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Bioconversion of Agricultural Waste to Ethanol by SSF Using Recombinant Cellulase fromClostridium thermocellum

机译:利用热纤梭菌中的重组纤维素酶SSF将农业废弃物生物转化为乙醇

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The effect of different pretreatment methods, temperature, and enzyme concentration on ethanol production from 8 lignocellulosic agrowaste by simultaneous saccharification and fermentation (SSF) using recombinant cellulase andSaccharomyces cerevisiaewere studied. Recombinant cellulase was isolated fromE. coliBL21 cells transformed with CtLic26A-Cel5-CBM11 full-length gene fromClostridium thermocellumand produced in both batch and fed-batch processes. The maximum cell OD and specific activity in batch mode were 1.6 and 1.91 U/mg, respectively, whereas in the fed-batch mode, maximum cell OD and specific activity were 3.8 and 3.5 U/mg, respectively, displaying a 2-fold increase. Eight substrates,Syzygium cumini(jamun),Azadirachta indica(neem),Saracens indica(asoka),bambusa dendrocalmus(bamboo),Populas nigra(poplar),Achnatherum hymenoides(wild grass),Eucalyptus marginata(eucalyptus), andMangifera indica(mango), were subjected to SSF. Of three pretreatments, acid, alkali, and steam explosion, acid pretreatmentSyzygium cumini(Jamun) at 30°C gave maximum ethanol yield of 1.42 g/L.
机译:研究了不同的预处理方法,温度和酶浓度对使用重组纤维素酶和酿酒酵母同时进行糖化和发酵(SSF)的8种木质纤维素农作物生产乙醇的影响。从E中分离出重组纤维素酶。用Clostridium thermocellum的CtLic26A-Cel5-CBM11全长基因转化的大肠杆菌BL21细胞,分批和补料分批生产。分批模式下的最大细胞OD和比活分别为1.6和1.91 U / mg,而补料分批模式下的最大细胞OD和比活分别为3.8和3.5 U / mg,增加了2倍。 。八种底物:S蒲(Syzygium cumini),印A(Azadirachta inne),Sa香(Saracens indica)(asoka),竹子竹(Bambos dendrocalmus)(竹子),黑杨(Populas nigra),杨木Ac(Achnatherum hymenoides)(野草),margin桉(Eucalyptus marginata)(Eucalyptus inica) )进行SSF测试。在酸,碱和蒸汽爆炸三种预处理中,酸预处理孜然(Syzygium cumini)(Jamun)在30°C下的最大乙醇产量为1.42 g / L。

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