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杀螟硫磷,一种有机磷酸酯,会影响肥尾袋鼩(粗尾袋鼩)的跑步耐力,但不影响其有氧能力。

Fenitrothion, an organophosphate, affects running endurance but not aerobic capacity in fat-tailed dunnarts (Sminthopsis crassicaudata).

作者信息

Buttemer William A, Story Paul G, Fildes Karen J, Baudinette Russell V, Astheimer Lee B

机构信息

Department of Biological Sciences and The Institute for Conservation Biology, University of Wollongong, Wollongong, NSW, Australia.

出版信息

Chemosphere. 2008 Jul;72(9):1315-20. doi: 10.1016/j.chemosphere.2008.04.054. Epub 2008 Jun 10.

DOI:10.1016/j.chemosphere.2008.04.054
PMID:18547601
Abstract

We measured aerobic metabolism during cold exposure and exercise performance (run duration and oxygen consumption while running at 1 m s(-1)) in the fat-tailed dunnart Sminthopsis crassicaudata, a dasyurid marsupial, before and after ingestion of 30 mg kg(-1) of fenitrothion, an organophosphate (OP) pesticide. Running endurance of OP-exposed animals was less than half that of control animals over the first 3 days after dosing and 55% of control animal endurance on day 5 post-dose. Despite these declines, peak metabolic rate at this running speed (9.3 times basal metabolic rate; BMR) was unaffected by OP exposure. Peak metabolic rate (PMR) and cumulative oxygen consumption during a 1-h exposure to conditions equivalent to -20 degrees C did not differ between OP-treated and control dunnarts, with PMR averaging 11 times BMR. We conclude that fenitrothion-induced exercise fatigue is not due to limitations in oxygen or substrate delivery to muscle or in their uptake per se, but more likely relates to decreased ability to sustain high-frequency neuromuscular function. The persistence of locomotor impairment following OP exposure in otherwise asymptomatic animals emphasizes the importance of using performance-based measures when characterising sublethal effects of pesticide exposure in an ecological context.

摘要

我们在摄入30毫克/千克的杀螟硫磷(一种有机磷农药)之前和之后,测量了肥尾袋鼬(一种袋鼬科有袋动物)在冷暴露期间的有氧代谢以及运动表现(跑步持续时间和以1米/秒速度跑步时的耗氧量)。在给药后的前3天,接触有机磷农药的动物的跑步耐力不到对照动物的一半,在给药后第5天为对照动物耐力的55%。尽管出现了这些下降,但在这个跑步速度下的峰值代谢率(9.3倍基础代谢率;BMR)不受有机磷农药暴露的影响。在暴露于相当于-20摄氏度的条件下1小时期间,经有机磷农药处理的袋鼬和对照袋鼬的峰值代谢率(PMR)和累积耗氧量没有差异,PMR平均为基础代谢率的11倍。我们得出结论,杀螟硫磷引起的运动疲劳不是由于氧气或底物向肌肉的输送或其本身摄取的限制,而更可能与维持高频神经肌肉功能的能力下降有关。在其他方面无症状的动物中,有机磷农药暴露后运动障碍的持续存在强调了在生态背景下表征农药暴露的亚致死效应时使用基于性能的测量方法的重要性。

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