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首页> 外文期刊>Aquatic Toxicology >Making sense of nickel accumulation and sub-lethal toxic effects in saline waters: Fate and effects of nickel in the green crab, Carcinus maenas
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Making sense of nickel accumulation and sub-lethal toxic effects in saline waters: Fate and effects of nickel in the green crab, Carcinus maenas

机译:理解盐水中的镍积累和亚致死毒性作用:青蟹Carcinus maenas中镍的命运和效应

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摘要

In freshwater, invertebrates nickel (Ni) is considered an ionoregulatory toxicant, but its mechanism of toxicity in marine settings, and how this varies with salinity, is poorly understood. This study investigated Ni accumulation and physiological mechanisms of sub-lethal Ni toxicity in the euryhaline green crab Carcinus maenas. Male crabs were exposed to 8.2 mu g/L(the US EPA chronic criterion concentration for salt waters) of waterborne Ni (radiolabelled with Ni-63) at three different salinities, 20%, 60% and 100% SW for 24 h. Whole body Ni accumulation in 20% SW was 3-5 fold greater than in 60% or 100% SW, and >80% of accumulated Ni was in the carapace at all salinities. Ni also accumulated in posterior gill 8, which showed a higher accumulation in 20% SW than in other salinities, a pattern also seen at higher exposure concentrations of Ni (500 and 3000 mu g/L). Gill perfusion experiments revealed that Ni was taken up by both anterior and posterior gills, but in 20% SW the posterior gill 8, which performs ionoregulatory functions, accumulated more Ni than the anterior gill 5, which primarily has a respiratory function. The sub-lethal consequences of Ni exposure were investigated by placing crabs in Ni concentrations of 8.2, 500, and 3000 mu g/L at 20, 60 or 100% SW for 24 h. In 20% SW, haemolymph Ca levels were significantly decreased by exposure to Ni concentrations of 8.2 mu g/L or higher, whereas Na concentrations were depressed only at 3000 mu g/L. Na+/K+-ATPase activity was inhibited at both 500 and 3000 mu g/L in gill 8, but only in 20% SW. Haemolymph K, Mg, and osmolality were unaffected throughout, though all varied with salinity in the expected fashion. These data suggest that Ni impacts ionoregulatory function in the green crab, in a gill- and salinity-dependent manner. (C) 2015 Elsevier B.V. All rights reserved.
机译:在淡水中,无脊椎动物镍(Ni)被认为是一种离子调节性有毒物质,但人们对其在海洋环境中的毒性机理以及其随盐度的变化了解甚少。本研究调查了在淡水青蟹螃蟹Carenaus maenas中Ni的累积和亚致死性Ni毒性的生理机制。将雄性螃蟹分别在20%,60%和100%SW的三种盐度下暴露于8.2μg / L(美国EPA咸水慢性标准浓度)的水基镍(放射标记有Ni-63)中,持续24小时。 20%SW中的全身Ni积累比60%或100%SW中的Ni积累高3-5倍,并且在所有盐度下,> 80%的Ni积累在甲壳中。镍也积累在后g 8中,后者在20%的SW中比其他盐度具有更高的积累,在较高的镍暴露浓度(500和3000μg / L)下也可以看到这种模式。 ill灌流实验表明,前g和后g都吸收了镍,但是在20%的SW中,执行离子调节功能的后g 8比主要具有呼吸功能的前g 5吸收更多的Ni。通过将镍浓度分别为8.2、500和3000μg / L的螃蟹置于20%,60%或100%SW下24小时,研究了Ni暴露的亚致死后果。在20%的SW中,通过暴露于8.2μg / L或更高的Ni浓度,血淋巴Ca水平显着降低,而Na浓度仅在3000μg / L时降低。 Na + / K + -ATPase活性在g 8和500和3000μg / L均被抑制,但仅在20%SW中被抑制。血淋巴K,Mg和重量克分子渗透压浓度始终未受影响,尽管所有盐度都以预期方式变化。这些数据表明,镍以ill和盐度依赖性的方式影响绿蟹的离子调节功能。 (C)2015 Elsevier B.V.保留所有权利。

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