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首页> 外文期刊>Aquatic Toxicology >Biochemical biomarker responses of green-lipped mussel, Perna canaliculus, to acute and subchronic waterborne cadmium toxicity
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Biochemical biomarker responses of green-lipped mussel, Perna canaliculus, to acute and subchronic waterborne cadmium toxicity

机译:绿唇贻贝Perna canaliculus对急性和亚慢性水生镉毒性的生化生物标志物响应

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摘要

The biochemical responses of the green-lipped mussel, Perna canaliculus, to waterborne cadmium (Cd) were investigated in order to delineate toxic mechanisms, and the impacts of exposure dose and duration, of this important toxicant in a potential sentinel species. Mussels were exposed for either 96 h (acute: 0, 2000, 4000 mu g L-1 Cd) or for 28 d (subchronic: 0, 200, 2000 mu g L-1 Cd), and the digestive gland, gill and haemolymph were examined for impacts. Biochemical responses measured included those associated with metal detoxification (metallothionein-like protein; MTLP), oxidative stress (catalase, lipid peroxidation), cellular homeostasis (alkaline phosphatase, Na+, K+-ATPase; NKA), and energy utilisation (glycogen, haemolymph protein). Following acute exposure, digestive gland glycogen and gill NKA activity were significantly altered by Cd exposure relative to levels in mussels exposed to Cd-free seawater. Subchronic Cd exposure resulted in a significant increase in MTLP levels in both the gill and the digestive gland. This increase was correlated strongly with the levels of Cd accumulation measured in these tissues (R = 0.957 for gill, 0.964 for digestive gland). Catalase activity followed a similar pattern, although the correlation with tissue Cd accumulation was not as strong (R = 0.907 for gill, 0.708 for digestive gland) as that for MTLP. Lipid peroxidation increased in the digestive gland at Days 7 and 14 at both subchronic Cd levels tested, but this effect had largely dissipated by Days 21 and 28 (with the exception of the 2000 mu g L-1 group at Day 28). Alkaline phosphatase activity decreased significantly with Cd exposure in both tissues. This effect was observed at both tested concentrations in the gill, but only at the highest concentration for digestive gland. A decrease in digestive gland glycogen levels was observed in Cd-exposed mussels (Days 14 and 21 at 2000 mu g L-1), while haemolymph protein levels increased as a result of subchronic Cd exposure. These findings indicated that biochemical responses in Cd-exposed mussels were tissue-specific, dose- and time-dependent, with duration of exposure being the predominant effect. This study shows that biochemical changes in Cd-exposed green-lipped mussels can be linked to tissue metal accumulation and are consistent with previously reported physiological effects. It also suggests that green-lipped mussels are amenable to a multiple biomarker approach and may be of use as a bioindicator species for monitoring coastal metal pollution. (C) 2013 Elsevier B.V. All rights reserved.
机译:为了确定潜在的前哨物种中这种重要毒物的毒性机理以及暴露剂量和持续时间的影响,对绿唇贻贝Perna canaliculus对水性镉(Cd)的生化反应进行了研究。贻贝暴露96 h(急性:0,2000,4000μgL-1 Cd)或28 d(亚慢性:0,200,2000μgL-1 Cd)以及消化腺,ill和血淋巴。被检查的影响。测得的生化反应包括与金属排毒(金属硫蛋白样蛋白; MTLP),氧化应激(过氧化氢酶,脂质过氧化),细胞稳态(碱性磷酸酶,Na +,K + -ATPase; NKA)和能量利用(糖原,血淋巴蛋白)相关的反应。 )。急性暴露后,相对于暴露于无镉海水中的贻贝的水平,镉暴露会显着改变消化腺糖原和g NKA活性。亚慢性镉暴露导致the和消化腺的MTLP水平显着增加。这种增加与在这些组织中测得的Cd积累水平密切相关(g为R = 0.957,消化腺为R = 0.964)。过氧化氢酶活性遵循相似的模式,尽管与组织镉积累的相关性不如MTLP强((= 0.907,消化腺为0.708)。在两个亚慢性镉水平下,消化腺的脂质过氧化作用在第7天和第14天都增加了,但是这种作用在第21天和第28天时已基本消失(第28天的2000μg L-1组除外)。在两个组织中,随着镉的暴露,碱性磷酸酶活性显着下降。在tested的两种测试浓度下都可以观察到这种效果,但是对于消化腺只有在最高浓度下才能观察到这种效果。在暴露于Cd的贻贝中观察到消化腺糖原水平的下降(在2000μg L-1处第14天和第21天),而由于亚慢性Cd暴露,血淋巴蛋白水平增加。这些发现表明,镉暴露的贻贝的生化反应是组织特异性的,剂量和时间依赖性的,而暴露的持续时间是主要的影响。这项研究表明,镉暴露的绿色唇贻贝的生化变化可能与组织金属积累有关,并且与先前报道的生理效应一致。这也表明绿色唇贻贝适合多种生物标记方法,并且可以用作监测沿海金属污染的生物指示物种。 (C)2013 Elsevier B.V.保留所有权利。

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