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一株硝化脱氮除臭菌的筛选鉴定及其多途径氮代谢功能的研究 被引量:15

Isolation and identification of a denitrifying and deodorizing Bacillus subtilis strain with multiple nitrogen metabolism pathways
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摘要 从江门某污水处理厂活性污泥中分离出一株能够高效脱除氨气的菌株JN-4.通过菌株形态观察、生理生化及16SrDNA分子鉴定,发现菌株JN-4与枯草芽孢杆菌(Bacillus subtilis)亲缘关系最为接近,同源性达到99%,认为JN-4为一株枯草芽孢杆菌(Bacillus subtilis).好氧培养条件下,以葡萄糖为碳源,JN-4在32h内对NH4+-N和NO2--N的总削减率能够达98.51%和84.50%,体系中总氮的削减率达到63.1%和16.9%,N2的产生量分别为3.72mmol·L-1和0.62mmol·L-1.好氧培养条件下,以KNO3为唯一氮源,NO3--N初始浓度为82.47mg·L-1,32h内体系中NO3--N的总削减率达到96.54%,体系中总氮的削减率达49.6%,产生1.44mmol·L-1的N2,反应中检测到有NH4+-N迅速积累,但会随着时间进行同步转化,可见JN-4不仅能够高效硝化脱氨,同时具有高效好氧反硝化的能力.JN-4在厌氧以及乙酸钠作为碳源的条件下,利用NH4+-N效率大大降低,但是能够在NO3--N存在时进行NO3--N还原(反硝化).JN-4能够进行多途径氮代谢,为一株异养硝化-好氧反硝化偶联的菌株,具有重要的应用价值. To study aerobic denitrifying and deodorization,strain JN-4 was isolated from the activated sludge of a wastewater treatment plant in Jiangmen. The strain was identified as Bacillus subtilis.based on its morphological characteristics,physiological and biochemical properties and phylogenetic analysis of its 16S rDNA sequence. Using JN-4 in a reactor under aerobic conditions,NH4^+-N and NO2^--N losses reached 98.51% and 84.50% and total nitrogen loss could reach 63.1% and 16.9% respectively. JN-4 could reduce NO3^--N into NH4^+-N with organic carbon source and potassium nitrate as nitrogen source. Under these conditions,NO3^--N and total nitrogen losses could reach 96.54% and 49.6% respectively. The NH4^+-N accumulation could be transformed together with NO3^--N. JN-4 could highly oxidize NH4^+-N and grow with a glucose carbon source and it also had aerobic denitrification ability. Under anaerobic conditions,strain JN-4 could still reduce NO3^--N with sodium acetate as the sole carbon source. In the cells of strain JN-4 with multiple paths of nitrogen metabolism,coupling of heterotrophic nitrification and aerobic denitrification is feasible and is of practical value in water treatment.
作者 樊杰 林炜铁
出处 《环境科学学报》 CAS CSCD 北大核心 2010年第4期722-728,共7页 Acta Scientiae Circumstantiae
基金 广东省农业科技攻关项目基金(No. 2008B021000036)~~
关键词 枯草芽孢杆菌 筛选 鉴定 异养硝化-好氧反硝化 氮代谢 Bacillus subtilis isolation identification heterotrophic nitrification-aerobic denitrifier nitrogen metabolism
作者简介 樊杰(1985-),男,E—mail:86226670@qq.com; 通讯作者(责任作者),E-mail:539502933@qq.com 博士,主要从事发酵工程,环境微生物和食品生物技术等方面的研究工作.曾经主持国家自然科学基金、国家重点科技攻关以及广东省自然科学基金等多项国家、省部科研项目和企业合作项目.
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  • 1奥斯伯FM[美].精编分子生物学实验指南[M].北京:科学出版社,2005:1457-1574.
  • 2Berks B C, Richardson D J, Robinson C, et al. 1994. Purification and characterization of the periplasmic nitrate reductase from Thiosphaera pantotropha [ J ]. European Journal of Biochemistry, 220 ( 1 ) : 117-124.
  • 3Bfierley E D R, Wood M. 2001. Heterotrophic nitrification in an acid forest soil: isolation and characterization of a nitrifying bacterium [ J ]. Soil Biology and Biochemistry, 33 (10) : 1403-1409.
  • 4Daum M, Zimmer W, Papen H, etal. 1998. Physiological and melocular biological characterization of ammonia oxidation of the hetero-trophic nitrifier Pseudomonas putida [ J ]. Current Microbiology, 37(4) :281-288.
  • 5郭建华,彭永臻.异养硝化、厌氧氨氧化及古菌氨氧化与新的氮循环[J].环境科学学报,2008,28(8):1489-1498. 被引量:30
  • 6Ho K L, Chung Y C, Lin Y H, et al. 2008. Biofiltration of trimethylamine, dimethylamine, and methylamine by immobilized Paraeoceus sp. CP2 and Arthrobaeter sp. CP1 [ J]. Chemosphere, 72(2) :250-256.
  • 7侯颖,孙军德,徐建强,徐超蕾.养殖水体中高效氨氮降解菌的分离与鉴定[J].水产科学,2005,24(10):22-24. 被引量:35
  • 8Joo H S, Hirai M, Shoda M. 2006. Piggery wastewater treatment using Alcaligenes faecalis strain No. 4 with heterotrophic nitrification and aerobic denitrification [ J ]. Water Research, 40 (16) : 3029-3036.
  • 9Khin Than, Annaehhatre Ajit P. 2004. Novel microbial nitrogen removal processes[ J]. Biotechnology Advances, 22:519-532.
  • 10Kim J K, Park K J, Cho K S, et al. 2005. Aerobic nitrification denitrification by heterotrophic Bacillus strains [ J ]. Bioresource Technology, 96 ( 17 ) : 1897-1906.

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