Bioaccumulation of heavy metals in cane rat (Thryonomys swinderianus) in Ogun State, Nigeria

D. A. Soewu, O. Agbolade, R. Oladunjoye, I. A. Ayodele
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引用次数: 10

Abstract

Wild animals have provided complimentary protein for human populations across the world over the centuries. This study investigated on bioaccumulation of heavy metals in different organs of cane rat (Thryonomys swinderianus) and the health implications of its consumption. Four carcasses were collected from each of the four ecotomes (Mosinmi, Agbara, Omo forest reserve and Ibese) and concentrations of 7 heavy metals (Fe, Cu, Cd, Pb, Mn, Cr, Zn) were examined in four organs (skin, liver, lung and kidney) from each specimen used by Atomic Absorption Spectrophotometer. Analysis of variance revealed no significant difference (P>0.05) in the concentration of metals in the animal except Fe  and  Cu,  while  significant  variation  exists  when  specimens  were  compared  across  different ecotomes. Total mean concentrations were Fe (400.512±60.0107), Cu (8.569±1.0396), Cd (0.06±0.040), Pb (0.3156±0.1175), Mn (9.4200±1.0383), Cr (1.3013±0.2739) and Zn (72.771±10.5672). Average mean concentration for all the metals in the study area was found to be higher than the recommended level which suggests that consumption of animals from this ecotomes are hazardous to human health and no single organ is completely safe for human consumption.   Key words: Bioaccumulation, Thryonomys swinderianus, cane rat, bush meat, heavy metals, wildlife consumption, animal toxicity.
尼日利亚奥贡州甘蔗大鼠(Thryonomys swinderianus)重金属的生物积累
几个世纪以来,野生动物为世界各地的人类提供了免费的蛋白质。本研究探讨了甘蔗大鼠(Thryonomys swinderianus)不同器官中重金属的生物积累及其对健康的影响。采用原子吸收分光光度计对4个生态群落(Mosinmi、Agbara、Omo森林保护区和Ibese)各采集4具尸体,检测皮肤、肝脏、肺和肾脏中7种重金属(Fe、Cu、Cd、Pb、Mn、Cr、Zn)的含量。方差分析显示,除铁和铜外,动物体内各金属的浓度差异不显著(P>0.05),但不同经济组间的标本比较存在显著差异。总平均浓度为Fe(400.512±60.0107)、Cu(8.569±1.0396)、Cd(0.06±0.040)、Pb(0.3156±0.1175)、Mn(9.4200±1.0383)、Cr(1.3013±0.2739)、Zn(72.771±10.5672)。研究地区所有金属的平均浓度被发现高于建议水平,这表明食用来自该地区的动物对人类健康有害,没有一个器官对人类食用是完全安全的。关键词:生物蓄积,猪鞭虫,藤鼠,丛林肉,重金属,野生动物消耗,动物毒性
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