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Metallothionein mRNA and protein response to arsenite in juvenile winter flounder, Pleuronectes americanus.

机译:少年比目鱼,美洲比目鱼中金属硫蛋白的mRNA和蛋白质对砷的反应。

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The metal-inducible protein, metallothionein (MT), plays an important role in metal homeostasis and detoxification in fish and is a good biomarker candidate of metal impact. Long Island Sound (LIS) winter flounder (Pleuronectes americanus) contain elevated levels of potentially toxic metals. A new PCR-based technique was developed which identified differential MT mRNA responses between adult and juvenile winter flounder exposed to water-borne CdCl{dollar}sb2{dollar}. Subcutaneous exposure of juveniles to NaAs{dollar}sp{lcub}3+{rcub}{dollar} ranging from sublethal doses to the LD40 significantly elevated MT regardless of baseline variation in liver MT and metal content. The reduced variance associated with MT measurements makes it a more sensitive indicator of sublethal NaAs{dollar}sp{lcub}3+{rcub}{dollar} exposure than liver As accumulation.; Saturation of the MT response was linked to mortality by correlating the MT dose response maximum to total liver As content. The upper limit of this response ({dollar}sim{dollar}200 ug/g liver) provides a framework for evaluating metal-induced stress among juvenile winter flounder. Fish with high levels of pre-existing MT ({dollar}>{dollar}100 ug/g) exhibited a narrower MT response window such that MT reached a maximum faster than fish with lower levels of pre-existing MT ({dollar}<{dollar}75 ug/g). Pre-existing MT correlated with liver Zn content while metal-induced MT correlated with the exposed metal (Cd or As). This suggests that stress effects may be separated from metal-induced MT in the field by measuring both liver MT and Zn.; The potency of MT induction reflects metal toxicity and this was demonstrated by the stronger MT protein response to CdCl{dollar}sb 2{dollar}, than NaAs{dollar}sp{lcub}3+{rcub}{dollar}. The continued rise in MT mRNA after the MT protein reached a maximum suggests this parameter is a better short-term indicator of high NaAs{dollar}sp{lcub}3+{rcub}{dollar} exposure. Exposure to sublethal doses of NaAs{dollar}sp{lcub}3+{rcub}{dollar} did not significantly elevate liver As content and even very high levels of exposure caused only a transient liver As accumulation. More work is needed to determine whether MT protein remains elevated after liver As returns to baseline. The environmental relevance of MT induction by NaAs{dollar}sp{lcub}3+{rcub}{dollar} and its associations with liver As content can not be determined until liver As is speciated in both baseline and metal-exposed LIS winter flounder.
机译:金属诱导性蛋白金属硫蛋白(MT)在鱼类体内金属稳态和排毒中起着重要作用,并且是金属影响的良好生物标志物候选物。长岛声音(LIS)冬季比目鱼(Pleuronectes americanus)含有较高含量的潜在有毒金属。已开发出一种新的基于PCR的技术,该技术可识别暴露于水基CdCl {dollar} sb2 {dollar}的成年和幼年比目鱼之间的MT MT反应差异。从亚致死剂量到LD40,青少年皮下暴露于NaAs {dol} sp {lcub} 3+ {rcub} {dollar}会显着提高MT,无论肝脏MT和金属含量的基线变化如何。与MT测量值相关的方差减少使其成为亚致死NaAs {dol} sp {lcub} 3+ {rcub} {dol}暴露比肝脏As积累更敏感的指标。通过将MT剂量反应的最大值与总肝As含量相关联,MT反应的饱和度与死亡率相关。此响应的上限(200美元/克肝脏)为评估少年比目鱼中金属诱导的胁迫提供了框架。预先存在MT水平较高的鱼({dollar}> {dollar} 100 ug / g)表现出较窄的MT响应窗口,因此MT的最高达到速度要比较低MT水平的鱼类({dollar} < {美元} 75 ug / g)。预先存在的MT与肝脏锌含量相关,而金属诱导的MT与暴露的金属(Cd或As)相关。这表明,通过测量肝脏的MT和Zn,可以在田间将应力作用与金属诱导的MT分开。 MT诱导的效力反映了金属毒性,这一点可以通过对NaCl {dol} sp {lcub} 3+ {rcub} {dol}的MT蛋白对CdCl {dol} sb 2 {dol}的更强反应来证明。 MT蛋白达到最大值后,MT mRNA的持续升高表明该参数是较高的NaAs {dol} sp {lcub} 3+ {rcub} {dollar}暴露的较好短期指标。暴露于亚致死剂量的NaAs {dol} sp {lcub} 3+ {rcub} {dollar}不会显着升高肝脏As含量,甚至很高的暴露水平也只会引起肝脏As的短暂蓄积。需要更多的工作来确定肝As返回基线后MT蛋白是否仍然保持升高。 NaAs {dollar} sp {lcub} 3+ {rcub} {dollar}诱导MT的环境相关性及其与肝脏As含量的关联直到基线和金属暴露的LIS冬季比目鱼都指定了肝脏As才能确定。

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