基因型和性别会影响温度和低剂量杀虫剂对昆虫存活率的综合影响。

IF 2.9 1区 农林科学 Q1 ENTOMOLOGY
Felipe Martelli, Andre Nogueira Alves, Ying Ting Yang, Philip Batterham, Nina Wedell
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引用次数: 0

摘要

杀虫剂污染和气候变化是导致全球昆虫数量下降的关键因素。然而,这些因素如何相互作用影响昆虫的生存仍不确定。在这项研究中,我们利用黑腹果蝇模型研究了性别和基因型对长期暴露于18 °C和28 °C两种温度下的低杀虫剂反应的影响。我们重点研究了多态基因Cyp6g1,它具有广泛的杀虫剂抗性。我们发现,虽然温度和杀虫剂对易感苍蝇(Cyp6g1-M 等位基因)的死亡率有协同作用,但它们对抗性苍蝇(Cyp6g1-BA 等位基因)的作用却是相加的。在 18 °C时,暴露于杀虫剂的BA苍蝇的死亡率与性别密切相关,而在 28 °C时则没有性别偏差。在不接触杀虫剂的情况下,无论温度如何,BA雌蝇的中位寿命都比雄蝇短,这可能反映了抗性等位基因的代价。令人惊讶的是,在所有基因型中,雌性的 Cyp6g1 基因表达水平均低于雄性,这与它们较高的杀虫剂耐受性形成了鲜明对比。温度和杀虫剂暴露对 Cyp6g1 表达水平的影响较小,这表明还存在其他抗性机制。我们的研究结果表明,高杀虫剂剂量对昆虫死亡率的影响不能用来预测昆虫对低污染剂量的反应,特别是考虑到性别、温度和基因型之间的强烈相互作用时。温度和长期低杀虫剂暴露的综合效应非常复杂,会对昆虫种群动态和生存产生重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genotype and sex affect the combined impact of temperature and low-dose insecticide exposure on insect survival.

Insecticide contamination and climate change are key factors driving the global decline in insect populations. However, how these factors interact to impact insect survival remains uncertain. In this study, we examined the effects of sex and genotype on the response to long-term low insecticide exposure at two temperatures, 18 °C and 28 °C, using the Drosophila melanogaster model. We focused on a polymorphic gene, Cyp6g1, known for conferring broad insecticide resistance. We found that while temperature and insecticide have a synergistic effect on mortality of susceptible flies (Cyp6g1-M allele), they act additively on resistant flies (Cyp6g1-BA allele). And whereas the mortality of BA flies exposed to insecticides is strongly dependent on sex at 18 °C, no sex bias is found at 28 °C. Under no insecticide exposure, BA females showed shorter median lifespan than males regardless of temperature, possibly reflecting a cost associated with the resistant allele. Surprisingly, across all genotypes, females showed lower Cyp6g1 gene expression levels than males, which contrasts with their higher insecticide tolerance. Temperature and insecticide exposure had small effects on Cyp6g1 expression levels, suggesting the presence of additional mechanisms of resistance. Our results indicate that the effect of high insecticide doses on insect mortality cannot be used to predict how insects will respond to low contaminating doses, especially when considering the strong interactions between sex, temperature, and genotype. The combined effects of temperature and long-term low insecticide exposure are complex and can have major impacts on insect population dynamics and survival.

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来源期刊
Insect Science
Insect Science 生物-昆虫学
CiteScore
7.80
自引率
5.00%
发文量
1379
审稿时长
6.0 months
期刊介绍: Insect Science is an English-language journal, which publishes original research articles dealing with all fields of research in into insects and other terrestrial arthropods. Papers in any of the following fields will be considered: ecology, behavior, biogeography, physiology, biochemistry, sociobiology, phylogeny, pest management, and exotic incursions. The emphasis of the journal is on the adaptation and evolutionary biology of insects from the molecular to the ecosystem level. Reviews, mini reviews and letters to the editor, book reviews, and information about academic activities of the society are also published.
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