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嗜热子囊菌利用短链有机酸生产角质酶
引用本文:何刚强,堵国成,刘立明,刘和,霍光华,陈坚.嗜热子囊菌利用短链有机酸生产角质酶[J].微生物学报,2008,24(5):821-828.
作者姓名:何刚强  堵国成  刘立明  刘和  霍光华  陈坚
作者单位:江南大学工业生物技术教育部重点实验室, 无锡 214122; 江西农业大学生物科学与工程学院, 南昌 330045;江南大学工业生物技术教育部重点实验室, 无锡 214122;江南大学工业生物技术教育部重点实验室, 无锡 214122;江南大学工业生物技术教育部重点实验室, 无锡 214122;江西农业大学生物科学与工程学院, 南昌 330045;江南大学工业生物技术教育部重点实验室, 无锡 214122; 江南大学食品科学技术国家重点实验室, 无锡 214122
基金项目:973项目(No. 2007CB714306), 新世纪优秀人才支持计划, 教育部科学研究重大项目(No. V200611), 863项目(No. 2006AA06Z315)资助。
摘    要:以嗜热子囊菌(Thermobifida fusca WSH03-11)发酵生产角质酶为模型,研究微生物利用市政污泥厌氧酸化所产短链有机酸为碳源发酵生产高附加值产品的可能。发现:(1)以丁酸、丙酸和乙酸为碳源时,有机酸和氮元素浓度分别为8.0 g/L和1.5 g/L有利于角质酶的生产;而以乳酸为碳源时,最适有机酸和氮源浓度分别为3.0 g/L和1.0 g/L;(2)改变诱导物角质的浓度,以丁酸、丙酸、乙酸和乳酸为碳源,分别比优化前提高了31.0%、13.3%、43.8%和73.2%;(3)在四种有机酸中,T. fusca WSH03-11利用乙酸的速率最快,平均比消耗速率是丙酸的1.3倍,丁酸的2.0倍及乳酸的2.2倍;以丁酸为碳源时的酶活(52.4 U/mL)是乳酸的1.7倍、乙酸的2.5倍和丙酸的3.2倍;角质酶对乳酸的得率(12.70 u/mg)分别是丁酸的1.4倍、丙酸的3.0倍和乙酸的3.8倍;(4)以混合酸为碳源生产角质酶,T. fusca WSH03-11优先利用乙酸,而对丁酸的利用受到抑制。进一步研究发现,混合酸中0.5 g/L的乙酸将导致丁酸的消耗量降低66.7%。这是首次利用混合酸作碳源发酵生产角质酶的研究报道。这一研究结果进一步确证了利用市政污泥厌氧酸化所产有机酸为碳源发酵生产高附加值产品的可行性,为以廉价碳源生产角质酶奠定了良好的基础。

关 键 词:嗜热子囊菌    短链有机酸    角质酶

Cutinase Production from Short-chain Organic Acids by Thermobifida fusca
Gangqiang He,Guocheng Du,Liming Liu,He Liu,Guanghua Huo and Jian Chen.Cutinase Production from Short-chain Organic Acids by Thermobifida fusca[J].Acta Microbiologica Sinica,2008,24(5):821-828.
Authors:Gangqiang He  Guocheng Du  Liming Liu  He Liu  Guanghua Huo and Jian Chen
Institution:Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, Chin; College of Biosciences and Engineering, Jiangxi Agricultural University, Nanchang 330045, China;Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China;Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China;Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China;College of Biosciences and Engineering, Jiangxi Agricultural University, Nanchang 330045, China;Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China; State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China
Abstract:We studied cutinase production from short-chain organic acids by Thermobifida fusca WSH03-11 to evaluate the possibility of converting municipal sludge to high value-added products. The optimum organic acid (8.0 g/L) and nitrogen source (1.5 g/L) concentrations were determined by the single factor experiments with butyric acid, propionic acid and acetic acid as the carbon sources. When lactic acid was used as the carbon source, the optimum organic acid (3.0 g/L) and nitrogen source (1.0 g/L) concentrations were obtained. Cutinase production by T. fusca WSH03-11 was further improved with butyric acid (by 31.0%), propionic acid (by 13.3%), acetic acid (by 43.8%) and lactic acid (by 73.2%) as carbon source, respectively, with the optimized cutin concentrations. Among these four short-chain organic acids, the average specific consumption rate of acetic acid was the highest, higher than that of propionic acid 1.3-folds, butyric acid 2.0-folds and lactic acid 2.2-folds. The highest cutinase activity reached 52.4 u/mL with butyric acid (8 g/L) as the sole carbon source, higher than that of lactic acid (3 g/L) 1.7-folds, acetic acid (8 g/L) 2.5-folds and propionic acid (8 g/L) 3.2-folds. The yield of cutinase activity on lactic acid (12.70 u/mg) higher than that of butyric acid 1.4-folds, propionic acid 3.0-folds and acetic acid 3.8-folds. T. fusca WSH03-11 consumed acetic acid firstly in mixed acids carbon sources, and the consumption of butyric acid was inhibited. Further studies indicated that the consumption rate of butyrate was decreased by 66.7% in the presence of 0.5 g/L acetic acid in the mixed acids. This was the first report concerning the production of cutinase by T. fusca with mixed organic acids as the carbon sources. The results presented here provided a novel and efficient approach to produce high value-add products from municipal sludge, and also established a foundation for the industrial production of cutinase by T. fusca WSH03-11 with cheap carbon sources from the processing of municipal sludge.
Keywords:Thermobifida fusca  short-chain organic acids  cutinase
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