Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung 804, Taiwan.
Department of Biological Sciences, National Sun Yat-Sen University, Kaohsiung, Taiwan.
J Hazard Mater. 2014 Aug 15;278:433-43. doi: 10.1016/j.jhazmat.2014.06.014. Epub 2014 Jun 18.
In this study, microcosm and pilot-scale experiments were performed to investigate the capability and effectiveness of Pseudomonas mendocina NSYSU (P. mendocina NSYSU) on the bioremediation of octachlorodibenzo-p-dioxin (OCDD)-contaminated soils. The objectives were to evaluate the (1) characteristics of P. mendocina NSYSU, (2) feasibility of enhancing OCDD biodegradation with the addition of P. mendocina NSYSU and lecithin, and (3) variation in microbial diversity and genes responsible for the dechlorination of OCDD. P. mendocina NSYSU was inhibited when salinity was higher than 7%, and it could biodegrade OCDD under reductive dechlorinating conditions. Lecithin could serve as the solubilization agent causing the enhanced solubilization and dechlorination of OCDD. Up to 71 and 62% of OCDD could be degraded after 65 days of incubation under anaerobic conditions with and without the addition of lecithin, respectively. Decreased OCDD concentrations caused significant increase in microbial diversity. Results from the pilot-scale study show that up to 75% of OCDD could be degraded after a 2.5-month operational period with lecithin addition. Results from the gene analyses show that two genes encoding the extradiol/intradiol ring-cleavage dioxygenase and five genes encoding the hydrolase in P. mendocina NSYSU were identified and played important roles in OCDD degradation.
在这项研究中,进行了微宇宙和中试规模的实验,以研究假单胞菌 Mendocina NSYSU(P. mendocina NSYSU)在八氯二苯并对二恶英(OCDD)污染土壤的生物修复中的能力和效果。目的是评估:(1)P. mendocina NSYSU 的特性;(2)添加 P. mendocina NSYSU 和卵磷脂增强 OCDD 生物降解的可行性;(3)微生物多样性和负责 OCDD 脱氯的基因的变化。当盐度高于 7%时,P. mendocina NSYSU 受到抑制,并且它可以在还原脱氯条件下生物降解 OCDD。卵磷脂可用作增溶剂,导致 OCDD 的增溶和脱氯增强。在添加和不添加卵磷脂的厌氧条件下培养 65 天后,分别有 71%和 62%的 OCDD 可以降解。OCDD 浓度的降低导致微生物多样性显著增加。中试规模研究的结果表明,添加卵磷脂后,经过 2.5 个月的运行期,有 75%的 OCDD 可以降解。基因分析的结果表明,在 P. mendocina NSYSU 中鉴定出两个编码邻二醇/间二醇环裂解双加氧酶的基因和五个编码水解酶的基因,它们在 OCDD 降解中发挥了重要作用。