Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum

碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 100 === Clostridium xylanolyticum, a symbiotic bacterium in termite gut, and Clostridium cellulolyticum had been found could digest hemicellulose and cellulose, respectively. The objective of this study was to evaluate the possibility of improving the utilization...

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Main Authors: Pei-Ying Yang, 楊佩穎
Other Authors: 周楚洋
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/73459083278418822252
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spelling ndltd-TW-100NTU054150202015-10-13T21:50:18Z http://ndltd.ncl.edu.tw/handle/73459083278418822252 Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum 利用Clostridium cellulolyticum與Clostridium xylanolyticum分解麻竹纖維 Pei-Ying Yang 楊佩穎 碩士 國立臺灣大學 生物產業機電工程學研究所 100 Clostridium xylanolyticum, a symbiotic bacterium in termite gut, and Clostridium cellulolyticum had been found could digest hemicellulose and cellulose, respectively. The objective of this study was to evaluate the possibility of improving the utilization rate of lignocellulose and hence to increase the production of acids and alcohol through fermentation by these two species of bacteria. Although C. cellulolyticum is an obligate anaerobe, it could be inoculated in the laminar flow hood without filling nitrogen. Only when opening the seeding bacterium ampoule and preparing the medium for activation, to maintain the anaerobic conditions by using the anaerobic glove box is necessary. It was also found that the conventional Hungate-type tube used in cultivation of C. cellulolyticum could be simply replaced by screw-cap test tubes, but similar to other obligate anaerobes, addition of reducing agent is still required. The growth curve of C. cellulolyticum showed 9 hrs of lag phase was existed and the following exponential phase was from 9 to 20 hrs, and no stationary phase was observed. The mean generation time was 1.37 hrs and the optimal inoculation period was between 16-20 hrs. According to the previous study, cell growth of C. xylanolyticum in modified PYG medium existed a 12 hrs lag phase, exponential phase was from 12 to 30 hrs, and stationary phase was from 30 to 96 hrs. The mean generation time was found to be 2.4 hrs, and the optimal inoculation period was between 24-30 hrs. Two fermentation tests using different substrates were conducted, artificial substrate fermentation and Ma Bamboo fermentation. In test of the artificial substrate fermentation, the products of co-culture and monoculture fermentation for both C. cellulolyticum and C. xylanolyticum had no significant difference. In monoculture of the Ma Bamboo fermentation, C. cellulolyticum presented better degradation ability about the cellulose and hemicellulose than that of C. xylanolyticum. Additionally, co-culture of the Ma Bamboo fermentation test showed better degradation ability in hemicelluloses than that of monoculture test. 周楚洋 2012 學位論文 ; thesis 44 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 100 === Clostridium xylanolyticum, a symbiotic bacterium in termite gut, and Clostridium cellulolyticum had been found could digest hemicellulose and cellulose, respectively. The objective of this study was to evaluate the possibility of improving the utilization rate of lignocellulose and hence to increase the production of acids and alcohol through fermentation by these two species of bacteria. Although C. cellulolyticum is an obligate anaerobe, it could be inoculated in the laminar flow hood without filling nitrogen. Only when opening the seeding bacterium ampoule and preparing the medium for activation, to maintain the anaerobic conditions by using the anaerobic glove box is necessary. It was also found that the conventional Hungate-type tube used in cultivation of C. cellulolyticum could be simply replaced by screw-cap test tubes, but similar to other obligate anaerobes, addition of reducing agent is still required. The growth curve of C. cellulolyticum showed 9 hrs of lag phase was existed and the following exponential phase was from 9 to 20 hrs, and no stationary phase was observed. The mean generation time was 1.37 hrs and the optimal inoculation period was between 16-20 hrs. According to the previous study, cell growth of C. xylanolyticum in modified PYG medium existed a 12 hrs lag phase, exponential phase was from 12 to 30 hrs, and stationary phase was from 30 to 96 hrs. The mean generation time was found to be 2.4 hrs, and the optimal inoculation period was between 24-30 hrs. Two fermentation tests using different substrates were conducted, artificial substrate fermentation and Ma Bamboo fermentation. In test of the artificial substrate fermentation, the products of co-culture and monoculture fermentation for both C. cellulolyticum and C. xylanolyticum had no significant difference. In monoculture of the Ma Bamboo fermentation, C. cellulolyticum presented better degradation ability about the cellulose and hemicellulose than that of C. xylanolyticum. Additionally, co-culture of the Ma Bamboo fermentation test showed better degradation ability in hemicelluloses than that of monoculture test.
author2 周楚洋
author_facet 周楚洋
Pei-Ying Yang
楊佩穎
author Pei-Ying Yang
楊佩穎
spellingShingle Pei-Ying Yang
楊佩穎
Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
author_sort Pei-Ying Yang
title Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
title_short Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
title_full Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
title_fullStr Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
title_full_unstemmed Degradation of Fiber of Dendrocalamus latiflorus Munro by Clostridium cellulolyticum and Clostridium xylanolyticum
title_sort degradation of fiber of dendrocalamus latiflorus munro by clostridium cellulolyticum and clostridium xylanolyticum
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/73459083278418822252
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