降解亚硝酸盐的大山芽孢杆菌JY-1的分离、鉴定及其作用
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周敏(1996–),女,硕士研究生,专业方向为水生生物学.E-mail:2978795597@qq.com

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S941

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山东省现代农业产业技术体系项目(SDAIT-13); 山东省农业重大应用技术创新项目(SD2019YY008); 山东省重点研发计划项目(2021CXGC010806).


Isolation, identification and function of a nitrite-degrading strain JY-1
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    摘要:

    为得到稳定高效降解亚硝酸盐的益生菌,通过菌株富集分离培养,菌株鉴定,发酵培养基优化等实验对菌株进行了分离,鉴定,对菌株降亚硝酸盐效果进行了分析,并克隆了亚硝酸盐还原酶基因。结果显示,从养殖池塘,污水处理厂等 5.处混合水体中分离,筛选出一株具有亚硝酸盐降解能力的菌株,命名为 JY-1。菌株生理生化和 1 6.SrDNA 序列分析显示,JY- 1.是大山芽孢杆菌(Bacillus gaemokensis) ; 发酵培养基优化显示,JY- 1.的最适氮源和碳源分别是蛋白胨和葡萄糖。JY- 1.降亚硝酸盐效果分析显示 3.h JY- 1.可将水体中 0.6.mg/L 的亚硝酸盐降到 0.0.mg/L。安全性评价检测显示,菌株 JY- 1.菌落周围无溶血环出现,且高浓度 JY-1 (109.CFU/mL)灌服尼罗罗非鱼对其无明显影响。克隆获得了 JY- 1.亚硝酸盐还

    Abstract:

    In the present study, to isolate and screen a probiotic that degrades nitrite stably and efficiently, we carried out experiments on enrichment, isolation, culture, and identification of a suitable strain. Then, biological characteristics of the identified strain were determined through optimization of fermentation medium, analysis of nitrite degrading effect, and gene cloning of nitrite reductase. The strain was isolated and screened from five mixed water bodies, including aquaculture projects and wastewater treatment plants, and named JY-1. Additionally, the strain JY-1 was identified using 16S rDNA gene sequence analysis and physiological and biochemical characteristics. The results revealed strain JY-1 to be Bacillus gaemokensis. Optimization of fermentation conditions for sporulation of JY-1 strain indicated that the best carbon source for JY-1 was glucose and the best nitrogen source was tryptone. Analysis of the nitrite-degrading effect of JY-1 showed that JY-1 could degrade 0.6 mg/L nitrite in aquaculture water to 0.0 mg/L in 3 h. Moreover, the safety evaluation test suggested that no hemolysis was found, and the high concentration of JY-1 (109 CFU/mL) had no significant effect on the survival of Nile tilapia. Based on the results of experiments of gene cloning of nitrite reductase and the effect of JY-1 on ammonia, nitrite, and total nitrogen in water bodies, it is preliminarily speculated that enzymatic degradation, operated by JY-1, was the pathway through which nitrite was degraded and removed from water. In summary, this study provides an important basis for the preparation of microecological preparations with high efficiency in degrading nitrite.

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周敏,宁文,陈红菊,季相山,赵燕.降解亚硝酸盐的大山芽孢杆菌JY-1的分离、鉴定及其作用[J].中国水产科学,2022,29(2):284-294
ZHOU Min, NING Wen, CHEN Hongju, JI Xiangshan, ZHAO Yan. Isolation, identification and function of a nitrite-degrading strain JY-1[J]. Journal of Fishery Sciences of China,2022,29(2):284-294

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  • 在线发布日期: 2022-02-27
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