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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Factors involved in the response to change of agitation rate during cellulase production from Penicillium decumbens JUA10-1
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Factors involved in the response to change of agitation rate during cellulase production from Penicillium decumbens JUA10-1

机译:枯草青霉JUA10-1纤维素酶生产过程中对搅拌速率变化的响应所涉及的因素

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摘要

Improvement of agitation is a commonly used approach for the optimization of fermentation processes. In this report, the response to improving agitation rate from 150 to 250 rpm on cellulase production from Penicillium decumbens JUA10-1 was investigated. It was shown that the production of all the major components of the cellulase mixture increased following improved agitation. Further investigations showed that at least three factors are involved in this improvement: the improved biomass accumulation, proportion of active/mature cellulases, and cellulase transcription level. The transcription levels of the cellulase repressing transcription factor ace1 and the cellulase activating transcription factor xlnR, however, both declined when a higher agitation was applied. These observations, along with our analysis of the carbon catabolite repressor CreA, lead to the suggestion that the molecular mechanism underlying improved cellulase transcription is the competition of two concurrent effects following improved agitation: CreA-mediated derepression induced by the downregulation of ace1, and CreA-mediated deactivation induced by the downregulation of xlnR.
机译:改善搅拌是优化发酵过程的常用方法。在本报告中,研究了从枯草青霉JUA10-1生产纤维素酶对将搅拌速度从150 rpm提高到250 rpm的响应。结果表明,随着搅拌的改善,纤维素酶混合物的所有主要成分的产量增加。进一步的研究表明,至少有三个因素参与了这一改进:提高的生物量积累,活性/成熟纤维素酶的比例以及纤维素酶的转录水平。但是,当施加较高的搅动时,抑制纤维素酶的转录因子ace1和激活纤维素酶的转录因子xlnR的转录水平均下降。这些观察结果,以及我们对碳分解代谢物阻遏物CreA的分析,提出了以下建议:改善纤维素酶转录的分子机制是搅拌后两种并发效应的竞争:由ace1下调引起的CreA介导的抑制和CreA xlnR的下调诱导介导的介导的失活。

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