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Exploring the Natural Fungal Biodiversity of Tropical and Temperate Forests toward Improvement of Biomass Conversion

机译:探索热带和温带森林的天然真菌生物多样性以改善生物量转化

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摘要

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.
机译:在这项研究中,对木材腐烂物种的自然真菌多样性进行了生物量解构研究。在2007年和2008年,主要在法国大都市的温带森林和主要在法属圭亚那的热带森林中收集了真菌分离株。我们使用形态学和分子鉴定工具回收并鉴定了74种单形培养物。在诱导条件下产生真菌分泌组之后,我们评估了这些真菌菌株增强商业里氏木霉纤维素酶鸡尾酒从生物质中释放可溶性糖的能力。 19个分离株的分泌组导致生物量转化率提高至少23%。在这些分离株中,Trametes gibbosa BRFM 952(马赛马术基金会)的分泌组表现最好,转化率提高了60%,这在Trametes和相关属中并不普遍。 T. gibbosa BRFM 952分泌基因组的酶促表征显示出对结晶纤维素的出乎意料的高活性,高于里氏木霉纤维素酶鸡尾酒的活性。该报告强调了对收集的真菌生物多样性进行系统高通量评估以改善木质纤维素生物质的酶促转化的兴趣。它使人们能够公正地鉴定具有高生物技术潜力的生物多样性产生的新真菌菌株。

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