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新分离的厌氧细菌菌株丙酮厌氧杆菌属WJDL-Y2对硫酸盐木质素的生物降解作用

Biodegradation of kraft lignin by a newly isolated anaerobic bacterial strain, Acetoanaerobium sp. WJDL-Y2.

作者信息

Duan J, Huo X, Du W J, Liang J D, Wang D Q, Yang S C

机构信息

Department of Environmental Engineering, Xi'an Jiaotong University, Xi'an, China.

State Key Laboratory of Frozen Soil Engineering, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Science, Lanzhou, China.

出版信息

Lett Appl Microbiol. 2016 Jan;62(1):55-62. doi: 10.1111/lam.12508. Epub 2015 Nov 25.

Abstract

UNLABELLED

An anaerobic kraft lignin (KL)-degrading bacterial strain was isolated from sludge of a pulp and paper mill. It was characterized as Acetoanaerobium sp. WJDL-Y2 by 16S rRNA gene sequencing. The maximum KL degradation capability of strain Y2 was determined to be 24·9% on a COD basis under an optimal condition with temperature of 31·5°C, initial pH of 6·8 and KL to nitrogen (as NH4 Cl) ratio of 6·5 by mass. Growth kinetic studies showed that the KL tolerance of strain Y2 was relatively high (Ki  = 8120·45 mg l(-1) ). Analysing KL degradation products by GC-MS revealed the formation of low-molecular-weight aromatic compounds (LMWACs), including benzene-propanoic acid, syringic acid and ferulic acid. This indicates that strain Y2 can oxidize lignin structure's p-hydroxyphenyl (H) units, guaiacyl (G) units and syringyl (S). In addition, the inoculated sample also contained low-molecular acid compounds, such as hexanoic acid, adipic acid and 2-hydroxybutyric acid, further validating strain Y2's ability to degrade KL.

SIGNIFICANCE AND IMPACT OF THE STUDY

Kraft lignin containing effluents discharged from pulp and paper industries causes serious environmental pollution in developing countries. Due to the immense environmental adaptability and biochemical versatility, bacterial ligninolytic potential deserve to be studied for application in effluent treatment of pulp and paper industry. In this study, an anaerobic lignin-degrading bacterium, Acetoanaerobium sp. WJDL-Y2 (accession no. KF176997),was isolated from the sludge of a pulp and paper mill. Strain Y2 can play an important role in treating pulp and paper wastewater, as well as breaking down materials for biofuel and chemical production.

摘要

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从一家造纸厂的污泥中分离出一株厌氧降解硫酸盐木质素(KL)的细菌菌株。通过16S rRNA基因测序将其鉴定为丙酮厌氧杆菌属WJDL - Y2。在温度为31.5°C、初始pH为6.8且KL与氮(以氯化铵计)的质量比为6.5的最佳条件下,菌株Y2对KL的最大降解能力以化学需氧量(COD)计为24.9%。生长动力学研究表明,菌株Y2对KL的耐受性相对较高(抑制常数Ki = 8120.45 mg l⁻¹)。通过气相色谱 - 质谱联用(GC - MS)分析KL降解产物,发现形成了低分子量芳香族化合物(LMWACs),包括苯丙酸、丁香酸和阿魏酸。这表明菌株Y2可以氧化木质素结构中的对羟基苯基(H)单元、愈创木基(G)单元和紫丁香基(S)单元。此外,接种样品中还含有低分子酸化合物,如己酸、己二酸和2 - 羟基丁酸,进一步验证了菌株Y2降解KL的能力。

研究的意义和影响

造纸工业排放的含硫酸盐木质素废水在发展中国家造成了严重的环境污染。由于细菌具有巨大的环境适应性和生化多样性,其木质素分解潜力值得研究以应用于造纸工业废水处理。在本研究中,从一家造纸厂的污泥中分离出一种厌氧木质素降解细菌,丙酮厌氧杆菌属WJDL - Y2(登录号KF176997)。菌株Y2在处理造纸废水以及分解用于生物燃料和化学品生产的原料方面可以发挥重要作用。

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