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Cellulase productivity of Trichoderma reesei mutants developed in Japan varies with varying pH conditions

机译:在日本开发的Trichoderma Reesei突变体的纤维素酶生产率因不同的pH条件而异

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The ascomycete Trichoderma reesei is known to produce a variety of cellulases and hemicellulases and the hyper-cellulolytic mutants of this fungus are useful as industrial cellulase producers. In Japan, PC-3-7, derived from the early mutant QM9414, is well-known as a cellulase hyperproducing mutant. In addition to the productivity of enzymes, the composition of secreted enzymes greatly influences biomass saccharification. Therefore, we evaluated the cellulase productivity of T. reesei mutants in Japan at different pH as a factor influencing enzyme production. At higher pH values, QM9414 exhibited reduced cellulase productivity whereas PC-3-7 maintained high cellulase productivity and gene expression at the transcriptional level. The gene encoding the pH-responsive transcription factor PACI did not mutate in PC-3-7, and its expression pattern against different pH conditions was similar between QM9414 and PC-3-7. Furthermore, the deletion of pac1 encoding PACI caused different expression patterns of cellulase genes between QM9414 and PC-3-7. Therefore, we suggest that T. reesei possesses a pH-responsive cellulase production mechanism that is different from the PACI-related mechanism. Finally, we identified that N-25, a strain developed at an early stage of mutant development acquired cellulase productivity at a higher pH. In this investigation, we also found and tested candidate genes possibly affecting pH response using comparative genome analysis. (C) 2019, The Society for Biotechnology, Japan. All rights reserved.
机译:已知Ascomycete Trichoderma Reesei产生各种纤维素酶和半纤维素酶,并且这种真菌的超细纤维素突变体可用作工业纤维素酶生产商。在日本,来自早期突变体QM9414的PC-3-7是众所周知的纤维素酶超级突变体。除了酶的生产率外,分泌酶的组成极大地影响生物质糖化。因此,我们在不同pH下评估了日本T.Reesei突变体的纤维素酶生产率作为影响酶产生的因素。在较高的pH值下,QM9414表现出降低的纤维素酶生产率,而PC-3-7在转录水平保持高纤维素酶生产率和基因表达。编码pH-响应转录因子PACI的基因在PC-3-7中不突变,并且在QM9414和PC-3-7之间的不同pH条件下的表达模式类似。此外,PAC1编码PACI的缺失引起了QM9414和PC-3-7之间的纤维素酶基因的不同表达模式。因此,我们表明T.Reesei具有与PACI相关机制不同的pH响应纤维素酶生产机制。最后,我们鉴定了N-25,在突变体发育早期开发的菌株在更高的pH下获得纤维素酶生产率。在该研究中,我们还发现并测试了使用对比基因组分析影响pH反应的候选基因。 (c)2019年,日本生物技术协会。版权所有。

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