Shi Yajuan, Zhang Qiangbin, Huang Dunqi, Zheng Xiaoqi, Shi Yajing
State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
College of Geosciences, China University of Petroleum (Beijing), Beijing 102249, China.
Pestic Biochem Physiol. 2016 Mar;128:22-9. doi: 10.1016/j.pestbp.2015.10.009. Epub 2015 Oct 21.
The survival, growth, activity of the biotransformation system phase II enzyme glutathione-S-transferase (GST) and the oxidative defense enzyme catalase (CAT) of earthworms exposed to the contaminated soils from a former DDT plant and reference soils were investigated, and compared with the corresponding indicators in simulated soil-earthworm system, unpolluted natural soils with spiked-in DDT series, to identify the toxic effects of DDT on earthworms and their cellular defense system in complex soil system. The results indicated that DDT level in the contaminated soils was significantly higher than that in the reference soils with similar level of other pollutants and soil characters. The mortality, growth inhibition rates, GST and CST activities of earthworms exposed to the contaminated soils were significantly higher than that in reference soils. The contribution of historical DDT in contaminated soils to earthworms was confirmed by the DDT spiked tests. DDT spiked in soils at rates of higher than 200 mg·kg(-1) was significantly toxic to both the survival and the growth of earthworms. DDT significantly stimulated GST and CAT activity in earthworms after 14 days. The CAT and GST activities were also stimulated by DDT exposure at rates of 100 mg·kg(-1) after chronic exposure (42 days). The results provide implications for validating the extrapolation from laboratory simulated soils criteria to contaminated soils and for making site risk assessments.
研究了暴露于某 former DDT 工厂污染土壤和对照土壤中的蚯蚓的存活、生长、生物转化系统Ⅱ相酶谷胱甘肽 - S - 转移酶(GST)的活性以及氧化防御酶过氧化氢酶(CAT)的活性,并与模拟土壤 - 蚯蚓系统、添加了 DDT 系列的未污染天然土壤中的相应指标进行比较,以确定 DDT 在复杂土壤系统中对蚯蚓及其细胞防御系统的毒性作用。结果表明,污染土壤中的 DDT 水平显著高于其他污染物水平和土壤性质相似的对照土壤。暴露于污染土壤中的蚯蚓的死亡率、生长抑制率、GST 和 CST 活性显著高于对照土壤。通过 DDT 添加试验证实了污染土壤中历史残留 DDT 对蚯蚓的影响。土壤中添加速率高于 200 mg·kg(-1) 的 DDT 对蚯蚓的存活和生长均具有显著毒性。暴露 14 天后,DDT 显著刺激了蚯蚓体内的 GST 和 CAT 活性。长期暴露(42 天)后,100 mg·kg(-1) 剂量的 DDT 暴露也刺激了 CAT 和 GST 活性。这些结果为验证从实验室模拟土壤标准外推至污染土壤以及进行场地风险评估提供了依据。