文章摘要
端正花,李莹莹,陈静,董伟,梁晶晶,岳俊杰,汪磊.中国圆田螺壳在镉污染中的指示作用[J].农业环境科学学报,2014,33(11):2131-2135.
中国圆田螺壳在镉污染中的指示作用
Indicating Cd Pollution by Snail Cipangopaludina Chinensis Shell
投稿时间:2014-04-04  
DOI:10.11654/jaes.2014.11.009
中文关键词: 重金属  田螺    毒性  蓄积
英文关键词: heavy metal  mud snail  shell  toxicity  accumulation
基金项目:国家自然科学基金(21177065,51108316);天津理工大学教学改革项目(YB12-28)
作者单位E-mail
端正花 天津理工大学环境科学与安全工程学院, 天津 300384  
李莹莹 天津理工大学环境科学与安全工程学院, 天津 300384  
陈静 天津理工大学环境科学与安全工程学院, 天津 300384  
董伟 天津理工大学环境科学与安全工程学院, 天津 300384  
梁晶晶 天津理工大学环境科学与安全工程学院, 天津 300384  
岳俊杰 天津理工大学环境科学与安全工程学院, 天津 300384  
汪磊 天津市城市生态环境修复与污染防治重点实验室(南开大学), 天津 300071 wang2007@nankai.edu.cn 
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中文摘要:
      采用室内水体直接暴露和微宇宙模拟暴露,研究了重金属镉(Cd2+)对中国圆田螺(Cipangopaludina Chinensis)的毒性效应及其在田螺软、硬组织中的蓄积规律。结果表明,中国圆田螺的5 d水体直接暴露半致死浓度(LC50)为6.15 mg·L-1;壳长增长率可以作为Cd2+慢性污染胁迫的有效生物标志,浓度为0.15 mg·kg-1的Cd2+刺激田螺壳增长,而浓度为1.5 mg·kg-1的Cd2+抑制田螺壳增长。中国圆田螺的壳与软组织均能够蓄积镉,并且随着暴露时间和暴露浓度的增大,重金属Cd2+的蓄积量也增大,相比之下田螺壳的蓄积更为稳定;天津中心城区主要景观水体中国圆田螺镉污染现状调查也得到了同样的结果。这表明,中国圆田螺的壳可以作为淡水环境镉污染的生物监测的有效补充。
英文摘要:
      Sensitive organisms can be used as an indicator of environmental pollution. An indoor experiment was conducted to study the toxic effects of heavy metal cadmium(Cd2+) on river snail Cipangopaludina Chinensis and its accumulation in soft and hard tissues of the snails using direct exposure and microcosm exposure. The 5 d half lethal concentration(LC50) of cadmium to river snail was 6.15 mg·L-1 under direct exposure. The growth rate of snail shell length could be considered as an effective biomarker of chronic Cd stress. Cadmium stimulated snail shell growth at 0.15 mg·kg-1, but inhibited it at 1.5 mg·kg-1. Cadmium could be accumulated in snail shell as well as in the soft tissue. The accumulation of Cd in soft and hard tissues increased with increased exposure time and concentrations. Moreover, Cd accumulation was more stable in the shell than in the soft tissue. The similar results were found in an insitu investigation of heavy metal pollution in the major landscape rivers in Tianjin. In conclusion, Cipangopaludina Chinensis shell could be an effective supplementary in biological monitoring of Cd pollution in freshwater environment.
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