Acute Toxicity, Oxidative Stress, Toxicity Mechanism, and Degradation Dynamics of Trifluralin in Eisenia foetide (Annelida: Lumbricidae)

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY
Quancheng Zhang, Zemin He, Jun-gang Wang
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引用次数: 1

Abstract

Abstract Trifluralin is a preemergent herbicide that is applied to soil to control annual grasses and broadleaf weeds. It is widely used in cotton, Gossypium hirsutum L., production in China; however, the ecological safety of its continued use is a controversial issue. We studied the interaction of trifluralin and earthworms, Eisenia foetide Savigny (Annelida: Lumbricidae), to provide additional information for assessing the risk of trifluralin to ecological safety in soils. Contact toxicity assays established median lethal concentrations (LC50) of 726.298 µg/L at 24 h, 418.783 µg/L at 48 h, and 82.007 µg/L at 72 h of exposure to trifluralin. Within 24 to 48 h of exposure to trifluralin, antioxidant activity (e.g., superoxide dismutase, catalase, peroxidase) increased in vivo, but by 72 h of exposure the activity was inhibited and, at high concentrations of trifluralin, death occurred. Based on the activity of glutathione S-transferase (GST) and multifunction oxidase (MFO), it appears that GSTs may be involved in the detoxification of trifluralin in vivo, and that MFOs may be the key detoxification enzymes involved. Earthworm degradation of trifluralin shortened the half-life of trifluralin in soil by as much as 1.78 d. These results provide useful information on the toxicity mechanism of trifluralin in earthworms, the role of earthworms in trifluralin degradation, as well as the ecological safety of trifluralin.
氟乐灵对爱森虫的急性毒性、氧化应激、毒性机制及降解动力学
摘要三氟林是一种应用于土壤中防治一年生草本和阔叶杂草的预效除草剂。它广泛应用于棉花、陆地棉、中国生产;然而,其继续使用的生态安全问题一直存在争议。我们研究了氟乐灵与蚯蚓Eisenia foetide Savigny(环节动物门:木材科)的相互作用,为评估氟乐灵对土壤生态安全的风险提供了额外的信息。接触毒性试验确定,氟乐灵暴露24小时时的中位致死浓度(LC50)为726.298µg/L,48小时时为418.783µg/L,72小时时为82.007µg/L。在氟乐灵暴露24至48小时内,体内抗氧化活性(如超氧化物歧化酶、过氧化氢酶、过氧化物酶)增加,但暴露72小时后,活性受到抑制,在高浓度氟乐灵下,出现死亡。根据谷胱甘肽S-转移酶(GST)和多功能氧化酶(MFO)的活性,GSTs可能参与氟乐灵的体内解毒,MFO可能是参与解毒的关键酶。蚯蚓降解氟乐灵使氟乐灵在土壤中的半衰期缩短了1.78d。这些结果为氟乐灵对蚯蚓的毒性机制、蚯蚓在氟乐灵降解中的作用以及氟乐灵的生态安全提供了有用的信息。
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来源期刊
CiteScore
1.20
自引率
11.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: The Journal of Entomological Science (ISSN 0749-8004) is a peer-reviewed, scholarly journal that is published quarterly (January, April, July, and October) under the auspices of the Georgia Entomological Society in concert with Allen Press (Lawrence, Kansas). Manuscripts deemed acceptable for publication in the Journal report original research with insects and related arthropods or literature reviews offering foundations to innovative directions in entomological research
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