Exposure to Cyantraniliprole Adversely Impacts Fitness of Harmonia axyridis: Acute Toxicity and Sublethal Effects on Development, Fecundity and Antioxidant Responses.

IF 2.7 2区 农林科学 Q1 ENTOMOLOGY
Insects Pub Date : 2024-10-06 DOI:10.3390/insects15100773
Tianshu Zhang, Yongda Yuan, Haiyuan Teng, Dongsheng Wang, Haotian Gu
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Abstract

Extensive utilization of pesticides and their persistent residues inadvertently pose threats to the effectiveness and fitness of biocontrol agents in agroecosystems. However, these ecological consequences are generally disregarded when executing integrated pest management strategies (IPM). Cyantraniliprole (CNAP) serves as a wide-spectrum diamide insecticide and its sublethal effects have been well characterized on multiple insect pests, whereas its impacts on beneficial natural enemies remain unfathomed. Herein we exposed Harmonia axyridis, a predacious generalist, to lethal and sublethal concentrations of CNAP via dipping treatment (egg stage) and topical applications (1st-instar stage + adult stage). The acute toxicity tests revealed that LC50 of CNAP were 90.11, 86.11 and 240.50 mg/L against embryos, 1st instar nymphs and female adults, respectively, with safety factors ranging from 1.14 to 5.34, suggesting its medium toxicity for H. axyridis and larval stage was the most susceptible. The embryonic, larval and pupal durations of coccinellids ecdysed from CNAP-treated eggs and 1st instars were all elongated under sublethal concentrations, of which LC30 triggered more pronounced and significant retardations relative to control. Besides, exposed coccinellids displayed substantially diminished pupal mass and pupation rate, most notably for insects molted from the 1st-instar stage upon CNAP sublethal treatments. With respect to reproductive performance, LC10 and LC30 of CNAP all significantly suppressed female fecundity, as evidenced by reduced vitellin content, a prolonged pre-oviposition period (POP), mitigated laid eggs and the egg hatching rate. Specifically, there existed positive correlations between vitellin level (Vn) and number of eggs deposited by per female, indicative of CNAP affecting fecundity by regulation of Vn. In addition, the antioxidant system was also profoundly disrupted by CNAP, with compromised POD activity at different concentrations over time and induced hormesis of SOD/CAT activities post LC10 exposure. Activities of SOD and TAC were enhanced to exert protective functions during the first 48 h, while defense collapsed at 72 h following LC30 treatments that depleted all enzymatic activities. We speculated that fitness trade-offs may occur between reproductive capacity and antioxidant defenses to sustain physiological homeostasis in response to CNAP stress. Collectively, this study evaluated the ecological risk of CNAP and unmasked its adverse implications for overall fitness of H. axyridis, which highlighted rational application of agrochemicals to conserve biocontrol agents when implementing IPM strategies for sustainable pest control.

暴露于氰虫腈会对 Harmonia axyridis 的体质产生不利影响:急性毒性和亚致死效应对发育、繁殖力和抗氧化反应的影响。
杀虫剂的广泛使用及其持久残留无意中对农业生态系统中生物控制剂的有效性和适应性构成了威胁。然而,在执行虫害综合防治战略(IPM)时,这些生态后果通常被忽视。氰虫酰胺(CNAP)是一种广谱二酰胺类杀虫剂,其对多种害虫的亚致死效应已经得到了很好的描述,但其对有益天敌的影响仍有待研究。在此,我们通过浸渍处理(卵期)和局部施用(一龄幼虫期+成虫期)的方式,将捕食性天敌 Harmonia axyridis 暴露于致死和亚致死浓度的 CNAP。急性毒性试验表明,CNAP 对胚胎、1龄若虫和雌成虫的半数致死浓度分别为 90.11、86.11 和 240.50 毫克/升,安全系数为 1.14 至 5.34,表明其对 H. axyridis 具有中等毒性,幼虫阶段最易受影响。在亚致死浓度下,经CNAP处理的茧丝虫卵和1龄幼虫的胚胎期、幼虫期和化蛹期均有所延长,其中LC30的延缓作用相对于对照组更为明显和显著。此外,暴露于 CNAP 亚致死浓度下的茧丝虫的蛹质量和化蛹率也大幅降低,尤其是蜕皮后的初生幼虫。在繁殖性能方面,CNAP的LC10和LC30浓度均显著抑制了雌虫的繁殖力,表现为卵黄素含量降低、卵着床前期(POP)延长、产卵量减少和卵孵化率降低。具体而言,卵黄素含量(Vn)与每只雌鱼的产卵数量呈正相关,表明 CNAP 通过调节卵黄素含量影响繁殖力。此外,CNAP 还严重破坏了抗氧化系统,不同浓度下的 POD 活性随时间而降低,LC10 暴露后的 SOD/CAT 活性也受到诱导。在最初的 48 小时内,SOD 和 TAC 的活性得到增强,发挥了保护功能,而在 LC30 处理后的 72 小时内,所有酶活性耗尽,防御功能崩溃。我们推测,在应对CNAP胁迫时,生殖能力和抗氧化防御能力之间可能会发生适应性权衡,以维持生理平衡。总之,本研究评估了 CNAP 的生态风险,揭示了其对 H. axyridis 整体适应性的不利影响,强调了在实施虫害可持续控制的 IPM 战略时,合理应用农用化学品以保护生物控制剂。
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
Insects
Insects Agricultural and Biological Sciences-Insect Science
CiteScore
5.10
自引率
10.00%
发文量
1013
审稿时长
21.77 days
期刊介绍: Insects (ISSN 2075-4450) is an international, peer-reviewed open access journal of entomology published by MDPI online quarterly. It publishes reviews, research papers and communications related to the biology, physiology and the behavior of insects and arthropods. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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