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Mapping out the structural changes of natural and pretreated plant cell wall surfaces by atomic force microscopy single molecular recognition imaging

机译:通过原子力显微镜单分子识别成像绘制天然和预处理植物细胞壁表面的结构变化

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摘要

BackgroundEnzymatic hydrolysis of lignocellulosic biomass (mainly plant cell walls) is a critical process for biofuel production. This process is greatly hindered by the natural complexity of plant cell walls and limited accessibility of surface cellulose by enzymes. Little is known about the plant cell wall structural and molecular level component changes after pretreatments, especially on the outer surface. Therefore, a more profound understanding of surface cellulose distributions before and after pretreatments at single-molecule level is in great need. In this study, we determined the structural changes, specifically on crystalline cellulose, of natural, dilute sulfuric acid pretreated and delignified cell wall surfaces of poplar, switchgrass, and corn stover using single molecular atomic force microscopy (AFM) recognition imaging.
机译:背景技术木质纤维素生物质(主要是植物细胞壁)的酶水解是生物燃料生产的关键过程。植物细胞壁的天然复杂性和酶对表面纤维素的可及性有限,极大地阻碍了该过程。预处理后植物细胞壁的结构和分子水平组分的变化知之甚少,尤其是在外表面上。因此,非常需要对单分子预处理前后的表面纤维素分布有更深刻的了解。在这项研究中,我们使用单分子原子力显微镜(AFM)识别成像技术确定了自然,稀硫酸预处理的杨树,柳枝,和玉米秸秆的天然,稀硫酸预处理和去木质素细胞壁表面的结构变化,特别是在结晶纤维素上。

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