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首页> 外文期刊>Chemosphere >Acute toxicity, accumulation and sublethal effects of four neonicotinoids on juvenile Black Tiger Shrimp (Penaeus monodon)
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Acute toxicity, accumulation and sublethal effects of four neonicotinoids on juvenile Black Tiger Shrimp (Penaeus monodon)

机译:少年黑虎虾(Penaeus Monodon)急性毒性,累积和致重术对青少年黑虎虾(Penaeus Monodon)

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摘要

Neonicotinoid pesticides have been detected in aquatic habitats, and exposure may impact the health of aquatic organisms such as commercially-important crustaceans. Black Tiger Shrimp (Penaeus monodon) is a broadly distributed and high-value shrimp species that rely on estuaries for early life stages. Differences in the acute toxicity and accumulation of different neonicotinoids in tissues of commercial crustaceans have not been widely investigated. This study compared acute toxicity, uptake, and depuration of four neonicotinoids; thiamethoxam, clothianidin, acetamiprid, and imidacloprid, on juvenile P. monodon and their effects on enzyme biomarkers. Acute toxicity (48-h LC50) was determined as 190 mg L-1 (clothianidin), 390 mg L-1 (thiamethoxam), 408 mg L-1 (imidacloprid), and 500 mg L-1(acetamiprid). To assess uptake and elimination, shrimp were exposed to a fixed 5 mg L-1 water concentration for eight days (uptake) or four days of exposure followed by four days of depuration (elimination). Neonicotinoid water and tissue concentrations were measured by liquid chromatographymass spectrometry following solid-phase extraction and QuEChER extraction respectively. The lower toxicity associated with acetamiprid could be associated with lower accumulation in the tissue, with concentrations remaining below 0.01 mg g(-1). The activity of acetylcholinesterase, catalase and glutathione S-transferase in abdominal tissues was determined by spectrophotometric assay, with significant sublethal effects detected for all four neonicotinoids. Depuration reduced the tissue concentration of the active ingredient and reduced the activity of oxidative stress enzymes. Given acetamiprid showed no acute toxicity and reduced impact on the enzymatic activity of P. monodon, it may be an appropriate alternative to other neonicotinoids in shrimp producing areas. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在水生环境已检测到新烟碱类杀虫剂,并且曝光可能影响水生生物如商业重要的甲壳类动物的健康。黑虎虾(斑节对虾)是一个广泛分布和高价值的虾种依赖河口早期生命阶段。急性毒性和商业甲壳类动物的组织不同的新烟碱类的积累差异并没有被广泛研究。该研究比较了急性毒性,摄入,和四个新烟碱类净化;噻虫嗪,噻虫胺,啶虫脒,吡虫啉和关于少年斑节对虾以及它们对酶的生物标志物的影响。急性毒性(48小时LC50)被确定为190毫克的L-1(噻),390毫克的L-1(噻虫嗪),408毫克的L-1(吡虫啉),和大于500毫克的L-1(啶虫脒)。为了评估吸收和消除,虾暴露于固定的5毫克L-1的水浓度八天(摄取)或曝光四天,随后净化(去除)的四天。新烟碱类水和组织浓度通过以下分别固相萃取和QuEChER提取液体色谱 - 质谱测定。啶虫脒与相关联的更低的毒性可以与在组织中积累降低相关联,剩余低于0.01毫克克(-1)的浓度。在腹部组织乙酰胆碱酯酶,过氧化氢酶和谷胱甘肽S-转移酶的活性通过分光光度测定中,与所有四个新烟碱类检测显著亚致死效应来确定。净化降低活性成分的组织浓度和降低的氧化应激的酶的活性。鉴于脒没有显示急性毒性和降低的对斑节对虾的酶活性的影响,它可以是虾产区的适当替代其他新烟碱类。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2021年第7期|129918.1-129918.12|共12页
  • 作者单位

    Southern Cross Univ Marine Ecol Res Ctr POB 157 Lismore NSW 2480 Australia|Southern Cross Univ Natl Marine Sci Ctr Coffs Harbour NSW 2450 Australia;

    Southern Cross Univ Marine Ecol Res Ctr POB 157 Lismore NSW 2480 Australia|Southern Cross Univ Natl Marine Sci Ctr Coffs Harbour NSW 2450 Australia;

    Port Stephens Fisheries Inst NSW Dept Primary Ind Locked Bag 1 Nelson Bay NSW 2315 Australia;

    Southern Cross Univ Natl Marine Sci Ctr Coffs Harbour NSW 2450 Australia;

    Southern Cross Univ Marine Ecol Res Ctr POB 157 Lismore NSW 2480 Australia|Southern Cross Univ Natl Marine Sci Ctr Coffs Harbour NSW 2450 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pesticides; Exposure risk; Chemical residues; Estuary; Accumulation; Depuration; Sublethal impacts;

    机译:杀虫剂;曝光风险;化学残留物;河口;积累;剩余的影响;亚偶;

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