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复合微生物系统BMC-9对稻草中木质纤维素的降解作用

Degradation of lignocelluloses in rice straw by BMC-9, a composite microbial system.

作者信息

Zhao Hongyan, Yu Hairu, Yuan Xufeng, Piao Renzhe, Li Hulin, Wang Xiaofen, Cui Zongjun

机构信息

Yanbian University, Yanji 133002, China.

出版信息

J Microbiol Biotechnol. 2014 May;24(5):585-724. doi: 10.4014/jmb.1310.10089.

Abstract

To evaluate the potential utility of pretreatment of raw biomass with a complex microbial system, we investigated the degradation of rice straw by BMC-9, a lignocellulose decomposition strain obtained from a biogas slurry compost environment. The degradation characteristics and corresponding changes in the bacterial community were assessed. The results showed that rapid degradation occurred from day 0 to day 9, with a peak total biomass bacterium concentration of 3.3 × 10(8) copies/ml on day 1. The pH of the fermentation broth declined initially and then increased, and the mass of rice straw decreased steadily. The highest concentrations of volatile fatty acid contents (0.291 mg/l lactic acid, 0.31 mg/l formic acid, 1.93 mg/l acetic acid, and 0.73 mg/l propionic acid) as well as the highest xylanse activity (1.79 U/ml) and carboxymethyl cellulase activity (0.37 U/ml) occurred on day 9. The greatest diversity among the microbial community also occurred on day 9, with the presence of bacteria belonging to Clostridium sp., Bacillus sp., and Geobacillus sp. Together, our results indicate that BMC-9 has a strong ability to rapidly degrade the lignocelluloses of rice straw under relatively inexpensive conditions, and the optimum fermentation time is 9 days.

摘要

为了评估用复杂微生物系统预处理原始生物质的潜在效用,我们研究了从沼液堆肥环境中获得的木质纤维素分解菌株BMC-9对稻草的降解情况。评估了降解特性以及细菌群落的相应变化。结果表明,从第0天到第9天发生了快速降解,第1天总生物质细菌浓度峰值为3.3×10(8)拷贝/毫升。发酵液的pH值先下降后上升,稻草质量稳步下降。挥发性脂肪酸含量最高(乳酸0.291毫克/升、甲酸0.31毫克/升、乙酸1.93毫克/升和丙酸0.73毫克/升)以及木聚糖酶活性最高(1.79 U/毫升)和羧甲基纤维素酶活性最高(0.37 U/毫升)均出现在第9天。微生物群落的最大多样性也出现在第9天,存在属于梭菌属、芽孢杆菌属和嗜热栖热菌属的细菌。总之,我们的结果表明,BMC-9在相对廉价的条件下具有快速降解稻草木质纤维素的强大能力,最佳发酵时间为9天。

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