中国环境科学
中國環境科學
중국배경과학
CHINA ENVIRONMENTAL SCIENCE
2010年
5期
671-676
,共6页
吴琼%刘慧%张丹%施霞珍
吳瓊%劉慧%張丹%施霞珍
오경%류혜%장단%시하진
邻苯二甲酸正丁酯(DBP)%浅层含水层%微生物多样性%BIOLOG
鄰苯二甲痠正丁酯(DBP)%淺層含水層%微生物多樣性%BIOLOG
린분이갑산정정지(DBP)%천층함수층%미생물다양성%BIOLOG
di-n-butyl phthalate(DBP)%shallow aquifer%microbial diversity%BIOLOG
在模拟浅层地下水低温、缺氧的环境条件下,利用BIOLOG ECO微平板法研究了经不同浓度邻苯二甲酸正丁酯(DBP)处理的江汉平原浅层含水层沉积物中微生物的数量、整体活性、多样性指数以及代谢功能多样性.结果表明,微生物的数量、整体活性随DBP浓度不同有差异;丰富度指数、Shannon指数与对照相比差异均不显著,而Simpson指数和McIntosh指数差异显著.低浓度DBP(<400mg/kg)可以抑制部分微生物的生长,而促进与DBP代谢有关的微生物活性;高浓度DBP(796mg/kg)则抑制了微生物数量,破坏物种的均一度,最终导致沉积物中微生物功能多样性发生改变而产生代谢变异性.
在模擬淺層地下水低溫、缺氧的環境條件下,利用BIOLOG ECO微平闆法研究瞭經不同濃度鄰苯二甲痠正丁酯(DBP)處理的江漢平原淺層含水層沉積物中微生物的數量、整體活性、多樣性指數以及代謝功能多樣性.結果錶明,微生物的數量、整體活性隨DBP濃度不同有差異;豐富度指數、Shannon指數與對照相比差異均不顯著,而Simpson指數和McIntosh指數差異顯著.低濃度DBP(<400mg/kg)可以抑製部分微生物的生長,而促進與DBP代謝有關的微生物活性;高濃度DBP(796mg/kg)則抑製瞭微生物數量,破壞物種的均一度,最終導緻沉積物中微生物功能多樣性髮生改變而產生代謝變異性.
재모의천층지하수저온、결양적배경조건하,이용BIOLOG ECO미평판법연구료경불동농도린분이갑산정정지(DBP)처리적강한평원천층함수층침적물중미생물적수량、정체활성、다양성지수이급대사공능다양성.결과표명,미생물적수량、정체활성수DBP농도불동유차이;봉부도지수、Shannon지수여대조상비차이균불현저,이Simpson지수화McIntosh지수차이현저.저농도DBP(<400mg/kg)가이억제부분미생물적생장,이촉진여DBP대사유관적미생물활성;고농도DBP(796mg/kg)칙억제료미생물수량,파배물충적균일도,최종도치침적물중미생물공능다양성발생개변이산생대사변이성.
Impact of di-n-butyl phthalate(DBP),an endocrine-disrupting chemical,on microbial community diversities and activities in shallow aquifer sediments in Jianghan plain were investigated in batch cultures via BIOLOGECO microplates.Sediments were amended with different concentrations of DBP varied from 0 to 796mg/kg and incubated under a condition of hypothermia-hypoxia which was commonly found in subsurface aquifer.Average well colour development (AWCD) was measured with mircosation biolog periodically.It was observed that the microbial populations and activities vailed with DBP concentrations.With the variation of DBP concentrations no obvions difirerenge was detected among the richness (R) and Shannon's index (H),while remarkable differences was found among the Simpson's indices and McIntosh's indices of the control and sediments amended with DBP (P<0.05).The microbial activity which might potentially related to DBP degradation was enhanced by DBP with low concentration (<400mg/kg).However,with higher concentrations,(≥796mg/kg),DBP grossly inhibited microbial growth and metabolism as manifested by the reduction in microbial count,and destabilized the natural balance of microbial communities.