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从红树林真菌 Pestalotiopsis sp. 中鉴定盐适应分泌的木质纤维素酶

Characterization of salt-adapted secreted lignocellulolytic enzymes from the mangrove fungus Pestalotiopsis sp.

机构信息

INRA, UMR1163-Biotechnologie des Champignons Filamenteux, ESIL-Polytech, Aix-Marseille University, 13288 Marseille, France.

出版信息

Nat Commun. 2013;4:1810. doi: 10.1038/ncomms2850.

Abstract

Fungi are important for biomass degradation processes in mangrove forests. Given the presence of sea water in these ecosystems, mangrove fungi are adapted to high salinity. Here we isolate Pestalotiopsis sp. NCi6, a halotolerant and lignocellulolytic mangrove fungus of the order Xylariales. We study its lignocellulolytic enzymes and analyse the effects of salinity on its secretomes. De novo transcriptome sequencing and assembly indicate that this fungus possesses of over 400 putative lignocellulolytic enzymes, including a large fraction involved in lignin degradation. Proteomic analyses of the secretomes suggest that the presence of salt modifies lignocellulolytic enzyme composition, with an increase in the secretion of xylanases and cellulases and a decrease in the production of oxidases. As a result, cellulose and hemicellulose hydrolysis is enhanced but lignin breakdown is reduced. This study highlights the adaptation to salt of mangrove fungi and their potential for biotechnological applications.

摘要

真菌在红树林森林的生物质降解过程中起着重要作用。鉴于这些生态系统中存在海水,红树林真菌已适应高盐度环境。在这里,我们分离出了 Pestalotiopsis sp. NCi6,一种耐盐和木质纤维素降解的红树林丝状真菌,属于 Xylariales 目。我们研究了它的木质纤维素降解酶,并分析了盐度对其分泌谱的影响。从头转录组测序和组装表明,该真菌拥有超过 400 种可能的木质纤维素降解酶,其中包括大量参与木质素降解的酶。分泌谱的蛋白质组学分析表明,盐的存在改变了木质纤维素降解酶的组成,木聚糖酶和纤维素酶的分泌增加,氧化酶的产生减少。因此,纤维素和半纤维素的水解增强,但木质素的分解减少。这项研究强调了红树林真菌对盐的适应及其在生物技术应用中的潜力。

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