The impact of selenium on insects.

IF 2.2 2区 农林科学 Q1 ENTOMOLOGY Journal of Economic Entomology Pub Date : 2023-08-10 DOI:10.1093/jee/toad084
John So, Dong-Hwan Choe, Michael K Rust, John T Trumble, Chow-Yang Lee
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引用次数: 1

Abstract

Selenium, a naturally occurring metalloid, is an essential trace element for many higher organisms, including humans. Humans primarily become exposed to selenium by ingesting food products containing trace amounts of selenium compounds. Although essential in these small amounts, selenium exhibits toxic effects at higher doses. Previous studies investigating the effects on insects of order Blattodea, Coleoptera, Diptera, Ephemeroptera, Hemiptera, Hymenoptera, Lepidoptera, Odonata, and Orthoptera revealed impacts on mortality, growth, development, and behavior. Nearly every study examining selenium toxicity has shown that insects are negatively affected by exposure to selenium in their food. However, there were no clear patterns of toxicity between insect orders or similarities between insect species within families. At this time, the potential for control will need to be determined on a species-by-species basis. We suspect that the multiple modes of action, including mutation-inducing modification of important amino acids as well as impacts on microbiome composition, influence this variability. There are relatively few studies that have examined the potential effects of selenium on beneficial insects, and the results have ranged from increased predation (a strong positive effect) to toxicity resulting in reduced population growth or even the effective elimination of the natural enemies (more common negative effects). As a result, in those pest systems where selenium use is contemplated, additional research may be necessary to ascertain if selenium use is compatible with key biological control agents. This review explores selenium as a potential insecticide and possible future directions for research.

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硒对昆虫的影响。
硒是一种天然存在的类金属,是包括人类在内的许多高等生物必需的微量元素。人类接触硒主要是通过摄入含有微量硒化合物的食物。虽然微量硒是必需的,但高剂量的硒显示出毒性作用。以往的研究揭示了其对小翅目、鞘翅目、双翅目、蜉蝣目、半翅目、膜翅目、鳞翅目、翅翅目和直翅目昆虫的死亡率、生长发育和行为的影响。几乎每一项关于硒毒性的研究都表明,接触食物中的硒会对昆虫产生负面影响。然而,在昆虫目之间没有明确的毒性模式或科内昆虫种之间的相似性。在这个时候,控制的潜力将需要在一个物种的基础上确定。我们怀疑多种作用模式,包括重要氨基酸的突变诱导修饰以及对微生物组组成的影响,影响了这种变异性。关于硒对益虫的潜在影响的研究相对较少,其结果从增加捕食(一种强烈的积极影响)到毒性导致种群增长减少甚至有效消除天敌(更常见的负面影响)。因此,在那些考虑使用硒的害虫系统中,可能需要进行额外的研究,以确定硒的使用是否与关键的生物防治剂兼容。本文综述了硒作为潜在杀虫剂的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.60
自引率
9.10%
发文量
198
审稿时长
3-6 weeks
期刊介绍: Journal of Economic Entomology the most-cited entomological journal – publishes articles on the economic significance of insects and other arthropods and includes sections on apiculture & social insects, insecticides, biological control, household & structural insects, crop protection, forest entomology, and more. In addition to research papers, Journal of Economic Entomology publishes Reviews, interpretive articles in a Forum section, Short Communications, and Letters to the Editor. The journal is published bimonthly in February, April, June, August, October, and December.
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Reviewers for Journal of Economic Entomology (November 2022–October 2023) 2-Methoxybenzaldehyde effectively repels ants Phenolic secondary metabolites from Acorus calamus (Acorales: Acoraceae) rhizomes: the feeding deterrents for Spodoptera litura (Lepidoptera: Noctuidae). Sampling Lasioderma serricorne (Coleoptera: Anobiidae) in 2 coffee bean warehouses in New Jersey. Biology and management of hemp russet mite (Acari: Eriophyidae).
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