用从孟加拉国森林土壤中分离的好氧纤维素分解菌降解稻草中的木质纤维素含量

M. Islam, M. Rahman, S. Islam, Shabbir Ahmed, M. Jahan, Sulav Indra Paul, A. Selim
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摘要

以羧甲基纤维素(CMC)为底物,对森林土壤中的好氧纤维素分解菌进行了计数和分离研究。鉴定的分离物被进一步测试为提高稻草营养价值的有效候选物。森林土壤中含有大量(2.45×107)的纤维素分解菌。共分离、鉴定并监测了10株纤维素降解菌(CDB)的纤维素分解活性。具有最高纤维素分解指数(2.5)的分离物被鉴定为针对16S rRNA基因的枯草芽孢杆菌,其被标记为枯草芽孢杆菌菌株CDB7,并被研究用于稻草的营养改良。在0(无细菌接种物)、1、5和10%接种物组中,每组在37°C下进行0、3和6天的固态发酵。在每个发酵间隔,接种浓度为1%、5%和10%的酸性洗涤纤维(ADF)、中性洗涤纤维(NDF)和木质素都有减少的趋势。接种量为10%、10%和5%的组在发酵6天后分别观察到ADF(4.8%)、NDF(10.78%)和木质素(37.6%)的最高还原率。10%接种组粗蛋白含量增加(5.3±0.4~6.4±0.3)。总之,所鉴定的分离物可能是通过打破木质素-纤维素结合来降解木质素纤维素含量并提高稻草营养价值的有力候选者。关键词:稻草,枯草芽孢杆菌CDB7菌株,固态发酵,酸性洗涤纤维(ADF),中性洗涤纤维(NDF),木质素。
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Degradation of lignocellulosic content of rice straw using aerobic cellulolytic bacteria isolated from forest soil of Bangladesh
The present research work was conducted to enumerate and isolate aerobic cellulolytic bacteria from forest soil using carboxymethyl cellulose (CMC) as substrate. The identified isolate was further tested as potent candidate to improve the nutritional value of rice straw. The forest soil was loaded with substantial amount (2.45×107) of cellulolytic bacteria. A total of 10 cellulose degrading bacteria (CDB) were isolated, identified and monitored for their cellulolytic activity. The isolate having the highest cellulolytic index (2.5) was identified as Bacillus subtilis targeting the 16S rRNA gene which was labeled as B. subtilis strain CDB7 and investigated for nutritional improvement of rice straw. Solid state fermentation of each group was carried out at 37°C for a period of 0, 3 and 6 days in 0 (no bacterial inoculum), 1, 5 and 10% inoculum group. There were a tendency of reduction in Acid Detergent Fiber (ADF), Neutral Detergent Fiber (NDF) and lignin at concentrations of 1, 5 and 10% inoculums at every interval of fermentation. Highest reduction of ADF (4.8%), NDF (10.78%) and lignin (37.6%) were observed after 6 days of fermentation at 10, 10 and 5% inoculum group, respectively. The crude protein content was increased (5.3 ± 0.4 to 6.4± 0.3) in 10% inoculum group. Taken together, the identified isolate could be a potent candidate to degrade lignocellulosic content through breaking of lignin-cellulose bondage and to improve the nutritional value of rice straw.   Key words: Rice straw, Bacillus subtilis strain CDB7, solid state fermentation, acid detergent fiber (ADF), neutral detergent fiber (NDF), lignin.
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