首页> 外文期刊>Journal of land use science >ACE3 as a Master Transcriptional Factor Regulates Cellulase and Xylanase Production in Trichoderma orientalis EU7-22
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ACE3 as a Master Transcriptional Factor Regulates Cellulase and Xylanase Production in Trichoderma orientalis EU7-22

机译:ACE3作为母疗转录因子调节纤维素酶和木聚糖酶生产在Trichoderma Orientalis Eu7-22中

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摘要

As an efficient fungus in secreting cellulase, Trichoderma orientalis EU722 has an important value in the degradation of biomass. Compared with other filamentous fungi, it has an important, unique nature, and it deserves intensive study. Therefore, the function of positive transcriptional regulator ACE3 was investigated for cellulase and hemicellulase production in the strain. As the ace3 knockout strain, the Delta ace3 mutant was constructed by homologous recombination, so that the enzyme activities (FPA, CMC, CBH, BG, XYN) and the extracellular protein concentration in the mutant strain decreased to 17.8%, 8.3%, 0.14%, 1.8%, 6.8%, and 19.2% of the parent strain, respectively. The transcription level of cellulase and hemicellulase genes also decreased significantly. The result of SDSPAGE demonstrated that the Delta ace3 mutant only clearly showed a protein band, which was characterized by protein profiling with LC-MS/MS and identified as the GH10 family of xylanases. It was proposed that ACE3 is a main up-regulation transcriptional factor of T. orientalis EU7-22 and expected to be applicable to further genetic modification.
机译:作为分泌纤维素酶的有效真菌,Trichoderma Orientalis Eu722具有在生物质的降解中具有重要价值。与其他丝状真菌相比,它具有重要,独特的性质,值得深入研究。因此,研究了阳性转录调节器ACE3的功能在菌株中进行纤维素酶和半纤维素酶产生。作为ACE3敲除菌株,δACE3突变体通过同源重组构建,使诱变菌株中的酶活性(FPA,CMC,CBH,BG,Xyn)和细胞外蛋白质浓度降至17.8%,8.3%,0.14分别为母体菌株的%,1.8%,6.8%和19.2%。纤维素酶和半纤维素酶基因的转录水平显着下降。 SDSPage的结果证明了ΔAce3突变体仅清楚地显示蛋白质带,其特征在于用LC-MS / MS的蛋白质分析,并被鉴定为木质酶的GH10系列。提出ACE3是T. Orientalis EU7-22的主要上调转录因子,预计将适用于进一步的遗传修饰。

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