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Manganese contamination affects the motor performance of wild northern quolls (Dasyurus hallucatus)

机译:锰污染会影响野生北洋(Dasyurus hallucatus)的运动能力

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Neuromotor deficits are an important sign of manganese (Mn) toxicity in humans and laboratory animals. However, the impacts of Mn exposure on the motor function of wild animals remains largely unknown. Here, we assessed the impact of chronic exposure to Mn from active mining operations on Groote Eylandt, Australia on the motor function of the semi-arboreal northern quoll (Dasyurus hallucatus), an endangered species. The three motor tests conducted-maximum sprint speed on a straight run, manoeuvrability around a corner, and motor control on a balance beam-showed that elevated Mn body burden did not diminish performance of these traits. However, quolls with higher Mn body burden approached a corner at a significantly narrower range of speeds, due to a significantly lower maximum approach speed. Slower speeds approaching a turn may reduce success at catching prey and avoiding predators. Given that maximum sprint speed on a straight run was not affected by Mn body burden, but maximum speed entering a corner was, slower speeds approaching a turn may reflect compensation for otherwise impaired performance in the turn. (C) 2018 Elsevier Ltd. All rights reserved.
机译:神经运动缺陷是人类和实验动物锰(Mn)毒性的重要标志。但是,Mn暴露对野生动物运动功能的影响仍然未知。在这里,我们评估了在澳大利亚Groote Eylandt进行的采矿活动对锰的长期暴露对濒临灭绝物种半乔木北方(Dasyurus hallucatus)运动功能的影响。三种电机测试进行的是直奔时的最大冲刺速度,转弯时的可操纵性以及在平衡木上的电机控制,这些结果表明,锰体负荷增加不会降低这些特性的表现。但是,由于最大进场速度明显降低,锰含量较高的鹌鹑以明显较窄的速度范围接近弯道。接近转弯的较慢速度可能会降低捕获猎物和避开捕食者的成功率。鉴于直奔最高冲刺速度不受锰车身负荷的影响,但进入弯道的最大速度受到影响,因此接近转弯的较慢速度可能反映了转弯性能的补偿。 (C)2018 Elsevier Ltd.保留所有权利。

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