首页> 美国卫生研究院文献>Journal of Genetic Engineering Biotechnology >Improvement of cellulose degradation by cloning of endo-β-1 3-1 4 glucanase (bgls) gene from Bacillus subtilis BTN7A strain
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Improvement of cellulose degradation by cloning of endo-β-1 3-1 4 glucanase (bgls) gene from Bacillus subtilis BTN7A strain

机译:通过克隆枯草芽孢杆菌BTN7A菌株的内切β-1、3-1、4葡聚糖酶(bgls)基因改善纤维素降解

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摘要

The aim of this study is to construct a new recombinant strain able to degrade cellulose efficiently. The endo-β-1, 3-1, 4 glucanase (bgls) gene was cloned from Bacillus subtilis BTN7A strain by using PCR technique. The specific primers of bgls gene were deduced. Optimization of PCR mixture and program were identified. The nucleotide sequence of bgls was placed in the public domain (GenBank accession number ). The obtained bgls DNA was cloned with pGEM®-T Easy Vector. The recombinant plasmid designated as Bgls-NRC-1 was transformed into E. coli DH5α. The successful cloning of the bgls gene was tested either by PCR or by evaluating its expression in its new bacterial host. The bgls gene was expressed efficiently in E. coli and the enzyme activity of the transformant was compared to the enzyme activity of the donor bacterial strain. The new constructs produce much higher enzyme yields than the donor bacterial strain, they produce about 29% and about 57% higher cellulase specific activity at 37 °C and 55 °C respectively. Optimization of cellulolytic activity of the new recombinant strain were described. The effect of minimal medium supplemented with CMC or cellulose, or complete medium (LB) on bgls expression were tested, the order of cellulase activity production was CMC27.2 > cellulose 21.9 > LB 19.8 U/mg protein, respectively at 24 h. CMC was proved to be the best medium for cellulase production. Results also showed that double the initial inoculum resulted in more cellulase activities in all media.
机译:这项研究的目的是构建能够有效降解纤维素的新型重组菌株。采用PCR技术从枯草芽孢杆菌BTN7A菌株中克隆了内切β-1、3-1、4葡聚糖酶(bgls)基因。推导了bgls基因的特异性引物。确定了PCR混合物的优化和程序。 bgls的核苷酸序列被置于公共域(GenBank登录号)。用-T Easy Vector克隆获得的bgls DNA。将命名为Bgls-NRC-1的重组质粒转化到大肠杆菌DH5α中。通过PCR或评估其在新细菌宿主中的表达,测试了bgls基因的成功克隆。 bgls基因在大肠杆菌中有效表达,并将转化体的酶活性与供体细菌菌株的酶活性进行比较。新的构建体比供体细菌菌株产生更高的酶产率,它们分别在37°C和55°C下产生大约29%和大约57%的纤维素酶比活性。描述了新的重组菌株的纤维素分解活性的优化。测试了补充CMC或纤维素的基本培养基或完全培养基(LB)对bgls表达的影响,纤维素酶活性产生的顺序分别是在24 h时CMC27.2→纤维素21.9→LB 19.8 U / mg蛋白。事实证明,CMC是生产纤维素酶的最佳培养基。结果还表明,将初始接种物加倍会导致所有培养基中的纤维素酶活性更高。

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