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啶虫脒会通过抑制卵黄原蛋白表达和捕食活性对异色瓢虫的生物学特性产生不利影响。

Sulfoxaflor adversely influences the biological characteristics of Coccinella septempunctata by suppressing vitellogenin expression and predation activity.

机构信息

Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Ministry of Agriculture and Rural Affairs, Beijing 100193, China; College of Plant Protection, Henan Agricultural University, Zhengzhou 450002, China.

Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Ministry of Agriculture and Rural Affairs, Beijing 100193, China.

出版信息

J Hazard Mater. 2023 Apr 5;447:130787. doi: 10.1016/j.jhazmat.2023.130787. Epub 2023 Jan 13.

Abstract

Sulfoxaflor is a widely used sulfoximine insecticide that has been regarded as an important alternative insecticide for IPM strategies, but a comprehensive study of its potential ecological toxicity is still lacking. In the present work, the growth, longevity, predation and reproduction toxicity of Coccinella septempunctata caused by sulfoxaflor were evaluated. In addition, the potential mechanisms of decreased fecundity in C. septempunctata were investigated by analyzing the transcriptional and protein levels of reproduction-related gene vitellogenin (Vg). In a 20-day acute contact toxicity test, decreased survival proportion, pupation rate, adult emergence ratio, and increased hazard quotient (HQ) values were observed. Moreover, sublethal dosages of sulfoxaflor significantly inhibited the predation, longevity, fecundity and net reproduction rate of progeny. In addition, LR of sulfoxaflor dramatically down-regulate the mRNA-expression (F: 65.38-fold, F: 2.24-fold) and protein content (F: 1.35-fold, F: 1.36-fold) of Vg in the F and F generations. These results suggested that sulfoxaflor could inhibit the gene and protein content of Vg, thereby reducing the fecundity of C. septempunctata. Our study indicated that sulfoxaflor has potential risks to parent and progeny generations of C. septempunctata. These results provide valuable reference for optimal usage of sulfoxaflor in IPM systems.

摘要

啶虫脒是一种广泛使用的亚砜亚胺类杀虫剂,被认为是 IPM 策略的重要替代杀虫剂,但对其潜在生态毒性的综合研究仍很缺乏。本研究评价了啶虫脒对异色瓢虫生长、寿命、捕食和繁殖毒性的影响,同时通过分析与繁殖相关基因卵黄原蛋白(Vg)的转录和蛋白水平,研究了其导致异色瓢虫繁殖力下降的潜在机制。在 20 天的急性接触毒性试验中,观察到啶虫脒导致异色瓢虫的存活率、化蛹率、成虫羽化率降低,危害商值(HQ)值升高。此外,亚致死剂量的啶虫脒显著抑制了后代的捕食、寿命、繁殖力和净生殖率。此外,啶虫脒对 F 和 F 代 Vg 的 mRNA 表达(F:65.38 倍,F:2.24 倍)和蛋白含量(F:1.35 倍,F:1.36 倍)具有显著的下调作用。这些结果表明,啶虫脒可以抑制 Vg 的基因和蛋白含量,从而降低异色瓢虫的繁殖力。本研究表明,啶虫脒对异色瓢虫的亲代和子代具有潜在风险。这些结果为在 IPM 系统中优化使用啶虫脒提供了有价值的参考。

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