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首页> 外文期刊>Journal of Biotechnology >Enhanced production of cellobiohydrolases in Trichoderma reesei and evaluation of the new preparations in biofinishing of cotton
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Enhanced production of cellobiohydrolases in Trichoderma reesei and evaluation of the new preparations in biofinishing of cotton

机译:里氏木霉中纤维二糖水解酶产量的增加以及棉花生物整理中新制剂的评价

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摘要

In the search for suitable cellulase combinations for industrial biofinishing of cotton, five different types of Trichoderma reesei strains were constructed for elevated cellobiohydrolase production: CBHI overproducers with and without endoglucanase I (EGI), CBHII overproducers with and without endoglucanase II (EGII) and strains overproducing both CBHI and CBHII without the major endoglucanases I and II. One additional copy of cbh1 gene increased production of CBHI protein 1.3-fold, and two copies 1.5-fold according to ELISA (enzyme-linked immunosorbent assay). The level of total secreted proteins was increased in CBHI transformants as compared to the host strain. One copy of the cbh2 expression cassette in which the cbh2 was expressed from the cbh1 promoter increased production of CBHII protein three- to four-fold when compared to the host strain. T. reesei strains producing elevated amounts of both CBHI and CBHII without EGI and EGII were constructed by replacing the egl1 locus with the coding region of the cbh1 gene and the egl2 locus with the coding region of cbh2. The cbh1 was expressed from its own promoter and the cbh2 gene using either the cbh1 or cbh2 promoter. Production of CBHI by the CBH-transformants was increased up to 1.6-fold and production of CBHII up to 3.4-fold as compared with the host strain. Approximately similar amounts of CBHII protein were produced by using cbh1 or cbh2 promoters. When the enzyme preparation with elevated CBHII content was used in biofinishing of cotton, better depilling and visual appearance were achieved than with the wild type preparation; however, the improvement was not as pronounced as with preparations with elevated levels of endoglucanases (EG).
机译:在寻找合适的纤维素酶组合物用于棉花的工业生物整理过程中,构建了五种不同类型的里氏木霉菌株以提高纤维二糖水解酶的产量:带有和不带有内切葡聚糖酶I(EGI)的CBHI生产过量,带有和不带有内切葡聚糖酶II(EGII)的CBHII生产过量没有主要的内切葡聚糖酶I和II会过量生产CBHI和CBHII。根据ELISA(酶联免疫吸附试验),一份额外的cbh1基因拷贝可将CBHI蛋白的产量提高1.3倍,将两份拷贝提高1.5倍。与宿主菌株相比,CBHI转化子中总分泌蛋白的水平增加。与宿主菌株相比,其中从cbh1启动子表达cbh2的cbh2表达盒的一个副本将CBHII蛋白的产量提高了三到四倍。通过用cbh1基因的编码区替换egl1基因座和用cbh2的编码区替换egl2基因座来构建产生升高量的CBHI和CBHII而没有EGI和EGII的里氏木霉菌株。 cbh1是使用cbh1或cbh2启动子从其自身的启动子和cbh2基因表达的。与宿主菌株相比,CBH转化子产生的CBHI产量增加了1.6倍,CBHII产生了3.4倍。通过使用cbh1或cbh2启动子产生了近似相似量的CBHII蛋白。当将具有较高CBHII含量的酶制剂用于棉花的生物整理时,与野生型制剂相比,可获得更好的脱毛和外观。但是,这种改善并不像内切葡聚糖酶(EG)水平升高的制剂那样明显。

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