细菌
甲烷
多糖
抗氧化剂
化学
甲烷厌氧氧化
胞外多糖
食品科学
环境化学
生物
有机化学
遗传学
作者
Shen Li,Yuan Liu,Zixi Gao,Chao An,Hui Gu,Heng Yin,Rongzhan Fu,Liang Shi,Wenjiao Xue,Daidi Fan,Qiang Fei
标识
DOI:10.1021/acs.jafc.5c01087
摘要
Bioconversion of methane into functional polysaccharides presents a promising strategy for mitigating methane-induced greenhouse gas emissions and addressing the limitations of plant-derived polysaccharide and sugar-based microbial polysaccharides production. In this study, the novel methane-derived polysaccharide (MePS) was obtained from a newly isolated methanotrophic bacterium Alkalicoccus glycogenes WONF2802. Structural characterization found that MePS is a branched-chain glucan with a weight-average molecular weight of 283.2 kDa. Additionally, MePS exhibited considerable antioxidant capacities in both in vitro biochemical assays and the H2O2-induced oxidative stress cell model. This work establishes a potential pathway for polysaccharide production, reducing reliance on plant and sugar-based feedstocks, while offering a new strategy for methane emission reduction.
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