Biogeochemistry Group, National Centre for Earth Science Studies (NCESS), Akkulam, Thiruvananthapuram, Kerala, India.
Biogeochemistry Group, National Centre for Earth Science Studies (NCESS), Akkulam, Thiruvananthapuram, Kerala, India.
Mar Pollut Bull. 2022 Mar;176:113422. doi: 10.1016/j.marpolbul.2022.113422. Epub 2022 Feb 10.
A quinquennial seasonal study (2015-2019) has been conducted to evaluate the bioaccumulation pattern of trace metals in Meretrix meretrix. The concentration of trace metals in the clam was observed as Cr > Cu > Ni > Zn > Pb > Cd > Hg, (Body> Mantle > Gills), similar to sediments. Contamination Factor of Cu and Cr in sediments showed strong association with the corresponding metal concentration in the body (r = 0.687, r = 0.962), mantle (r = 0.880, r = 0.956) and gills (r = 0.937, r = 0.863). Bioconcentration Factor was high for Cr followed by Ni. Mean Metal Concentration Rate (MMCR) of Cr was high and Hg was low (Body>Mantle>Gills). Our study establishes that the trace metal intake by Meretrix meretrix is associated with seasonal variation, physicochemical factors, sediment texture, chemical speciation and the metabolic stress created within the species induced from increased demand for protein synthesis. The latter resulted in the augmented rate of accumulation of Cu and Cr.
本研究开展了一项为期五年的季节性研究(2015-2019 年),旨在评估贻贝(Meretrix meretrix)中痕量金属的生物积累模式。结果表明,贻贝体内痕量金属浓度顺序为 Cr > Cu > Ni > Zn > Pb > Cd > Hg(软体部>套膜部>鳃),与沉积物中的浓度顺序一致。沉积物中 Cu 和 Cr 的污染因子与相应金属在软体部(r = 0.687,r = 0.962)、套膜部(r = 0.880,r = 0.956)和鳃部(r = 0.937,r = 0.863)中的浓度具有强烈的相关性。Cr 的生物浓缩系数较高,其次是 Ni。Cr 的平均金属浓度比率(MMCR)较高,Hg 则较低(软体部>套膜部>鳃)。本研究表明,贻贝对痕量金属的摄入与季节变化、理化因子、沉积物质地、化学形态以及因蛋白质合成需求增加而在物种内产生的代谢压力有关。后者导致 Cu 和 Cr 的积累速率增加。