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Copper Binding Dynamics and Olfactory Impairment in Fathead Minnows (Pimephales promelas)

机译:黑头Fat鱼(Pimephales promelas)中的铜结合动力学和嗅觉障碍。

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摘要

When fish are exposed to sublethal, environmentally relevant Cu concentrations, olfactory acuity is impaired. The goals of the present study were to investigate the binding dynamics of waterborne Cu in the olfactory epithelium (OE), to examine the influence of calcium (Ca~(2+)) on Cu binding, and to link Cu-OE binding to changes in olfactory acuity. Using short-term in vivo waterborne exposures to ~(64)Cu, we found that Cu accumulates rapidly in the OE, reaching a plateau by 3 h. The binding affinity (log K_(cu-oe)) and binding capacity (B_(max)) of ~(64)Cu in the OE were 6.7 and 10.0 nmol Cu g~(-1), respectively. As waterborne Ca~(2+) was increased from 50 to 1000 μM L~(-1) the B_(max) of Cu decreased by ~50% while the log K_(CU_OE) remained constant, indicative of noncompetitive inhibition. Using electro-olfactograms (EOG), short-term exposures to 160 and 240 nmol Cu L~(-1) were found to reduce olfactory responses to 10~(-5) M L-arginine by 72 and 79%, respectively. Short-term exposure to 160 nmol Cu L~(-1) also caused a 15-fold reduction in behavioral responsesto a food stimulus. Interestingly, increasing waterborne Ca~(2+) did not reduce the effects of Cu on EOG or behavioral responses. These results demonstrate that short-term, environmentally realistic concentrations of Cu not only bind to the 0E of fathead minnows but also impair their olfactory sensitivity and behavioral responses to olfactory stimuli. Waterborne Ca~(2+) reduces Cu-OE binding but does not protect against olfactory impairment.
机译:当鱼暴露于与环境相关的亚致死浓度的铜中时,嗅觉敏锐度受到损害。本研究的目的是研究水性铜在嗅觉上皮(OE)中的结合动力学,研究钙(Ca〜(2+))对Cu结合的影响,并将Cu-OE结合与变化联系起来。嗅觉敏锐。使用〜(64)Cu的短期体内水相暴露,我们发现Cu在OE中迅速积累,到3 h达到稳定水平。 OE中〜(64)Cu的结合亲和力(log K_(cu-oe))和结合能力(B_(max))分别为6.7和10.0 nmol Cu g〜(-1)。随着水性Ca〜(2+)从50μML〜(-1)增加,Cu的B_(max)降低约50%,而log K_(CU_OE)保持恒定,表明非竞争性抑制。使用电子嗅觉图(EOG),发现短期暴露于160和240 nmol Cu L〜(-1)可使分别对10〜(-5)M L-精氨酸的嗅觉响应降低72%和79%。短期暴露于160 nmol Cu L〜(-1)也会导致对食物刺激的行为反应降低15倍。有趣的是,增加水中的Ca〜(2+)并不能减少Cu对EOG或行为反应的影响。这些结果表明,短期,对环境现实的浓度的Cu不仅会与黑头min鱼的0E结合,还会削弱它们的嗅觉敏感性和对嗅觉刺激的行为响应。水性Ca〜(2+)减少了Cu-OE的结合,但不能防止嗅觉障碍。

著录项

  • 来源
    《Environmental Science & Technology》 |2010年第4期|1431-1437|共7页
  • 作者单位

    Department of Biology, McMaster University, Hamilton, Ontario, L8S 4K1 Canada Department of Biology, Nipissing University, North Bay, Ontario, P1B 8L7 Canada Department of Biological Sciences, University of Windsor, 401 Sunset Avenue. Windsor, Ontario N9B 3P4 Canada;

    Department of Biology, McMaster University, Hamilton, Ontario, L8S 4K1 Canada Department of Biology, Nipissing University, North Bay, Ontario, P1B 8L7 Canada;

    Department of Biology, McMaster University, Hamilton, Ontario, L8S 4K1 Canada;

    Department of Biology, McMaster University, Hamilton, Ontario, L8S 4K1 Canada Department of Biology, Lakehead University, 955 Oliver Road, Thunder Bay, Ontario P7B 5E1 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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