Sublethal pesticide exposure decreases mating and disrupts chemical signaling in a beneficial pollinator

IF 8.2 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Nathan Derstine, Cameron Murray, Freddy S. Purnell, Etya Amsalem
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Abstract

Pesticides provide vital protection against insect pests and the diseases they vector but are simultaneously implicated in the drastic worldwide decline of beneficial insect populations. Convincing evidence suggests that even sublethal pesticide exposure has detrimental effects on both individual- and colony-level traits, but the mechanisms mediating these effects remained poorly understood. Here, we use bumble bees to examine how sublethal exposure to pesticides affects mating, a key life history event shared by nearly all insects, and whether these impacts are mediated via impaired sexual communication. In insects, mate location and copulation are primarily regulated through chemical signals and rely on both the production and perception of semiochemicals. We show through behavioral bioassays that mating success is reduced in bumble bee gynes after exposure to field-relevant sublethal doses of imidacloprid, and that this effect is likely mediated through a disruption of both the production and perception of semiochemicals. Semiochemical production was altered in gyne and male cuticular hydrocarbons (CHCs), but not in exocrine glands where sex pheromones are presumably produced (i.e., gyne mandibular glands and male labial glands). Male responsiveness to gyne mandibular gland secretion was reduced, but not the queen responsiveness to the male labial secretion. In addition, pesticide exposure reduced queen fat body lipid stores and male sperm quality. Overall, the exposure to imidacloprid affected the fitness and CHCs of both sexes and the antennal responses of males to gynes. Together, our findings identify disruption of chemical signaling as the mechanism through which sublethal pesticide exposure reduces mating success.

Abstract Image

杀虫剂为抵御害虫及其传播的疾病提供了重要保护,但同时也与全世界益虫数量的急剧减少有关。令人信服的证据表明,即使是亚致死剂量的杀虫剂暴露也会对个体和群体的性状产生有害影响,但人们对这些影响的中介机制仍然知之甚少。在这里,我们利用熊蜂来研究亚致死农药暴露如何影响交配(几乎所有昆虫都有的一个关键生活史事件),以及这些影响是否通过受损的性交流来介导。在昆虫中,配偶位置和交配主要通过化学信号来调节,并依赖于半化学物质的产生和感知。我们通过行为生物测定表明,大黄蜂雌蜂在暴露于田间相关亚致死剂量的吡虫啉后,交配成功率会降低,而这种影响很可能是通过干扰半化学物质的产生和感知而介导的。阴性和雄性角质碳氢化合物(CHC)中的半化学物质的产生发生了变化,但可能产生性信息素的外分泌腺(即阴性下颌腺和雄性唇腺)中的半化学物质的产生没有发生变化。雄性对下颌阴腺分泌物的反应降低了,但雌性对雄性唇腺分泌物的反应却没有降低。此外,接触杀虫剂还降低了蜂王体内脂质的储存量和雄性精子的质量。总之,暴露于吡虫啉会影响雌雄两性的体能和CHC,以及雄性对雌性的触角反应。总之,我们的研究结果表明,化学信号的干扰是亚致死农药暴露降低交配成功率的机制。
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来源期刊
Science of the Total Environment
Science of the Total Environment 环境科学-环境科学
CiteScore
17.60
自引率
10.20%
发文量
8726
审稿时长
2.4 months
期刊介绍: The Science of the Total Environment is an international journal dedicated to scientific research on the environment and its interaction with humanity. It covers a wide range of disciplines and seeks to publish innovative, hypothesis-driven, and impactful research that explores the entire environment, including the atmosphere, lithosphere, hydrosphere, biosphere, and anthroposphere. The journal's updated Aims & Scope emphasizes the importance of interdisciplinary environmental research with broad impact. Priority is given to studies that advance fundamental understanding and explore the interconnectedness of multiple environmental spheres. Field studies are preferred, while laboratory experiments must demonstrate significant methodological advancements or mechanistic insights with direct relevance to the environment.
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