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A monograph of Allantonectria, Nectria, and Pleonectria (Nectriaceae, Hypocreales, Ascomycota) and their pycnidial, sporodochial, and synnematous anamorphs.《Allantonectria、Nectria 和 Pleonectria(Nectriaceae、Hypocreales、Ascomycota)及其瓶梗孢、分生孢子座和束丝组织的无性型专论》。
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Fusarium verticillioides secretome as a source of auxiliary enzymes to enhance saccharification of wheat straw.镰刀菌(Fusarium verticillioides) secretome 作为一种辅助酶源,可提高小麦秸秆的糖化效率。
Bioresour Technol. 2012 Jun;114:589-96. doi: 10.1016/j.biortech.2012.03.009. Epub 2012 Mar 10.
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Characterization of cellulolytic extract from Pycnoporus sanguineus PF-2 and its application in biomass saccharification.从红栓菌 PF-2 中提取的纤维素酶的特性及其在生物质糖化中的应用。
Appl Biochem Biotechnol. 2012 Mar;166(6):1586-603. doi: 10.1007/s12010-012-9565-3. Epub 2012 Feb 11.
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Post-genomic analyses of fungal lignocellulosic biomass degradation reveal the unexpected potential of the plant pathogen Ustilago maydis.真菌木质纤维素生物质降解的后基因组分析揭示了植物病原体玉米黑粉菌(Ustilago maydis)出人意料的潜力。
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Heterologous expression of Pycnoporus cinnabarinus cellobiose dehydrogenase in Pichia pastoris and involvement in saccharification processes.在巴斯德毕赤酵母中异源表达白腐菌木聚糖酶和参与糖化过程。
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The laccase-catalyzed modification of lignin for enzymatic hydrolysis.漆酶催化木质素修饰及其对酶解的影响。
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Peculiarities of Pycnoporus species for applications in biotechnology.白肉齿菌属在生物技术中的应用特点。
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Effects of grinding processes on enzymatic degradation of wheat straw.磨浆工艺对小麦秸秆酶解效果的影响。
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Trichoderma reesei RUT-C30--thirty years of strain improvement.里氏木霉 RUT-C30——三十年的菌株改良。
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Oxidoreductive cellulose depolymerization by the enzymes cellobiose dehydrogenase and glycoside hydrolase 61.酶(cellobiose dehydrogenase 和 glycoside hydrolase 61)对氧化还原纤维素的解聚作用。
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探索热带和温带森林中的天然真菌生物多样性,以提高生物质转化效率。

Exploring the natural fungal biodiversity of tropical and temperate forests toward improvement of biomass conversion.

机构信息

INRA, UMR1163 BCF, Marseille, France.

出版信息

Appl Environ Microbiol. 2012 Sep;78(18):6483-90. doi: 10.1128/AEM.01651-12. Epub 2012 Jul 6.

DOI:10.1128/AEM.01651-12
PMID:22773628
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3426683/
Abstract

In this study, natural fungal diversity in wood-decaying species was explored for biomass deconstruction. In 2007 and 2008, fungal isolates were collected in temperate forests mainly from metropolitan France and in tropical forests mainly from French Guiana. We recovered and identified 74 monomorph cultures using morphological and molecular identification tools. Following production of fungal secretomes under inductive conditions, we evaluated the capacity of these fungal strains to potentiate a commercial Trichoderma reesei cellulase cocktail for the release of soluble sugars from biomass. The secretome of 19 isolates led to an improvement in biomass conversion of at least 23%. Of the isolates, the Trametes gibbosa BRFM 952 (Banque de Ressources Fongiques de Marseille) secretome performed best, with 60% improved conversion, a feature that was not universal to the Trametes and related genera. Enzymatic characterization of the T. gibbosa BRFM 952 secretome revealed an unexpected high activity on crystalline cellulose, higher than that of the T. reesei cellulase cocktail. This report highlights the interest in a systematic high-throughput assessment of collected fungal biodiversity to improve the enzymatic conversion of lignocellulosic biomass. It enabled the unbiased identification of new fungal strains issued from biodiversity with high biotechnological potential.

摘要

在这项研究中,我们探索了木质腐朽物种中的天然真菌多样性,以进行生物量解构。2007 年和 2008 年,我们主要从法国大都市地区的温带森林和法属圭亚那的热带森林中采集了真菌分离物。我们使用形态学和分子鉴定工具回收并鉴定了 74 个单态培养物。在诱导条件下产生真菌分泌物后,我们评估了这些真菌菌株增强商业里氏木霉纤维素酶混合物从生物质中释放可溶性糖的能力。19 个分离物的分泌物至少将生物质转化率提高了 23%。在分离物中,瑞氏木霉 BRFM 952(马赛真菌资源库)的分泌物表现最佳,转化率提高了 60%,而并非所有瑞氏木霉和相关属的真菌都具有这种特征。对瑞氏木霉 BRFM 952 分泌物的酶学特性进行分析,发现其对结晶纤维素具有出乎意料的高活性,高于里氏木霉纤维素酶混合物的活性。本报告强调了系统地高通量评估收集的真菌生物多样性以提高木质纤维素生物质酶转化的重要性。它使我们能够公正地识别出具有高生物技术潜力的新型真菌菌株,这些菌株来源于生物多样性。