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利用新分离出的具有高甘露聚糖酶活性的枯草芽孢杆菌F6水解棕榈仁粕纤维。

Hydrolysis of palm kernel meal fibre using a newly isolated Bacillus subtilis F6 with high mannanase activity.

作者信息

Ong Wei Li, Chan Kam Lock, Suwanto Antonius, Li Zhi, Ng Kian-Hong, Zhou Kang

机构信息

Wilmar Innovation Centre, Wilmar International Limited, 28 Biopolis Rd, Singapore, 138568, Singapore.

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore.

出版信息

Bioresour Bioprocess. 2024 Dec 25;11(1):113. doi: 10.1186/s40643-024-00826-9.

Abstract

Palm kernel meal (PKM) presents a challenge for non-ruminant livestock feeding due to its high fibre content predominantly in the form of mannan. Microbial fermentation offers a sustainable solution for fibre hydrolysis in lignocellulosic biomass. In this study, a Bacillus subtilis strain (F6), with high mannanase secretion capability, was isolated from the environment. Fermentation of PKM with B. subtilis F6 resulted in at least a 10% reduction in neutral detergent fibre, decreasing from 78.4 to 60.9% within 24 h. Notably, B. subtilis F6 rapidly responded to PKM, producing significant mannanase activity within 6 h, facilitating quick fibre degradation. Transcriptome analysis identified key enzymes involved in this process, with β-mannanase GmuG showing the highest increase in expression (45.2-fold) after fermentation. Purified recombinant GmuG exhibited strong PKM hydrolysis activity, primarily releasing mannobiose and mannotriose. Characterization of GmuG using locust bean gum as a substrate revealed an optimum temperature of 50-55 °C and pH optima at 5.0 and 9.0. This study highlights the potential of B. subtilis F6 and its mannanase GmuG for efficient PKM fibre hydrolysis, and provides insights into their application in the valorization of mannan-rich bioresources.

摘要

棕榈仁粕(PKM)因其高纤维含量(主要以甘露聚糖形式存在),对非反刍家畜饲养构成挑战。微生物发酵为木质纤维素生物质中的纤维水解提供了一种可持续的解决方案。在本研究中,从环境中分离出一株具有高甘露聚糖酶分泌能力的枯草芽孢杆菌菌株(F6)。枯草芽孢杆菌F6对PKM进行发酵,导致中性洗涤纤维至少降低10%,在24小时内从78.4%降至60.9%。值得注意的是,枯草芽孢杆菌F6对PKM迅速做出反应,在6小时内产生显著的甘露聚糖酶活性,促进纤维快速降解。转录组分析确定了参与该过程的关键酶,其中β-甘露聚糖酶GmuG在发酵后表达增加最高(45.2倍)。纯化的重组GmuG表现出很强的PKM水解活性,主要释放出甘露二糖和甘露三糖。以刺槐豆胶为底物对GmuG进行表征,结果显示其最适温度为50-55°C,最适pH值为5.0和9.0。本研究突出了枯草芽孢杆菌F6及其甘露聚糖酶GmuG在高效水解PKM纤维方面的潜力,并为它们在富含甘露聚糖的生物资源增值中的应用提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/692d/11669640/0f83eaee7501/40643_2024_826_Fig1_HTML.jpg

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