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A solid-state nanopore-based single-molecule approach for label-free characterization of plant polysaccharides

机译:基于固态的纳米孔的单分子方法用于植物多糖的无标记表征

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摘要

Polysaccharides are important biomacromolecules existing in all plants, most of which are integrated into a fibrillar structure called the cell wall. In the absence of an effective methodology for polysaccharide analysis that arises from compositional heterogeneity and structural flexibility, our knowledge of cell wall architecture and function is greatly constrained. Here, we develop a single-molecule approach for identifying plant polysaccharides with acetylated modification levels. We designed a solid-state nanopore sensor supported by a free-standing SiNx membrane in fluidic cells. This device was able to detect cell wall polysaccharide xylans at concentrations as low as 5 ng/μL and discriminate xylans with hyperacetylated and unacetylated modifications. We further demonstrated the capability of this method in distinguishing arabinoxylan and glucuronoxylan in monocot and dicot plants. Combining the data for categorizing polysaccharide mixtures, our study establishes a single-molecule platform for polysaccharide analysis, opening a new avenue for understanding cell wall structures, and expanding polysaccharide applications.
机译:多糖是所有植物中存在的重要生物主量,其中大部分都集成到称为细胞壁的纤维状结构中。在没有有效的多糖分析方法的情况下,从组成异质性和结构性灵活性产生的多糖分析,我们对细胞壁架构和功能的了解是大大限制的。这里,我们开发一种用于用乙酰化改性水平鉴定植物多糖的单分子方法。我们设计了一种由流体电池中的独立Sinx膜支撑的固态纳米孔传感器。该装置能够以低至5ng /μL的浓度检测细胞壁多糖Xylans,并用过乙酰化和不乙酰化的修饰鉴别Xylans。我们进一步证明了这种方法在区分植物和多蛀型植物中区分阿拉伯辛Xylan和葡萄糖醛氧基的能力。结合了对多糖混合物进行分类的数据,我们的研究建立了一种用于多糖分析的单分子平台,为理解细胞壁结构开辟了新的途径,并扩大了多糖应用。

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