Genomic mining of Geobacillus stearothermophilus GF16 for xylose production from hemicellulose-rich biomasses using secreted enzymes
Геномный поиск в Geobacillus stearothermophilus GF16 для получения ксилозы из гемицеллюлозосодержащих биомасс с использованием секретируемых ферментов
2024-04-28
SCID: 54.1/dwgynp7k
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Geobacillus stearothermophilus GF16hemicellulose hydrolysis of agri-food wastessecretome xylanase and β-xylosidase activitiesthermostable glycoside hydrolasesxylose production from hemicellulose-rich biomass
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Abstract (AI)
The valorization of lignocellulosic biomass, derived from various bio-waste materials, has received considerable attention as a sustainable approach to improve production chains while reducing environmental impact. Microbial enzymes have emerged as key players in the degradation of polysaccharides, offering versatile applications in biotechnology and industry. Among these enzymes, glycoside hydrolases (GHs) play a central role. Xylanases, in particular, are used in a wide range of applications and are essential for the production of xylose, which can be fermented into bioethanol or find use in many other industries. Currently, fungal secretomes dominate as the main reservoir of lignocellulolytic enzymes, but thermophilic microorganisms offer notable advantages in terms of enzyme stability and production efficiency. Here we present the genomic characterization of Geobacillus stearothermophilus GF16 to identify genes encoding putative enzymes involved in lignocellulose degradation. Thermostable GHs secreted by G. stearothermophilus GF16 were investigated and found to be active on different natural polysaccharides and synthetic substrates, revealing an array of inducible GH activities. In particular, the concentrated secretome possesses significant thermostable xylanase and β-xylosidase activities (5×103 U/L and 1.7×105 U/L, respectively), highlighting its potential for application in biomass valorization. We assessed the hemicellulose hydrolysis capabilities of various agri-food wastes using the concentrated secretome of the strain cultivated on xylan. An impressive 300-fold increase in xylose release compared to a commercially available cocktail was obtained with the secretome, underscoring the remarkable efficacy of this approach.
Key Findings
1
Genomic characterization of Geobacillus stearothermophilus GF16 identified genes encoding putative lignocellulose-degrading enzymes, including glycoside hydrolases.
2
Secreted thermostable glycoside hydrolases from G. stearothermophilus GF16 are active on diverse natural polysaccharides and synthetic substrates, showing inducible GH activities.
3
The concentrated secretome exhibits significant thermostable xylanase activity measured at 5×10^3 U/L and β-xylosidase activity at 1.7×10^5 U/L.
4
Using the concentrated secretome produced a 300-fold increase in xylose release compared to a commercially available enzyme cocktail, demonstrating strong potential for biomass valorization.
5
When cultivated on xylan, the strain's concentrated secretome hydrolyzes hemicellulose in agri-food wastes and releases xylose with markedly higher efficiency than a commercial cocktail.
Research Object
Concentrated secretome (secreted enzymes) of Geobacillus stearothermophilus GF16
Research Subject
Thermostable glycoside hydrolase activities (notably xylanase and β-xylosidase) and their efficiency in hydrolyzing hemicellulose-rich agri-food wastes to produce xylose
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2024-04-28
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