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首页> 外文期刊>Biotechnology for Biofuels >Insights into high-efficiency lignocellulolytic enzyme production by Penicillium oxalicum GZ-2 induced by a complex substrate
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Insights into high-efficiency lignocellulolytic enzyme production by Penicillium oxalicum GZ-2 induced by a complex substrate

机译:复杂底物诱导草酸青霉GZ-2高效生产木质纤维素酶的见解

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摘要

Background Agricultural residue is more efficient than purified cellulose at inducing lignocellulolytic enzyme production in Penicillium oxalicum GZ-2, but in Trichoderma reesei RUT-C30, cellulose induces a more efficient response. To understand the reasons, we designed an artificially simulated plant biomass (cellulose plus xylan) to study the roles and relationships of each component in the production of lignocellulolytic enzymes by P. oxalicum GZ-2. Results The changes in lignocellulolytic enzyme activity, gene expression involving (hemi)cellulolytic enzymes, and the secretome of cultures grown on Avicel (A), xylan (X), or a mixture of both (AX) were studied. The addition of xylan to the cellulose culture did not affect fungal growth but significantly increased the activity of cellulase and hemicellulase. In the AX treatment, the transcripts of cellulase genes (egl1, egl2, egl3, sow, and cbh2) and hemicellulase genes (xyl3 and xyl4) were significantly upregulated (P <0.05). The proportion of biomass-degrading proteins in the secretome was altered; in particular, the percentage of cellulases and hemicellulases was increased. The percentage of cellulases and hemicellulases in the AX secretome increased from 4.5% and 7.6% to 10.3% and 21.8%, respectively, compared to the secretome of the A treatment. Cellobiohydrolase II (encoded by cbh2) and xylanase II (encoded by xyl2) were the main proteins in the secretome, and their corresponding genes (cbh2 and xyl2) were transcripted at the highest levels among the cellulolytic and xylanolytic genes. Several important proteins such as swollenin, cellobiohydrolase, and endo-beta-1,4-xylanase were only induced by AX. Bray-Curtis similarity indices, a dendrogram analysis, and a diversity index all demonstrated that the secretome produced by P. oxalicum GZ-2 depended on the substrate and that strain GZ-2 directionally adjusted the compositions of lignocellulolytic enzymes in its secretome to preferably degrade a complex substrate. Conclusion The addition of xylan to the cellulose medium not only induces more hemicellulases but also strongly activates cellulase production. The proportion of the biomass-degrading proteins in the secretome was altered significantly, with the proportion of cellulases and hemicellulases especially increased. Xylan and cellulose have positively synergistic effects, and they play a key role in the induction of highly efficient lignocellulolytic enzymes.
机译:背景技术农残在诱导草酸青霉GZ-2中木质纤维素分解酶生产方面比纯化的纤维素更有效,但是在里氏木霉RUT-C30中,纤维素诱导了更有效的响应。为了了解原因,我们设计了一个人工模拟的植物生物质(纤维素加木聚糖),以研究草酸假单胞菌GZ-2在木质纤维素分解酶生产中各成分的作用和关系。结果研究了木质纤维素分解酶活性,涉及(半)纤维素分解酶的基因表达以及在Avicel(A),木聚糖(X)或两者的混合物(AX)上培养的分泌物的变化。在纤维素培养物中添加木聚糖不会影响真菌的生长,但是会显着增加纤维素酶和半纤维素酶的活性。在AX处理中,纤维素酶基因(egl1,egl2,egl3,母猪和cbh2)和半纤维素酶基因(xyl3和xyl4)的转录显着上调(P <0.05)。分泌组中降解生物质的蛋白质的比例发生了变化;特别地,纤维素酶和半纤维素酶的百分比增加。与A处理的分泌液组相比,AX分泌液组中的纤维素酶和半纤维素酶的百分比分别从4.5%和7.6%增加到10.3%和21.8%。纤维二糖水解酶II(由cbh2编码)和木聚糖酶II(由xyl2编码)是分泌组中的主要蛋白质,其相应的基因(cbh2和xyl2)在纤维素分解和木聚糖分解基因中的转录水平最高。几种重要的蛋白质,例如膨胀素,纤维二糖水解酶和内切β-1,4-木聚糖酶仅由AX诱导。 Bray-Curtis相似性指数,树状图分析和多样性指数均证明,草酸假单胞菌GZ-2产生的分泌组依赖于底物,菌株GZ-2定向调节其分泌组中木质纤维素分解酶的组成,以使其降解。复杂的基材。结论在纤维素培养基中添加木聚糖不仅可以诱导更多的半纤维素酶,而且还可以强烈激活纤维素酶的产生。分泌组中降解生物质的蛋白质的比例发生了显着变化,其中纤维素酶和半纤维素酶的比例特别增加。木聚糖和纤维素具有积极的协同作用,它们在诱导高效木质纤维素分解酶中起关键作用。

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