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在竹材浸沤过程中细菌群落结构和多样性的变化。

Changes in the bacterial community structure and diversity during bamboo retting.

机构信息

Key Laboratory of Science and Technology of Eco-Textile, Ministry of Education (Donghua University), Shanghai, PR China.

出版信息

Biotechnol J. 2011 Oct;6(10):1262-71. doi: 10.1002/biot.201100105. Epub 2011 Jun 21.

Abstract

Microbial retting is a critical step in obtaining fiber bundles from bamboo culm using indigenous microorganisms. A cultivation-independent technique for monitoring the changes in bacteria community during bamboo retting was applied in this work. This technique involves genetic profiling of PCR-amplified small-subunit rRNA and the single-strand conformation polymorphism (SSCP) gel analysis of the PCR-amplified 16S rDNA fragments. The study revealed that both the structure and the diversity of investigated communities varied with the incubation periods and sample locations. The bacteria bands from SCCP gel profiles related to Bacillus sp. decreased in intensity, and Phaeospirillum sp. and Azospirillum brasilense completely disappeared during the 4(th) and 5(th) month of incubation, while the bands related to the Sphingomonas japonica, Alphaproteobacterium Ellin335 and Microbacterium sp. increased. The bands closely related to Sphingomonads, Brevundimonas brasilense, Pseudoclavibacter sp., Agrococcus jenensis and Oxalophagus oxalicus remained dominant during the whole incubation period. This study showed that the use of PCR assay targeting 16S rRNA and SCCP profiling provided valuable information on monitoring the bacteria dynamic changes occurring in the bacteria community during bamboo retting, which is crucial for controlling the quality of the retting process and improving the retting efficiency, and thus benefits for fiber recovery.

摘要

微生物沤麻是利用本土微生物从竹杆中获取纤维束的关键步骤。本工作采用一种无需培养的技术来监测竹麻沤制过程中细菌群落的变化。该技术涉及对 PCR 扩增的小亚基 rRNA 进行基因谱分析和对 PCR 扩增的 16S rDNA 片段进行单链构象多态性 (SSCP) 凝胶分析。研究表明,在所研究的群落的结构和多样性随培养时间和样品位置而变化。与芽孢杆菌属相关的 SSCP 凝胶图谱中的细菌条带的强度在第 4 和第 5 个月的培养过程中逐渐减弱,而与黄单胞菌属、巴西固氮螺菌完全消失,同时与柄型螺旋菌、α-变形菌 Ellin335 和微杆菌属相关的条带增加。与鞘氨醇单胞菌属、巴西短小芽孢杆菌、假单胞菌属、阿氏节杆菌和草酸氧化杆菌密切相关的条带在整个培养过程中保持优势。本研究表明,使用针对 16S rRNA 的 PCR 检测和 SSCP 分析提供了有关监测竹麻沤制过程中细菌群落中细菌动态变化的有价值信息,这对于控制沤麻过程的质量和提高沤麻效率非常重要,从而有利于纤维的回收。

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