Wang Wei-Dong, Song Ya-Bin, Wang Yan-Jie, Gao Ya-Mei, Jing Rui-Yong, Cui Zong-Jun
College of Biological Science and Technology, Heilongjiang Bayi Agricultural University, Daqing 163319, China.
Huan Jing Ke Xue. 2011 Jan;32(1):253-8.
The biodiversity of a mesophilic microbial community BYND-8 capable of degrading lignocellulose at 30 degrees C was detected using denaturing gradient gel electrophoresis (DGGE) and the isolation of pure cultures, and the effect of the liquid of rice straw degradation by BYND-8 on biogas production was measured. Six bacterial strains were isolated using peptone cellulose solution medium, and the highest similarities of their 16S rDNA gene sequences to Serratia sp. PSGB 13, S. marcescens strain UFLA-25LS, S. marcescens strain DAP33, Alcaligenes sp. YcX-20, Stenotrophomonas maltophilia strain C6, Bacillus cereus isolate BRL02-71 were 99%, 100%, 96%, 100%, 100% and 99%, respectively. In addition, one band was detected besides six bands of cultured isolates on the DGGE gel, and it showed 100% sequence similarity to uncultured bacterium clone ATB-KS-1446. The cumulative biogas and methane productions of biogas fermentation system added with the liquid of rice straw degraded by BYND-8 were 13 167 mL and 7 248 mL, 44.5% and 95.3% higher than those of the control, respectively, in the early 15 days of fermentation. The results showed that the biodiversity of microbial community BYND-8 was very high, and the time of producing biogas was put forward and biogas production was increased with application of microbial community for rice straw pretreatment during the biogas fermentation.
利用变性梯度凝胶电泳(DGGE)和纯培养物分离技术,检测了在30℃下能够降解木质纤维素的嗜温微生物群落BYND-8的生物多样性,并测定了BYND-8降解稻草的液体对沼气生产的影响。使用蛋白胨纤维素溶液培养基分离出6株细菌菌株,它们的16S rDNA基因序列与粘质沙雷氏菌PSGB 13、粘质沙雷氏菌UFLA-25LS菌株、粘质沙雷氏菌DAP33菌株、产碱杆菌YcX-20、嗜麦芽窄食单胞菌C6菌株、蜡样芽孢杆菌分离株BRL02-71的最高相似度分别为99%、100%、96%、100%、100%和99%。此外,在DGGE凝胶上除了培养分离物的6条带外还检测到1条带,它与未培养细菌克隆ATB-KS-1446的序列相似度为100%。在发酵的前15天,添加BYND-8降解稻草液体的沼气发酵系统的累计沼气产量和甲烷产量分别为13167 mL和7248 mL,比对照分别高出44.5%和95.3%。结果表明,微生物群落BYND-8的生物多样性非常高,在沼气发酵过程中应用该微生物群落对稻草进行预处理,可提前产气并提高沼气产量。