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作 者:王以斌[1,2] 刘芳明[1,2] 缪锦来[1,2] 臧家业[1]
机构地区:[1]国家海洋局第一海洋研究所,山东青岛266061 [2]国家海洋局海洋生物活性物质重点实验室,山东青岛266061
出 处:《海洋环境科学》2011年第5期649-652,共4页Marine Environmental Science
基 金:国家自然科学基金项目(40876107);国家海洋局青年科学基金项目(2010122)
摘 要:以从南极地区分离纯化的具有低温芳香烃降解功能的嗜冷菌Planococcus sp.NJ41为研究对象,模拟低温海洋环境对影响其生长和降解的环境因子进行分析研究,确定其最适的萘降解条件:动球菌Planococcus sp.NJ41可在以萘为唯一碳源的无机盐培养基中生长并在低温(0~10℃)下高效降解萘等芳香烃;其最适生长温度为10℃,最适pH为7.5,初始萘浓度在400 mg/L时NJ41具有最强的降解活性,最适N源为NH4NO3,摇床转速和微量元素均能对降解产生一定的影响。NJ41在最适条件下培养10 d时对萘的降解率最高可达48.8%,温度升高降解能力下降,超过25℃则基本不具有降解能力。The present experiment,through a preliminary study of a cold-adapted PAHs-degrading strains psychrophile Planococcus sp.NJ41 which was screened from the Antarctic region,the simulation and analysis of influences of environmental factors in low-temperature environment on the growth and degradation were done.In the most suitable culture conditions established:NJ41 could grow in inorganic salt nutrient medium with PAHs such as naphthalene as the only carbon source and could degrade PAHs with high efficiency at low temperature(0~10℃).The optimum growth temperature was 10℃,pH was 7.5,NJ41 had the highest degradation activity when the initial naphthalene concentration was 400 mg/L.The optimum nitrogen source was ammonium nitrate,and the rotation speed and trace elements may impact on the degradation.NJ41 had the highest degradability of naphthalene,48.8% at 10℃,120 r/min and 10 d,and the degradability of NJ41 was decreased with temperature up,but was not degradable above 25℃.
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