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Isolation and characterization of two Acinetobacter species able to degrade 3-methylindole

机译:能够降解3-甲基吲哚的两种不动杆菌的分离和鉴定

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摘要

3-Methylindole (3MI) or Skatole is a volatile lipophilic organic compound produced by anoxic metabolism of L-tryptophan and associated with animal farming and industrial processing wastes. Pure cultures of bacteria capable of utilizing 3MI were isolated from chicken manure using enrichment culture techniques. The bacteria were identified as Acinetobacter toweneri NTA1-2A and Acinetobacter guillouiae TAT1-6A, based on 16S rDNA gene amplicon sequence data. The optimal temperature and pH for degradation of 3MI were established using single factor experiments. Strain tolerance was assessed over a range of initial concentrations of 3MI, and the effects of initial concentration on subsequent microbial 3MI degradation were also measured. During the degradation experiment, concentrations of 3MI were quantified by reverse-phase high-performance liquid chromatography (HPLC). The strains were capable of degrade initial concentrations of 3MI ranging from 65–200 mg/L. The degradation efficiency was >85% in 6 days for both strains when the initial concentration is less than 200 mg/L. The strains were tested for enzymatic activity using 65 mg/L 3MI. The enzyme extracts of NTA1-2A and TAT1-6A from the 3MI medium degraded 71.46% and 60.71% of 3MI respectively, but no appreciable change in 3MI concentration in the control group was witnessed. Our experiment revealed betaine and choline were identified as 3MI degradation metabolites by both strains while nitroso-pyrrolidine and beta-alaninebetaine formed by NTA1-2A and TAT1-6A strains respectively. The NTA1-2A and TAT1-6A strains removed 84.32% and 81.39% 3MI respectively from chicken manure during fermentation in 8 days and showed a statistically significant difference (P < 0.05) compared with the control group. The optimum temperature and pH were 31°C and 6 respectively, for 3MI degradation by A. toweneri NTA1-2A and A. guillouiae TAT1-6A. We concluded that A. toweneri NTA1-2A and A. guillouiae TAT1-6A are potential strains of interest to degrade 3MI and control odorant in poultry and other livestock industries.
机译:3-甲基吲哚(3MI)或Skatole是一种挥发性的亲脂性有机化合物,它是通过L-色氨酸的缺氧代谢产生的,并且与畜牧业和工业加工废物有关。使用富集培养技术从鸡粪中分离出能够利用3MI的纯细菌培养物。基于16S rDNA基因扩增子序列数据,该细菌被鉴定为温氏不动杆菌NTA1-2A和guillouiae不动杆菌TAT1-6A。使用单因素实验确定了3MI降解的最佳温度和pH。在3MI的初始浓度范围内评估了应变耐受性,还测量了初始浓度对随后微生物3MI降解的影响。在降解实验中,通过反相高效液相色谱(HPLC)对3MI的浓度进行了定量。该菌株能够降解3MI的初始浓度,范围从65-200 mg / L。当初始浓度低于200 mg / L时,两种菌株在6天内的降解效率均> 85%。使用65 mg / L 3MI测试菌株的酶活性。从3MI培养基中提取的NTA1-2A和TAT1-6A酶提取物分别降解了3MI的71.46%和60.71%,但对照组中3MI的浓度没有明显变化。我们的实验表明,甜菜碱和胆碱被这两个菌株鉴定为3MI降解代谢产物,而亚硝基吡咯烷和β-丙氨酸甜菜碱分别由NTA1-2A和TAT1-6A菌株形成。在8天的发酵过程中,NTA1-2A和TAT1-6A菌株分别从鸡粪中去除了84.32%和81.39%的3MI,与对照组相比有统计学差异(P <0.05)。最佳的温度和pH分别为31.C和6,以通过toweneri A. NTA1-2A和guillouiae TAT1-6A降解3MI。我们得出的结论是,在禽类和其他畜牧业中,toweneri A. toweneri NTA1-2A和guillouiae TAT1-6A是潜在的降解3MI和控制气味的潜在菌株。

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