Huang Xue-Jiao, Yang Chong, Ni Jiu-Pai, Li Zhen-Lun
Key Laboratory of Soil Multiscale Interface Process and Control, College of Resources and Environment, Southwest University, Chongqing 400715, China.
Huan Jing Ke Xue. 2016 Jun 8;37(6):2276-2283. doi: 10.13227/j.hjkx.2016.06.035.
A strain of photosynthetic bacterium named psb1 capable of ammonia-nitrogen degradation was isolated from a swamp in Yunnan. The psb1 was similar to sp. according to its cell morphological properties and absorption spectrum analysis of living cells. The alignment result of 16S rDNA amplification sequence with specific primers of photosynthetic bacteria showed that the homology between strain psb1 and sp. was 99%, and the alignment results of protein sequences of bacterial chlorophyll Y subunit showed that the strain psb1 and were the most similar, with a similarity of 99%. But there was a great difference in the biological properties of the strains psb1 and according to physiological biochemical characteristics and main fatty acid analysis. For example, strain psb1 could not utilize glucose and mannitol as carbon source, and had specific fatty acid C. The results of single factor test showed that:the optimal growth was obtained at pH 7.0 and 40℃, the optimal nitrogen source was yeast extract. The optimal conditions for ammonia nitrogen biodegradation were as following:anaerobic, light, initial pH 6.0-7.0, temperature 30℃, inoculation volume 0.4%. Under that cultural condition, the degradation rate of ammonia nitrogen in wastewater could reach 99%. The results indicated that strain psb1 might be a novel bacterium in genus with high ammonia removal efficiency, and can be applied in the bioremediation of polluted landscape water.
从云南的一个沼泽中分离出了一株名为psb1的能够降解氨氮的光合细菌。根据其细胞形态特性和活细胞吸收光谱分析,psb1与 属细菌相似。用光合细菌特异性引物对16S rDNA扩增序列进行比对,结果表明菌株psb1与 属细菌的同源性为99%,细菌叶绿素Y亚基蛋白质序列比对结果表明菌株psb1与 最为相似,相似度为99%。但根据生理生化特性和主要脂肪酸分析,菌株psb1与 在生物学特性上存在很大差异。例如,菌株psb1不能利用葡萄糖和甘露醇作为碳源,且具有特定脂肪酸C。单因素试验结果表明:在pH 7.0和40℃条件下生长最佳,最佳氮源为酵母提取物。氨氮生物降解的最佳条件如下:厌氧、光照、初始pH 6.0 - 7.0、温度30℃、接种量0.4%。在此培养条件下,废水中氨氮的降解率可达99%。结果表明,菌株psb1可能是 属中的一种新型细菌,具有较高的氨去除效率,可应用于污染景观水的生物修复。