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纤维素酶的基因研究进展及其应用 被引量:4
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作者 银川 杨艳红 +2 位作者 高焕方 江蔚 严欢 《纤维素科学与技术》 CAS 2021年第4期71-78,共8页
简述了纤维素酶的来源、组成及降解机理。重点总结了基因工程技术和基因组工程技术在纤维素酶基因研究中的应用,对比了基因工程技术和基因组工程技术在纤维素酶基因研究中的特点,突出了基因组工程技术在基因应用研究中的优越性。介绍了... 简述了纤维素酶的来源、组成及降解机理。重点总结了基因工程技术和基因组工程技术在纤维素酶基因研究中的应用,对比了基因工程技术和基因组工程技术在纤维素酶基因研究中的特点,突出了基因组工程技术在基因应用研究中的优越性。介绍了纤维素酶在酿酒、造纸业、农业、生物燃料业、制药业、废弃资源管理业等领域的最新应用。最后,还总结了纤维素酶应用研究过程中存在的问题和拟解决的关键难题,对该领域的未来发展进行了展望。 展开更多
关键词 纤维素 纤维素酶 基因工程 基因组工程 蛋白质工程 研究进展
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Biostimulation-enhanced Biodegradation of Nitrobenzene in Contaminated Groundwater 被引量:2
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作者 AN Yong-lei ZHANG Lan-ying +2 位作者 LIU Na ZHANG Lei gao huan-fang 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第5期818-823,共6页
In this study, biostimulation technology was used for bioremediation of nitrobenzene-contaminated groundwater by adding a mixture of lactose and phosphate, peptone, and beef extract. During the process of biostimulati... In this study, biostimulation technology was used for bioremediation of nitrobenzene-contaminated groundwater by adding a mixture of lactose and phosphate, peptone, and beef extract. During the process of biostimulation, the remediation effectiveness, microbial dehydrogenase activities and microbial densities were investigated; the varieties of microbial community structure and composition were analyzed by polymerase chain reaction-denaturing gradient gel electrophoresis(PCR-DGGE) technique and the relative abundances of nitrobenzene-degrading gene(nbzA) were determined by fluorescence quantitative real-time PCR(RT-PCR). Findings show that the removal rate of nitrobenzene in groundwater could reach about 60% by biostimulation with lactose and phosphate, 70% with peptone and 68% with beef extract. The microbial dehydrogenase activities and microbial densities were all improved obviously via biostimulation. The results of PCR-DGGE show that the microbial diversities were improved, and more than ten kinds of dominant microorganisms were detected after biostimulation. RT-PCR results show that the relative abundances of nbzA gene of microbes in groundwater were increased significantly, which indicated that biostimulation actually enhanced the growth of nitrobenzene-degrading bacteria. Therefore, biostimulation is a cost-effective and feasible bioremediation technique for nitrobenzene-contaminated groundwater. 展开更多
关键词 NITROBENZENE Groundwater BIOSTIMULATION Polymerase chain reaction-denaturing gradient gel electro-phoresis(PCR-DGGE) Real-time polymerase chain reaction(RT-PCR)
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