Understanding the protective effects of calcium against cadmium toxicity in Daphnia magna: a toxicok

来源 :The 17th International Conference on Heavy Metals in the Env | 被引量 : 0次 | 上传用户:louisvu
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  In fresh waters,calcium(Ca)varies dramatically in concentrations and plays an important role in determining the toxicity of metals,such as Cd.Here,we present several of our studies on the protective effects of Ca against the toxicity of Cd in a freshwater zooplankter Daphnia magna.The radiotracer technique was used to quantify the toxicokinetcis of Cd at different Ca levels,which we consider as a useful tool in better understanding the protective effects of Ca.(1)Ca reduced Cd bioaccumulation in D.magna not only by inhibiting aqueous uptake but also inhibiting dietary assimilation.With increasing ambient Ca level from 0.5 to 200 mg/L,the aqueous uptake rate constant of Cd decreased by nine times; and the dietary assimilation efficiency of Cd decreased from 62 to 19%.In contrast,Ca levels did not significantly affect the efflux rates of Cd.(2)Ca was found to influence Cd toxicity in D.magna simply via affecting bioaccumulation,and not by altering intrinsic sensitivity of the organisms.We conducted toxicity tests in parallel with uptake kinetics experiments of Cd in waters of different Ca concentrations and pH levels using acclimated D.magna.Both the acute toxicity and uptake of Cd were reduced by higher Ca concentration.Strikingly constant median effective influx rates(EJ50,1.3-1.6 μg/g/h)of Cd were observed when the concentration of Ca varied from 0.5 to 200 mg/L,indicating that acclimation to different Ca levels did not affect the intrinsic sensitivity of D.magna to Cd.In contrast,the EJ50 values increased consistently with decreasing acclimation pH level,showing that acclimation to acidic water decreased the intrinsic sensitivity.(3)Cladocerans with different Ca demands showed different sensitivity to Cd toxicity.We investigated the patterns of Cd bioaccumulation and toxicity in four cladocerans with contrasting Ca contents.Ca content and the aqueous Cd uptake rate in the cladocerans were significantly correlated.The high-Ca species had higher Cd uptake rates and were more sensitive to aqueous Cd exposure than the low-Ca species.The large interspecies differences in aqueous Cd toxicity can be explained by the differences in the Cd uptake rates.
其他文献
超声降解水中的有机污染物,尤其是难降解的有机污染物是近几年来发展起来的一种新型水处理技术,具有去除效率高、反应时间短、设施简单等优点.近年来,超声技术在处理微污染水
  Contents of heavy metals in sediments from outfall of Shaoguan Smeltery and the entrance of North River basin were determined.The pollution of heavy metals
会议
环氧二烯(MED)是海洋木栖真菌菜豆间坐壳菌(Diaporthe phaseolorum)的次级代谢产物,是一个以含有氧桥的八元环二烯为骨架的化合物,已有研究发现其具有很好的抗肿瘤活性,但是该化合
泛素-蛋白酶体途径(UPP)是生物体内蛋白质选择性降解的重要途径之一,其对靶蛋白的降解是一种级联反应过程。真核细胞利用泛素化精细调节能力,使得某些蛋白质的生理功能和含量水
化学修饰电极是当前电化学和电分析化学方面十分活跃的研究领域,在提高分析的选择性和灵敏度方面有独特的优越性,其表面的微结构可以提供多种能利用的势场,使待测物能进行有
锂离子电池三元正极材料Li[Ni-Co-Mn]O_2因其理论容量高、成本低、环境友好等优点而被研究。该体系的材料具有优于LiCoO_2、LiMnO_2、LiNiO_2中任何一种的性能。但是该体系的材料作为锂离子电池的正极仍然具有高电压下的循环性能以及大倍率性能不理想的特点。针对以上特点,本文主要研究了非对称三元正极材料LiNi_(0.6)Co_(0.2)Mn_(0.2)O_2的合成方法,并且对合成
  The mobility of water soluble cobalt(Co),nickel(Ni),selenium(Se),and vanadium(V)was determined in fluvial and lacustrine soils used for rice(Oryza sativa L.
会议
金属纳米粒子因具有常规体相粒子所不具备的特性而使得其在光学、电学、磁学、力学、催化和传感器等领域具有极好的应用前景。金属纳米粒子的物理和化学性质与其粒度大小、粒
目前,在能量储存电池和动力锂离子电池行业中富锂层状正极材料受到了极大的关注,因为其具有较高的放电比容量(>200 mAh/g),较宽的电压窗口,价格低廉以及对环境友好等优点,但是这类材料也具有其固有的缺点,如较高的首次不可逆性和循环过程中容量衰减较快。本论文研究了富锂层状正极材料Li[Li_(0.23)Ni_(0.15)Mn_(0.62)]O_2的电化学性能和充放电机理,并对其进行了掺杂改性。具体