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复合微生物系统MC1降解稻草的能力与稳定性

[Capability and stability of degrading rice straw of composite microbial system MC1].

作者信息

Wang Wei-Dong, Cui Zong-Jun, Wang Xiao-Fen, Niu Jun-Ling, Liu Jian-Bin, Igarashi Yasuo

机构信息

College of Agronomy and Biotechnology, China Agricultural University, Beiijng 100094, China.

出版信息

Huan Jing Ke Xue. 2005 Sep;26(5):156-60.

Abstract

The capability of degrading rice straw of lignocellulolytic composite microbial system MC1 was investigated under different methods of preservation and temperatures treatments of 80 degrees C to 95 degrees C, and stability of composite microbial system MC1 was studied through the method of Denaturing Gradient Gel Electrophoresis (DGGE). The results indicate that the rice straw of 2% dry weight of medium can be degraded completely at 50 degrees C within 10 days under static culture. After 9 days inoculating MC1, the dry weight of rice straw, cellulose, hemicellulose and lignin content was degraded by 81% , 99%, 74% and 51%, respectively. Capability of cellulose degrading and stability of composite microbial system MC1 is sustained under 4 years of continuing subculture, 4 years of dry preservation at room temperature, 4 years of preservation at - 20 degrees C, 1 year of liquid preservation at room temperature and at 4 degrees C, and treatment of 90 degrees C for 30 min, respectively. Plate culture results show that composite microbial system MC1 are consisted of bacteria. The main DNA bands are not changed by the method of 16S rDNA PCR-DGGE after culture of six months so that microbial composition of MC1 is very stable.

摘要

研究了木质纤维素复合微生物系统MC1在不同保存方法和80℃至95℃温度处理下对稻草的降解能力,并通过变性梯度凝胶电泳(DGGE)方法研究了复合微生物系统MC1的稳定性。结果表明,在静态培养条件下,培养基中干重为2%的稻草在50℃下10天内可被完全降解。接种MC1 9天后,稻草的干重、纤维素、半纤维素和木质素含量分别降解了81%、99%、74%和51%。复合微生物系统MC1的纤维素降解能力和稳定性分别在连续传代4年、室温干燥保存4年、-20℃保存4年、室温液体保存1年和4℃保存1年以及90℃处理30分钟的条件下得以维持。平板培养结果表明复合微生物系统MC1由细菌组成。经过6个月培养后,通过16S rDNA PCR-DGGE方法检测,主要DNA条带未发生变化,表明MC1的微生物组成非常稳定。

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