首页> 外文期刊>Journal of Pest Science >Toxin metabolism potential in Richardson ground squirrels (Spermophilus richardsonii) in the context of chemical control of this pest
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Toxin metabolism potential in Richardson ground squirrels (Spermophilus richardsonii) in the context of chemical control of this pest

机译:理查森地面松鼠(Spermophilus richardsonii)在化学防治该害虫的过程中毒素的代谢潜能

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摘要

Richardson ground squirrels (Spermophilus richardsonii) are prominent pests on the prairies of North America. Rodenticides have been used for their control for several decades, but this pest continues to thrive. In this study we considered the possibility that this apparent lack of success in controlling this pest may be associated with systemic adaptation of Richardson ground squirrels to toxins. Accordingly, we examined the hepatic cytochrome P450 (CYP) enzyme system (phase I biotransformation) in Richardson ground squirrels selected from fields where rodenticides were used (exposed) and from fields where no toxins were distributed (na?ve). We found that the content and activity of individual components of the CYP system including CYP, cytochrome b5, and NADPH–CYP reductase in liver microsomes were higher in exposed Richardson ground squirrels than in na?ve Richardson ground squirrels. In vitro CYP-mediated activities for generic substrates representing major groups of reactions were found to be highly variable among individuals. However, systemic activity was comparable among the na?ve and exposed Richardson ground squirrels. These findings indicate that Richardson ground squirrels may readily develop resistance to toxins by enhancing the functional capacity of enzymes responsible for detoxification. Therefore, it is important to carefully monitor the efficiency of toxicological methods of Richardson ground squirrels control and to revise management strategies accordingly.
机译:理查森地面松鼠(Spermophilus richardsonii)是北美大草原上的重要害虫。杀鼠剂已被用来控制它们数十年,但这种害虫仍在不断繁殖。在这项研究中,我们考虑了这种控制病虫害的明显缺乏成功可能与Richardson地松鼠对毒素的系统适应有关的可能性。因此,我们检查了Richardson地松鼠的肝细胞色素P450(CYP)酶系统(I期生物转化),该地鼠选自使用杀鼠剂的田地(暴露)和未分配毒素的田地(幼稚)。我们发现暴露的Richardson地松鼠的肝脏微粒体中CYP系统各个组成部分的含量和活性(包括CYP,细胞色素b5和NADPH-CYP还原酶)比天然Richardson地松鼠的含量高。已发现代表主要反应组的通用底物的体外CYP介导活性在个体之间差异很大。但是,幼稚和裸露的理查森地松鼠的全身活动相当。这些发现表明,理查森地面松鼠可能会通过增强负责排毒的酶的功能能力而轻易产生对毒素的抗性。因此,重要的是仔细监测理查森地松鼠控制的毒理学方法的效率,并相应地修改管理策略。

著录项

  • 来源
    《Journal of Pest Science》 |2009年第3期|273-281|共9页
  • 作者单位

    Department of Animal and Poultry Science University of Saskatchewan 6D34 Agriculture Building 51 Campus Drive Saskatoon S7N 5A8 SK Canada;

    College of Pharmacy and Nutrition University of Saskatchewan Saskatoon S7N 5A8 SK Canada;

    Department of Animal and Poultry Science University of Saskatchewan 6D34 Agriculture Building 51 Campus Drive Saskatoon S7N 5A8 SK Canada;

    Department of Animal and Poultry Science University of Saskatchewan 6D34 Agriculture Building 51 Campus Drive Saskatoon S7N 5A8 SK Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Richardson ground squirrel; Cytochrome P450; Gender; Na?ve; Exposed; Pest control;

    机译:Richardson地松鼠;细胞色素P450;性别;幼稚;暴露;害虫防治;

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