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Short-term metal accumulation and MTLP induction in the digestive glands of Perna virdis exposed to Zn and Cd

机译:short-term metal accumulation and mTLp induction in the digestive glands of perna virdis exposed to Zn and Cd

摘要

Time-dependent Zn and Cd accumulation and metallothionein like protein (MTLP) induction in the digestive glands of mussels, Perna virdis, were measured under different exposure conditions. The initial uptake rate at start of chase (rho(0)) and mean residence time (tau) were calculated to determine the physiological response of organisms and their potential detoxification mechanisms. It was found that in digestive glands, Zn had obviously higher rho(0) and shorter mean residence time than Cd, indicating that these two metals had different accumulation dynamics even though they were very close in the periodic element table. MTLP levels in digestive glands varied from 0.51 to 1.05 mu g/g ww (wet weight). The MTLP level increased continuously when mussels were exposed to low and middle levels of Zn and Cd media, and reached maximal levels at day 4, then decreased when they were exposed to high level Zn and Cd solutions. With regard to the fraction of Zn and Cd accumulated in the digestive glands, the ratios of soluble metal to total metal decreased continuously after exposure in low and middle levels of Zn and Cd media, and decreased continuously in the first 4 days and then to level off when mussels were exposed to media with high concentration of Zn and Cd. Results suggested that both MTLP induction and metal insolubilization were detoxification processes in digestive glands of mussels.
机译:在不同的暴露条件下,对贻贝的消化腺中随时间变化的锌和镉积累以及金属硫蛋白样蛋白(MTLP)诱导进行了测量。追逐开始时的初始摄取率(rho(0))和平均停留时间(tau)用于确定生物体的生理反应及其潜在的排毒机制。结果发现,在消化腺中,Zn的rho(0)明显比Cd高,平均停留时间短,这表明这两种金属即使在元素周期表中都非常接近,其累积动力学也不同。消化腺的MTLP水平在0.51至1.05μg / g ww(湿重)之间变化。当贻贝暴露于低水平和中等水平的Zn和Cd培养基时,MTLP水平持续升高,并在第4天达到最高水平,然后当它们暴露于高水平的Zn和Cd溶液时降低。关于在消化腺中积累的Zn和Cd的比例,在中低水平的Zn和Cd介质中暴露后,可溶性金属与总金属的比率连续下降,在开始的4天中持续下降,然后下降到水平。当贻贝暴露于高浓度的Zn和Cd介质中时会熄灭。结果表明,在贻贝的消化腺中,MTLP诱导和金属增溶都是排毒过程。

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