首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 250 毫秒
1.
为了研究对烟草中烟碱与绿原酸的快速生物降解,筛选了能有效降解烟草中烟碱与绿原酸的链霉菌Z6菌株与Z8菌株,考察了Z6和Z8菌株在不同培养基上的培养特征,探讨了所选菌株对烟碱与绿原酸的降解特性。实验结果表明,Z8链霉菌在烟草固体培养基中培养48h后,对培养基中烟碱的降解率达到83.9%;培养72h后,对烟碱的降解率可达到93.7%,此时烟草中的烟碱含量降低到0.38mg/g,达到了欧盟条例的无害化标准。Z6菌对绿原酸的降解程度较高,培养48h后,对绿原酸的降解率为57.1%;培养72h后,降解率可达到67.5%.  相似文献   

2.
菌株DN2对烟草薄片制备液中烟碱的降解   总被引:3,自引:0,他引:3  
使用O.intermedium DN2降解烟草薄片制备液中的烟碱。研究了各种工艺参数对烟碱降解的影响,单因素考察结果表明烟草薄片制备液中烟碱降解的最适条件是:添加0.1%的酵母膏,使用氨水将pH调节到7.0,接种15%种子液,培养温度30oC。在上述条件下,采用30L发酵罐对烟草薄片制备液进行3个批次的半连续发酵,烟碱的平均降解速率为140.55mg/L/h,高于其他烟碱降解菌株。该结果表明菌株DN2可以用来降低烟草薄片中的烟碱含量。  相似文献   

3.
DN2菌降解烟碱的动力学及其应用研究   总被引:2,自引:0,他引:2  
研究了菌株DN2降解烟碱的特性和对烟草废弃物中烟碱的降解情况。结果表明,该菌降解烟碱的最适条件为接种量为5 %,温度30 ℃,初始pH值为6.5。在该条件下,对初始烟碱浓度为500 mg/L的降解过程进行考察。结果表明,未经烟碱诱导的降解曲线呈倒S曲线,半衰期为17.43 h;经烟碱诱导的降解曲线符合Eckenfelder动力学模型,半衰期为4.10 h。添加0.1 %(质量分数)葡萄糖,可提高菌株DN2的烟碱耐受浓度,达5000 mg/L。菌株DN2能够降解烟草废弃物水提液中的烟碱(烟碱含量约为2220 mg/L),60 h时烟碱的降解率为95.22 %,表明该菌在治理烟碱污染环境方面具有应用价值。  相似文献   

4.
从烟草(Nicotiana tabacum L.)根际土壤中分离到1株兼有烟碱降解活性的解磷菌株,编号为YF24;菌株YF24经过48 h发酵后,培养基上清液中游离态磷含量达到141.6μg/m L,烟碱降解率达到77%,确定YF24具有解磷和烟碱降解的双重活性;对菌株YF24生长特性的研究表明,其最适生长温度是30~35℃,最适p H值范围是5.5~7.0,耐盐性差。通过形态特征观察、生理生化特性测定和16S r DNA序列分析,确定菌株YF24隶属于不动杆菌属Acinetobacter,暂命名为Acinetobacter sp.YF24。菌株YF24可作为烟草专用菌肥开发、诱变育种的良好出发菌株。  相似文献   

5.
一株降烟碱细菌的筛选、鉴定及其降解特性研究   总被引:1,自引:0,他引:1  
以烟碱为唯一碳源,从湖南张家界烟草种植地的土壤中分离得到一株降解烟碱能力较好的菌株。经常规形态观察和生理生化实验结果表明,该菌为放射形土壤杆菌或根癌土壤杆菌(Agrobacterium radiobacter/tumefaciens)。研究表明,该菌的降解烟碱最适pH和温度分别为7.0和30℃。该菌能够利用烟碱为唯一碳源,在含烟碱的培养基中发酵液呈淡黄色-绿色-墨绿色-深综色变化,培养48h后,烟碱的降解率可达71%,具有较好的烟草工业应用前景。  相似文献   

6.
本研究利用逐级驯化的方法,从广西某工厂的废水中分离得到一株能利用苯酚作为唯一碳源生长的高效苯酚降解菌F6。采用16S r DNA序列分析的方法,将菌株F6鉴定为芽孢杆菌(Bacillus sp.)。F6菌株在8 h内几乎完全降解100 mg/L的苯酚,降解率达99.9%,该菌株的菌体生长与苯酚降解呈同步趋势,主要在对数生长期降解苯酚。F6最高耐受苯酚浓度为1 800 mg/L,在温度25~40℃,p H值6.0~9.0,盐度0~40 g/L范围内,F6菌株均能保持对苯酚良好的降解能力。菌株F6的降解底物具有广谱性,除了能够利用苯酚作为唯一碳源,还可以利用邻苯二酚、间苯二酚、对苯二酚、连苯三酚、甲苯、氯苯等酚类化合物为其生长代谢提供碳源和能源。综上所述,菌株F6在应用于处理成分复杂、含酚浓度较高的废水中将具有很大的潜力。  相似文献   

7.
碱性普鲁兰酶产生菌的原生质体制备与诱变选育   总被引:1,自引:0,他引:1  
研究报道了Bacillus sp SX—12原生质体制备与再生最佳条件。实验表明,在液体完全培养基中加入2%的甘氨酸培养10h,原生质体制备最佳条件为:溶菌酶浓度0.5mg/mL,酶解温度37℃,酶解时间1.5h时原生质体形成率为93.8%。原生质体形成最佳高渗稳定剂为甘露醇,再生率26.4%。在原生质体制备的最佳条件下,用紫外线诱变技术选育产碱性普鲁兰酶的高产菌株。筛选到1株高产菌株SX—12C87,酶活由出发菌株的2.42μ/mL提高到6.87μ/mL,提高了约1.8倍。  相似文献   

8.
一株高浓度烟碱降解菌的筛选、分离和初步鉴定   总被引:1,自引:0,他引:1  
采用以烟碱为唯一碳源氮源的选择培养基,从烟草和植烟土壤中分离筛选出15株高浓度烟碱降解的菌株,其中菌株D9烟碱降解能力最强,其烟碱降解率为82%,耐受烟碱的最高浓度为8 g/L。经常规形态特征、16S rDNA同源序列以及系统进化树分析,初步鉴定该菌株为类似氧化微杆菌,命名为Microbacterium sp. GYC29。本研究为微生物降解烟碱的研究及应用提供了菌种资源。  相似文献   

9.
【背景】啶虫脒等新烟碱类杀虫剂的残留易对非靶标生物造成伤害,投加高效降解细菌进行生物强化,可促进其快速降解。【目的】从蚯触圈中分离筛选啶虫脒降解菌并优化其降解条件,提高降解效率。【方法】制备蚯触圈基质富集筛选降解菌;通过生理生化特征和16S rRNA基因序列分析对其进行鉴定;利用单因素筛选、Plackett-Burman试验、最陡爬坡试验及Box-Behnken design试验优化菌株降解条件。【结果】分离得到1株啶虫脒降解菌D35,可在72 h内降解55.46%初始浓度为50 mg/L的啶虫脒,将其鉴定为一株假单胞菌(Pseudomonas sp.)。优化得到菌株降解啶虫脒的最佳环境条件为:胰蛋白胨10.19 g/L、温度为30℃、接种量为5.24%,pH 7.0、初始农药浓度50 mg/L,在此条件下72 h内菌株降解率为80.21%,较未优化前提高了24.75%。【结论】本研究对分离筛选新烟碱类杀虫剂降解菌的方法进行了探索,获得的菌株D35可高效降解啶虫脒,为快速消除环境中啶虫脒污染提供了新的微生物资源。  相似文献   

10.
烟碱降解细菌的分离、鉴定及其降解性能的初步研究   总被引:21,自引:1,他引:21       下载免费PDF全文
从福建三明地区的土壤中分离得到一株能够高效降解烟碱的菌株 ,编号为DN2。该菌经常规的形态、生理生化分析以及 16SrDNA序列同源性分析 ,鉴定为Ochrobactrumintermedium ,属于α_变形杆细菌纲。该菌在 30℃~4 0℃和pH 6 . 0~ 9. 0范围内具有较高的降解活性 ,其最适值分别为 30℃和 6 5 ,烟碱的耐受浓度在无机盐培养基中可达到 4 0 0 0mg L。该菌能够以烟碱为唯一碳源生长 ,对于 5 0 0mg L烟碱的降解速率为 15mg L·h ,36h烟碱降解率为97. 6 5 %。该菌在烟草工业和环境保护上可能具有应用前景。  相似文献   

11.
Biodegradation of nicotine by a newly isolated Agrobacterium sp. strain S33   总被引:1,自引:0,他引:1  
Aims: To isolate and characterize bacteria capable of degrading nicotine from the rhizospheric soil of a tobacco plant and to use them to degrade the nicotine in tobacco solid waste. Methods and Results: A bacterium, strain S33, was newly isolated from the rhizospheric soil of a tobacco plant, and identified as Agrobacterium sp. based on morphology, physiological tests, Biolog MicroLog3 4·20 system and 16S rRNA gene sequence. Using nicotine as the sole source of carbon and nitrogen in the medium, it grew optimally with 1·0 g l?1 of nicotine at 30°C and pH 7·0, and nicotine was completely degraded within 6 h. The resting cells prepared from the glucose‐ammonium medium or LB medium could not degrade nicotine within 10 h, while those prepared from the nicotine medium could completely degrade 3 g l?1 of nicotine in 1·5 h at a maximal rate of 1·23 g nicotine h?1 g?1 dry cell. Using the medium containing nicotine, glucose and ammonium simultaneously to cultivate strain S33, the resting cells could degrade 98·87% of nicotine in tobacco solid waste with the concentration as 30 mg nicotine g?1 dry weight tobacco solid waste within 7 h at a maximal rate of 0·46 g nicotine h?1 g?1 dry cell. Conclusions: This is the first report that Agrobacterium sp. has the ability to degrade nicotine. Agrobacterium sp. S33 could use nicotine as the sole source of carbon and nitrogen. The use of resting cells of the strain S33 prepared from the nicotine–glucose–ammonium medium was an effective method to degrade nicotine and detoxify tobacco solid waste. Significance and Impact of the Study: Nicotine in tobacco wastes is both toxic and harmful to human health and the environment. This study showed that Agrobacterium sp. S33 may be suitable for the disposal of tobacco wastes and reducing the nicotine content in tobacco leaves.  相似文献   

12.
废烟叶提取液源尼古丁降解菌分离鉴定和特性   总被引:1,自引:0,他引:1  
【目的】目前造纸法再造烟叶工艺已经成为我国重要的废烟叶处理和利用方式,该工艺中尼古丁的调控是很重要的待解决问题。从废烟叶提取液(Tobacco waste extract,TWE)中筛选高耐受高活性降解尼古丁微生物用来直接处理烟梗或烟末提取液中的尼古丁,可实现对尼古丁指标的调控。【方法】以尼古丁为唯一碳氮源的基本培养基为筛选平板,从废烟叶提取液中筛选降解尼古丁菌株;对分离获得的菌株进行形态、生理生化和16S r RNA基因序列分析比对,鉴定其种属;获得的菌株分别在基本培养基和废烟叶提取液中考察其生长和尼古丁降解效果。【结果】从废烟叶提取液中获得了一株尼古丁降解活性和耐受力较好的降解菌株Pseudomonas sp.JY-Q,且在TWE中也有较强的降解能力。【结论】Pseudomonas sp.JY-Q可用于水体和TWE环境尼古丁的降解,但共存的葡萄糖对其有抑制作用,有待深入研究。  相似文献   

13.
Aims: Isolation and characterization of nicotine‐degrading bacteria with advantages suitable for the treatment of nicotine‐contaminated water and soil and detection of their metabolites. Methods and Results: A novel nicotine‐degrading bacterial strain was isolated from tobacco field soil. Based on morphological and physiochemical properties and sequence of 16S rDNA, the isolate was identified as Pseudomonas sp., designated as CS3. The optimal culture conditions of strain CS3 for nicotine degradation were 30°C and pH 7·0. However, the strain showed broad pH adaptability with high nicotine‐degrading activity between pH 6·0 and 10·0. Strain CS3 could decompose nicotine nearly completely within 24 h in liquid culture (1000 mg L?1 nicotine) or within 72 h in soil (1000–2500 mg kg?1 nicotine) and could endure up to 4000 mg L?1 nicotine in liquid media and 5000 mg kg?1 nicotine in soil. Degradation tests in flask revealed that the strain had excellent stability and high degradation activity during the repetitive degradation processes. Additionally, three intermediates, 3‐(3,4‐dihydro‐2H‐pyrrol‐5‐yl) pyridine, 1‐methyl‐5‐(3‐pyridyl) pyrrolidine‐2‐ol and cotinine, were identified by GC/MS and NMR analyses. Conclusions: The isolate CS3 showed outstanding nicotine‐degrading characteristics such as high degradation efficiency, strong substrate endurance, broad pH adaptability, and stability and persistence in repetitive degradation processes and may serve as an excellent candidate for applications in the bioaugmentation process to treat nicotine‐contaminated water and soil. Also, detection of nicotine metabolites suggests that strain CS3 might decompose nicotine via a unique nicotine‐degradation pathway. Significance and Impact of the Study: The advantage of applying the isolated strain lies in broad pH adaptability and stability and persistence in repetitive use, the properties previously less focused in other nicotine‐degrading micro‐organisms. The strain might decompose nicotine via a nicotine‐degradation pathway different from those of other nicotine‐utilizing Pseudomonas bacteria reported earlier, another highlight in this study.  相似文献   

14.
【目的】分离并鉴定1株具有尼古丁降解能力的细菌,研究其尼古丁降解特性并对其降解基因进行分析,为尼古丁微生物降解提供基础。【方法】从烟草种植地土壤中分离1株具有尼古丁降解能力的细菌,通过16S r RNA基因和生理生化特性对该菌株进行鉴定,检测该菌株尼古丁降解率与生长量的关系,并进一步对该菌株进行尼古丁浓度耐受性测定,采用高通量测序技术对菌株进行全基因组测序,BLAST比对分析尼古丁降解相关基因。【结果】筛选到1株具有尼古丁降解能力的细菌,经鉴定命名为根癌土壤杆菌(Agrobacterium tumerficience)SCUEC1菌株,根癌土壤杆菌SCUEC1菌株尼古丁降解率可达到94.81%,该菌株在尼古丁浓度为0.50–5.00 g/L范围内生长良好且有较高的尼古丁降解能力。对根癌土壤杆菌SCUEC1菌株全基因组序列进行BLAST比对分析,推测该菌株的尼古丁降解代谢途径与中间苍白杆菌SYJ1菌株的尼古丁降解途径相似。【结论】本研究揭示了Agrobacterium tumerficienceSCUEC1菌株具备尼古丁降解特性,初步推测出尼古丁降解相关基因和降解代谢途径,为尼古丁微生物降解提供基础。  相似文献   

15.
Nicotine is a key harmful component of tobacco and cigarettes, and the development of low-nicotine cigarettes is of increasing importance in the market. The objectives of this study are to isolate native nicotine-degrading strains and evaluate their feasibility for nicotine reduction during the aging (or fermentation) of tobacco leaves. A novel nicotine-degrading strain was isolated and identified as Pseudomonas stutzeri ZCJ based on its 16S rDNA sequence and morphological-biochemical characteristics. In submerged cultures, P. stutzeri ZCJ could tolerate 4.5 g/L nicotine and completely degrade 1.5 g/L nicotine within 24 h at 37°C and pH 7.4. The addition of glucose (1 g/L) could improve nicotine degradation by P. stutzeri ZCJ in submerged cultures. After submerged culturing, the cell suspension of P. stutzeri ZCJ could be utilized to improve nicotine reduction in tobacco leaves during solid-state fermentation. The nicotine content of tobacco leaves decreased by as much as 32.24% after 7 days of solid-state fermentation by P. stutzeri ZCJ, suggesting the industrial application potential of the native strain to enhance nicotine degradation during the aging of tobacco leaves.  相似文献   

16.
Two novel nicotine-degrading bacterial strains were isolated from tobacco waste and identified as Acinetobacter sp. TW and Sphingomonas sp. TY based on morphology, physiological and biochemical tests, Biolog analysis and 16S rDNA sequencing. The 16S rDNA sequences have been deposited in GenBank under the accession numbers FJ753401 for TW and FJ754274 for TY. The best culture conditions for nicotine degradation were 25–37°C and pH 7.0–8.0 for strain TW and 25–30°C and pH 6.0–7.0 for strain TY. Under the best conditions, the cell growth and nicotine-degradation kinetics of the two isolates were assessed, and 1.0 g/l nicotine was completely degraded within 12 and 18 h for TW and TY, respectively. Moreover, the presence of four widely-used commercial neonicotinoid insecticides in the medium had no effects on nicotine degradation by TW; among the four tested neonicotinoids, only thiamethoxam significantly delayed nicotine degradation by TY. TW and TY were also able to degrade selected neonicotinoids. This is the first report of nicotine degradation by Acinetobacter sp. and Sphingomonas sp. This study showed that these two newly isolated bacteria may be suitable for the disposal of tobacco waste and the reduction of nicotine in tobacco leaves.  相似文献   

17.
Ochrobactrum intermedium DN2 was used to degrade nicotine in tobacco waste extracts. The optimal temperature and pH of nicotine degradation by strain DN2 was 30–37 °C and 7.0, respectively. Under these optimal conditions, the average degradation rate of nicotine in a 30L fed-batch culture was 140.5 mg l−1 h−1. The results of this study indicate that strain DN2 may be useful for reducing the nicotine content of reconstituted tobacco.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号