基于代谢组学的三种秸秆水热解产物成分分析OA
Metabolomics-based Analysis of the Compositional Characteristics of Hydrothermal Liquefaction Products from Three Types of Straw
为比较不同秸秆水热解产物的成分差异,本研究基于代谢组学方法系统分析了烟草、辣椒和玉米 3种秸秆水热解液的代谢物组成特征及差异.结果表明,烟草秸秆在水热条件下具有较高的降解率(43.25%),可溶性蛋白和总糖含量最高.代谢组分析共鉴定出 11类 2 559个代谢物,烟草秸秆水热解液中脂质和有机酸类代谢物显著富集,差异代谢物包括烟草特有的吡啶类生物碱阿那他宾(Anatabine)及前列腺素类等多种脂质信号分子.KEGG通路富集分析显示,差异代谢物主要涉及能量代谢、氨基酸代谢、生物碱生物合成及卡尔文循环固碳代谢通路,体现出烟草秸秆在能量转化和碳固定方面的特征与优势.本研究揭示了烟草秸秆水热解产物的特色与价值,为烟草秸秆资源的高值化利用提供了科学依据.
To compare the compositional differences among hydrothermal liquefaction products of various straw types,this study systematically analyzed the metabolite composition and variations in hydrothermal liquefaction liquids from tobacco,pepper,and corn straws using metabolomics methods.The results indicated that tobacco straw exhibited the highest degradation rate(43.25%)under hydrothermal conditions,along with the highest soluble protein and total sugar contents.Metabolomic analysis identified 2 559 metabolites across 11 categories,with hydrothermal liquefaction liquids of the tobacco straw showing significant enrichment of lipid and organic acid metabolites.Differential metabolites included anatabine(a nicotine-derived alkaloid unique to tobacco)and various lipid signaling molecules such as prostaglandins.KEGG pathway enrichment analysis revealed that the differential metabolites were primarily associated with energy metabolism,amino acid metabolism,alkaloid biosynthesis,and arachidonic acid metabolism pathways,highlighting the characteristics and advantages of tobacco straw in energy conversion and carbon fixation.This study elucidates the unique features and value of tobacco straw hydrothermal liquefaction products,providing a scientific basis for the high-value utilization of tobacco straw resources.
刘建涛;李清钰;余雪洋;林树光;邰少杰;孔高原;李义强;尤祥伟;袁源
中国农业科学院烟草研究所,青岛 266101||中国农业科学院研究生院,北京 100081中国农业科学院烟草研究所,青岛 266101||中国农业科学院研究生院,北京 100081中国农业科学院烟草研究所,青岛 266101青岛中海环境工程有限公司,青岛 266100江苏辉丰生物农业股份有限公司,江苏 盐城 224145青岛市农业技术推广中心,青岛 266299中国农业科学院烟草研究所,青岛 266101中国农业科学院烟草研究所,青岛 266101中国农业科学院烟草研究所,青岛 266101
轻工纺织
秸秆水热解代谢组学差异代谢物高值化利用
strawhydrothermal liquefactionmetabolomicsdifferential metaboliteshigh-value utilization
《中国烟草科学》 2026 (3)
82-92,11
中国农业科学院青年创新专项任务(Y2023QC35)青岛市科技惠民示范专项(24-1-8-cspz-17-nsh)
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