Molecular Biotechnology of Eukaryotes Laboratory, Centre of Biotechnology of Sfax, University of Sfax, Tunisia.
Laboratory of Molecular and Cellular Screening Processes, Center of Biotechnology of Sfax, University of Sfax, Tunisia.
FEBS Open Bio. 2023 Apr;13(4):670-683. doi: 10.1002/2211-5463.13573. Epub 2023 Feb 17.
Fungi are of great importance in biotechnology, for example in the production of enzymes and metabolites. The main goal of this study was to obtain a high-coverage draft of the Stachybotrys microspora genome and to annotate and analyze the genome sequence data. The rare fungus S. microspora N1 strain is distinguished by its ability to grow in an alkaline halophilic environment and to efficiently secrete cellulolytic enzymes. Here we report the draft genome sequence composed of 3715 contigs, a genome size of 35 343 854 bp, with a GC content of 53.31% and a coverage around 20.5×. The identification of cellulolytic genes and of their corresponding functions was carried out through analysis and annotation of the whole genome sequence. Forty-six cellulases were identified using the fungicompanion bioinformatic tool. Interestingly, an S. microspora endoglucanase selected from those with a low isoelectric point was predicted to have a halophilic profile and share significant homology with a well-known bacterial halophilic cellulase. These results confirm previous biochemical studies revealing a halophilic character, which is a very rare feature among fungal cellulases. All these properties suggest that cellulases of S. microspora may have potential for use in the biofuel, textile, and detergent industries.
真菌在生物技术中具有重要意义,例如在生产酶和代谢物方面。本研究的主要目的是获得高覆盖率的链格孢Draft 基因组,并对基因组序列数据进行注释和分析。稀有真菌链格孢 N1 菌株的特点是能够在碱性嗜盐环境中生长,并能有效地分泌纤维素酶。在这里,我们报告了由 3715 个 contigs 组成的基因组草图,基因组大小为 35343854bp,GC 含量为 53.31%,覆盖率约为 20.5×。通过对整个基因组序列的分析和注释,鉴定了纤维素酶基因及其相应的功能。使用 fungicompanion 生物信息学工具鉴定了 46 种纤维素酶。有趣的是,从等电点较低的链格孢内切葡聚糖酶中预测到一个具有嗜盐特性的内切葡聚糖酶,与一种著名的细菌嗜盐纤维素酶具有显著的同源性。这些结果证实了先前的生化研究揭示的嗜盐特性,这在真菌纤维素酶中非常罕见。所有这些特性表明,链格孢的纤维素酶可能具有在生物燃料、纺织和洗涤剂行业应用的潜力。