Saprotrophic Wood Decay Ability and Plant Cell Wall Degrading Enzyme System of the White Rot Fungus Crucibulum laeve: Secretome, Metabolome and Genome Investigations.

IF 4.2 2区 生物学 Q2 MICROBIOLOGY Journal of Fungi Pub Date : 2024-12-31 DOI:10.3390/jof11010021
Alexander V Shabaev, Olga S Savinova, Konstantin V Moiseenko, Olga A Glazunova, Tatyana V Fedorova
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Abstract

The basidiomycete Crucibulum laeve strain LE-BIN1700 (Agaricales, Nidulariaceae) is able to grow on agar media supplemented with individual components of lignocellulose such as lignin, cellulose, xylan, xyloglucan, arabinoxylan, starch and pectin, and also to effectively destroy and digest birch, alder and pine sawdust. C. laeve produces a unique repertoire of proteins for the saccharification of the plant biomass, including predominantly oxidative enzymes such as laccases (family AA1_1 CAZymes), GMC oxidoreductases (family AA3_2 CAZymes), FAD-oligosaccharide oxidase (family AA7 CAZymes) and lytic polysaccharide monooxygenases (family LPMO X325), as well as accompanying acetyl esterases and loosenine-like expansins. Metabolomic analysis revealed that, specifically, monosaccharides and carboxylic acids were the key low molecular metabolites in the C. laeve culture liquids in the experimental conditions. The proportion of monosaccharides and polyols in the total pool of identified compounds increased on the sawdust-containing media. Multiple copies of the family AA1_1, AA3_2, AA7 and LPMOs CAZyme genes, as well as eight genes encoding proteins of the YvrE superfamily (COG3386), which includes sugar lactone lactonases, were predicted in the C. laeve genome. According to metabolic pathway analysis, the litter saprotroph C. laeve can catabolize D-gluconic and D-galacturonic acids, and possibly other aldonic acids, which seems to confer certain ecological advantages.

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腐养木材腐烂能力和植物细胞壁降解酶系统:分泌组、代谢组和基因组研究。
担子菌crucbulum laeve菌株LE-BIN1700 (Agaricales, Nidulariaceae)能够在添加木质素、纤维素、木聚糖、木葡聚糖、阿拉伯木聚糖、淀粉和果胶等木质纤维素组分的琼脂培养基上生长,并能有效地破坏和消化桦木、桤木和松木锯末。C. laeve为植物生物质的糖化产生独特的蛋白质库,包括主要的氧化酶,如漆酶(AA1_1 CAZymes家族)、GMC氧化还原酶(AA3_2 CAZymes家族)、fad -寡糖氧化酶(AA7 CAZymes家族)和多糖单加氧酶(LPMO X325家族),以及伴随的乙酰酯酶和松散样扩张酶。代谢组学分析表明,在实验条件下,单糖和羧酸是香茅培养液中关键的低分子代谢产物。在含木屑培养基上,单糖和多元醇在鉴定化合物总数中的比例增加。结果表明,在香菇基因组中存在多个AA1_1、AA3_2、AA7和LPMOs CAZyme家族基因,以及编码YvrE超家族(COG3386)蛋白的8个基因,其中包括糖内酯内酯酶。根据代谢途径分析,凋落物腐殖酸C. laeve能分解d -葡萄糖酸和d -半乳糖醛酸,也可能分解其他醛酸,这似乎具有一定的生态优势。
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来源期刊
Journal of Fungi
Journal of Fungi Medicine-Microbiology (medical)
CiteScore
6.70
自引率
14.90%
发文量
1151
审稿时长
11 weeks
期刊介绍: Journal of Fungi (ISSN 2309-608X) is an international, peer-reviewed scientific open access journal that provides an advanced forum for studies related to pathogenic fungi, fungal biology, and all other aspects of fungal research. The journal publishes reviews, regular research papers, and communications in quarterly issues. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on paper length. Full experimental details must be provided so that the results can be reproduced.
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