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  • 學位論文

嗜鹽菌Vibrionaceae sp. NTU 05纖維水解酶基因之選殖與表現

Molecular cloning and expression of the cellulase gene from halophiles Vibrionaceae sp. NTU 05

指導教授 : 徐源泰
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並列摘要


Cellulase plays an important role in the degradation and recycle of fiber wastes. Conversion of cellulose has great potential in biomass application such as energy. This study has investigated cellulase gene from a halophilic strain Vibrionaceae sp. NTU 05, isolated from saline area in southern Taiwan. Cellulase gene from the bacteria has been cloned and heterogeneous expressed for application in simultaneous hydrolysis and fermentation. This study has amplified cellulase gene from Vibrionaceae sp. NTU05 genomic DNA containing 1,232 bp by PCR using CELCF / CELCR primer, which was suitable in the amplification of celC in Bacillus licheniformis. The target gene contains a complete opening reading frame composes of 807 nucleotide that translates 269 amino acid residues that showed 96 % homology to Bacillus licheniformis celC (AM183792.1). The celC was ligated with pGEM®-T easy vector and further transformed in E. coli DH5α. The celC was subsequently subcloned into the pET30a(+)expression vector, and expressed it in Escherichia coli BL21 (DE3). The transformant T1 was cultivated on the LB-CMC plate and detected by Congo red test. Hydrolysis halo is clearly been observed around the colony. The activity was determined at 63.7 mU / mL in intracellular, and no activity was detected in extracellular. The enzyme is specific for the substrate of β-1,4 -linkages of CMC and β-1,3、β-1,4 –linkages of β-glucan. The optimal temperature and pH value for activity of enzyme are detected at 40℃ and pH 7.0, respectively. The activity remained at 80 % when 5 % salinity was given, and retained higher than 70% in 10 % salinity environment for more than 1 hour. The protein was analyzed by fast protein liquid chromatography (FPLC). The purified products were analyzed by native-PAGE, which showed a molecular weight of 29.5 kDa, as expected. This study has successfully established the cloning and heterogeneous expression system of the celC from Vibrionaceae sp. NTU 05.

參考文獻


陳文恆,郭家倫,黃文松,王嘉寶。2007。纖維酒精技術之發展。農業種苗生技。9, p62 ~ 69。
吳佳恩。2004。利用重組巨型桿菌生產纖維分解酵素EgIA之研究。國立台灣大學微生物與生化學研究所碩士論文。
林信宏。2001。Streptoverticillium ladakanum的Transglutaminase基因選殖及在E.coli中表現。靜宜大學食品營養學系碩士論文。
林宜穎。2006。建立 Rhizopus oryzae 之轉形及基因表現系統,國立中興大學分子生物學研究所碩士論文。
柯博順。2004。以大腸桿菌生產重組蛋白之醱酵策略探討。國立成功大學化學工程研究所碩士論文。

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林培茵(2011)。嗜鹽菌Bacillus licheniformis NTU-01纖維素水解酶基因之選殖與表現〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2011.00121
吳睿紘(2009)。由Kefir分離乳酸菌製作柳橙發酵飲品及其生理活性之探討〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2009.10251

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