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Impacts of sublethal insecticide exposure on insects - Facts and knowledge gaps

机译:亚致死杀虫剂暴露对昆虫的影响 - 事实与知识差距

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摘要

The biodiversity and biomass of insects is dramatically declining due to various anthropogenic factors. One of these factors is the use of insecticides to protect plants from pests. However, apart from the targeted pest insects, thousands of non-target organisms face traces of insecticides that are not lethal but can affect numerous traits of the individual, including development, physiology, behaviour and communication. In the present review, key facts on impacts of sublethal insecticide exposure on such traits are summarised. Attributable to various abiotic and biotic processes, insecticide concentrations may become sublethal in space and time. Nevertheless, these concentrations impede insect development, reducing growth and survival, but sometimes also enhance reproductive performance. The effects are species-specific, but sensitivity also differs within species depending on the developmental stage, sex and population. Furthermore, insecticide exposure influences several immunity pathways and causes changes in behaviour. Such changes are mostly studied on the level of behavioural traits. However, also effects on the consistency of overall individual behavioural phenotypes, i.e. personalities, should be investigated, which have consequences on individual fitness and on the effectiveness of biocontrol agents. Moreover, insecticides can act as info-disruptors, impeding signal production and perception during chemical communication at various levels. Finally, microbial symbionts may modify insect responses to insecticides, being of particular interest for biotechnological approaches. Here, methodological issues are discussed and knowledge gaps and potential future research directions are highlighted. Understanding the mechanisms of dose-dependent insecticide impacts on organisms and their cascading effects on higher levels of biological organisation and on subsequent generations are of utmost importance for proper insecticide use. (C) 2018 Gesellschaft fur Okologie. Published by Elsevier GmbH. All rights reserved.
机译:由于各种人类因素,昆虫的生物多样性和生物量急剧下降。其中一个因素是使用杀虫剂保护植物免受害虫。然而,除了靶向害虫昆虫之外,数千种非靶毒性面部的杀虫剂的痕迹并不致死,但可以影响个体的许多特征,包括发育,生理学,行为和沟通。在本综述中,总结了对亚麻杀虫剂暴露对这些特征的影响的关键事实。归因于各种非生物和生物过程,杀虫剂浓度可能在空间和时间中变算法。然而,这些浓度阻碍了昆虫发育,降低了生长和生存,但有时也提高了生殖性能。这些效果是特异性的,但敏感性也根据发育阶段,性和人口而异。此外,杀虫剂暴露会影响若干免疫途径,并导致行为的变化。这些变化主要研究了行为性状的水平。然而,对整个个体行为表型的一致性也应调查,即应调查个性,这对个体健康以及生物防治药物的有效性产生了后果。此外,杀虫剂可以充当信息破坏者,在各种水平的化学沟通过程中阻碍信号产生和感知。最后,微生物共生可能会对杀虫剂进行修饰,对生物技术方法特别感兴趣。在这里,讨论了方法问题,并且突出了知识差距和潜在的未来研究方向。了解对生物体的剂量依赖性杀虫剂的影响及其对更高水平的生物组织和随后世代的级联影响,对于适当的杀虫剂使用来说是至关重要的。 (c)2018 Gesellschaft毛皮okogie。由elsevier GmbH发布。版权所有。

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