加州一年生草地土壤真菌分离物的生化和分子特征。

IF 6.1 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Taren Bouwman, Lauren Higa, Caitlyn Lee, Shaina Young, Arel Ragasa, Gregory Bonito, Nhu H. Nguyen, Zhi-Yan Du
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引用次数: 0

摘要

真菌在生态系统功能中起着关键作用,驱动分解、养分循环和共生相互作用等过程。其广泛的酶促策略使复杂有机材料的分解和有机废物流的增值成为可能,为生物产品的开发提供了可持续的途径。真菌由于其高脂含量和对多种原料的适应性,在工业应用方面也表现出巨大的潜力,特别是在生物燃料和营养食品生产方面。曲霉、摩氏菌和林奈曼菌等属已经显示出卓越的脂质生产能力和独特的脂肪酸谱,包括花生四烯酸(ARA)和油酸等营养药品的高产率。本研究从加州草地土壤中分离了未被鉴定的真菌菌株,分析了它们的系统发育、形态、生长速率、脂质含量和脂肪酸谱。结果显示,分离菌株之间存在显著的遗传和生理多样性,其中摩氏菌菌株由于其优越的脂质含量和ARA和油酸的生产能力而最有可能在工业上应用。共聚焦显微镜证实了一致的脂滴形态,而系统发育分析揭示了新的物种水平的多样性。确定了用于生物燃料和营养品生产的关键菌株,突出了它们的工业潜力。这些发现强调了真菌作为生物技术工具的多功能性,并为进一步探索和利用这些有前途的菌株在工业过程中提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biochemical and molecular characterization of fungal isolates from California annual grassland soil

Biochemical and molecular characterization of fungal isolates from California annual grassland soil

Biochemical and molecular characterization of fungal isolates from California annual grassland soil

Biochemical and molecular characterization of fungal isolates from California annual grassland soil

Fungi play a pivotal role in ecosystem functionality, driving processes such as decomposition, nutrient cycling, and symbiotic interactions. Their wide enzymatic strategies enable the breakdown of complex organic materials and the valorization of organic waste streams, providing sustainable pathways for bioproduct development. Fungi also exhibit significant potential in industrial applications, particularly in biofuel and nutraceutical production, owing to their high lipid content and adaptability to diverse feedstocks. Genera such as Aspergillus, Mortierella, and Linnemannia have demonstrated exceptional lipid production capabilities and unique fatty acid profiles, including high yields of nutraceuticals like arachidonic acid (ARA) and oleic acid. This study explored uncharacterized fungal strains isolated from California grassland soils, analyzing their phylogeny, morphology, growth rates, lipid content, and fatty acid profiles. Results revealed notable genetic and physiological diversity among the isolates, with Mortierella strains emerging as the most promising for industrial applications due to their superior lipid content and productivity of ARA and oleic acid. Confocal microscopy confirmed consistent lipid droplet morphology, while phylogenetic analysis uncovered novel species-level diversity. Key strains were identified for biofuel and nutraceutical production, highlighting their industrial potential. These findings underscore the versatility of fungi as biotechnological tools and provide a foundation for further exploration and utilization of these promising strains in industrial processes.

Graphical Abstract

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来源期刊
Biotechnology for Biofuels
Biotechnology for Biofuels 工程技术-生物工程与应用微生物
自引率
0.00%
发文量
0
审稿时长
2.7 months
期刊介绍: Biotechnology for Biofuels is an open access peer-reviewed journal featuring high-quality studies describing technological and operational advances in the production of biofuels, chemicals and other bioproducts. The journal emphasizes understanding and advancing the application of biotechnology and synergistic operations to improve plants and biological conversion systems for the biological production of these products from biomass, intermediates derived from biomass, or CO2, as well as upstream or downstream operations that are integral to biological conversion of biomass. Biotechnology for Biofuels focuses on the following areas: • Development of terrestrial plant feedstocks • Development of algal feedstocks • Biomass pretreatment, fractionation and extraction for biological conversion • Enzyme engineering, production and analysis • Bacterial genetics, physiology and metabolic engineering • Fungal/yeast genetics, physiology and metabolic engineering • Fermentation, biocatalytic conversion and reaction dynamics • Biological production of chemicals and bioproducts from biomass • Anaerobic digestion, biohydrogen and bioelectricity • Bioprocess integration, techno-economic analysis, modelling and policy • Life cycle assessment and environmental impact analysis
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