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可口革囊星虫对Cd2+和Hg2+的富集及其影响

吴洪喜1,2,3,高业田4,黄振华2,3,蒋霞敏1**   

  1. (1宁波大学海洋学院, 浙江宁波 315211; 2浙江省海洋水产养殖研究所, 浙江温州 325005; 3浙江省近岸水域生物资源开发与保护重点实验室, 浙江温州 325005; 4安徽省四维环境工程有限公司, 合肥 231000)
  • 出版日期:2015-06-18 发布日期:2015-06-18

Enrichment of Cd2+ and Hg2+ in Phascolosoma esculenta and their effects.

WU Hong-xi1,2,3, GAO Ye-tian4, HUANG Zhen-hua2,3, JIANG Xia-min1   

  1. (1School of Marine Science, Ningbo University, Ningbo 315211, Zhejiang, China; 2Zhejiang Mariculture Research Institute, Wenzhou 325005, Zhejiang, China; 3Zhejiang Key Laboratory of Exploitation and Preservation of Coastal BioResource, Wenzhou 325005, Zhejiang, China; 4Anhui Siwei Environmental Engineering Co., Ltd, Hefei 231000, China)
  • Online:2015-06-18 Published:2015-06-18

摘要:

采用原子吸收、原子荧光等分析检测技术,探讨了Cd2+、Hg2+在可口革囊星虫中的富集规律及其对生长与主要营养成分的影响.结果表明: 在试验设定的胁迫浓度内,可口革囊星虫体壁肌肉对Cd2+、Hg2+的富集均随胁迫时间的延长而增加,最终达到饱和浓度;环境中Cd2+、Hg2+浓度越高,富集速度越快,达到饱和的时间越短,饱和浓度也越高.可口革囊星虫体质量增长随着重金属胁迫浓度的升高而减慢,且联合胁迫的影响程度大于单一胁迫.体壁肌肉蛋白质含量随重金属胁迫浓度的增加而升高,Cd2+、Hg2+分别在0.05和0.02 mg·L-1胁迫浓度下达到最高,然后开始降低.联合胁迫也呈同样的规律,且影响程度更大.体壁肌肉脂肪含量随重金属胁迫浓度的增加而降低,联合胁迫下降低程度更大.
 

Abstract: The accumulation of Cd2+ and Hg2+ in Phascolosoma esculenta and its effects on its growth and main nutrient components were investigated using atomic absorption spectrometer analysis and atomic fluorescence spectrometer examination. The results showed that within the experimental heavy metal concentrations, the amounts of Cd2+ and Hg2+ accumulated in the somatic muscles increased with increasing exposure time and reached their saturated levels at the end of the experiment. Exposure of higher heavy metal concentrations speeded up the accumulation of Cd2+ and Hg2+ and subsequently took less time to reach their saturated levels, which were greater than those of lower concentration groups. The rate of mass gain of P. esculenta decreased with increasing the heavy metal exposure concentrations. The combination exposure of Cd2+ and Hg2+ led to a significantly lower mass gain rate compared to those exposed to Cd2+ or Hg2+. The protein content of somatic muscles increased with the increase of exposure concentration and reached the maximum values at 0.05 and 0.02 mg·L-1 for Cd2+ and Hg2+, respectively. After that, the protein content of somatic muscles began to decrease. The combined exposure of the two heavy metals showed similar effect trends but more significant impacts on the protein content of somatic muscles. The lipid content of somatic muscles decreased with increasing the concentration of Cd2+ or Hg2+ exposure, and the combination of Cd2+ and Hg2+ led to lower lipid content.