community-level effects of pesticides on microorganisms, and further research is necessary to better understand and predict the net effects of pesticides on ecosystem health.

摘要

农药在世界各地的水生生态系统中广泛存在。虽然农药旨在控制真菌、昆虫和其他害虫,但其作用机制往往不够特异,无法防止产生意外影响,例如对非目标微生物种群的影响。包括藻类、蓝细菌、原生动物、水生真菌和细菌在内的微生物构成了许多食物网的基础,并在生物地球化学循环的关键方面发挥作用;因此,必须了解农药改变微生物群落结构的可能性,以保护生态系统服务。本综述考察了关注农药对微生物直接种群水平影响和间接群落水平影响的研究。一般来说,杀虫剂、除草剂和杀菌剂对藻类和真菌物种有不利的直接影响。在大多数研究原生动物物种的研究中,杀虫剂和杀菌剂也有有害的直接影响,不过除草剂对原生动物的直接影响并不一致。我们的综合分析表明,所有农药类别对细菌物种的直接影响不一或没有直接影响,结果高度依赖于研究中使用的目标物种、化学物质和浓度。对群落水平间接影响的考察表明,所有农药类别都有降低较高营养级的趋势,从而减少自上而下的压力并有利于较低营养级。通常,间接影响比直接影响的影响更大。然而,专门针对农药对微生物群落水平影响的研究很少,需要进一步开展研究,以更好地理解和预测农药对生态系统健康的净影响。

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