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Inhomogeneous Molecular Distributions and Cytochrome Types and Redox States in Fungal Cells Revealed by Raman Hyperspectral Imaging Using Multivariate Curve Resolution-Alternating Least Squares

机译:使用多变量曲线分辨率 - 交流最小二乘的拉曼高光谱成像的真菌细胞中的不均匀分子分布和细胞色素类型和氧化还原状态

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摘要

Hyphae of filamentous fungi consist of compartments that are distinct both spatially and functionally, thereby forming a unique multicellular system. Much work has been done mainly using fluorescence imaging to reveal what biomolecules are present in those different hyphal sections and what physiological roles they play. Nevertheless, a holistic understanding of hyphal functions including the polarized growth of hyphae is still lacking because of the difficulty in simultaneous acquisition of spatial and chemical information on various molecular components in living hyphae. Here, we used a multivariate curve resolution-alternating least-squares (MCR-ALS) analysis of Raman hyperspectral imaging data to study in vivo the spatial distributions and chemical properties of major cellular components in the tip, basal, and branching regions of the model fungus Aspergillus nidulans. The MCR-ALS Raman imaging method visualized, without any labeling, the characteristic distributions of cytochromes as well as other components including polysaccharides, noncytochrome proteins, nucleic acids, lipids, and ergosterol in the hyphal regions studied. Furthermore, the intrinsic Raman spectra derived for the first time from the MCR-ALS analysis enabled us to gain otherwise unobtainable chemical insights into those visualized components. We show variations in the relative abundance of cytochromes b and c and in their redox states (reduced vs oxidized form) among the three different representative compartments of A. nidulans hyphae, which could potentially be associated with specific physiological activities and functions of hyphae. The present results demonstrate that our MCR-ALS Raman imaging can serve as a useful tool complementary to the conventional approaches, for elucidating the diverse roles of filamentous fungi at the molecular level.
机译:丝状真菌的菌丝由隔间上独立和在一起的隔间组成,从而形成独特的多细胞系统。主要使用荧光成像来揭示那些不同的剪腿部分中存在的生物分子以及它们发挥的生理角色是什么。然而,由于难以同时获取关于活菌丝中各种分子组分的空间和化学信息,仍然缺乏对包括菌丝偏振的悬垂功能的整体理解。这里,我们使用了拉曼高光谱成像数据的多变量曲线分辨率 - 交替的最小二乘(MCR-ALS)分析,以体内研究了模型的尖端,基础和分支区域的主要细胞部件的空间分布和化学性质真菌曲霉芽孢杆菌。 MCR-ALS拉曼成像方法可视化,没有任何标记,细胞变性的特征分布以及包括多糖,非胞细胞蛋白质,核酸,脂质和杂质区的其他组分的特征分布。此外,从MCR-ALS分析中首次导出的内在拉曼光谱使我们能够在那些可视化部件中获得其他不可接收的化学洞察力。我们表明,在Nidulans菌丝的三种不同代表性室中,表现出细胞色素B和C以及其氧化还原态(减少的VS氧化形式)的变化,这可能与菌丝的特异性生理活性和功能相关。本结果表明,我们的MCR-ALS拉曼成像可以作为与常规方法互补的有用工具,以阐明在分子水平下丝状真菌的不同作用。

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  • 来源
    《Analytical chemistry》 |2019年第19期|共8页
  • 作者单位

    Kwansei Gakuin Univ Sch Sci &

    Technol Dept Chem Sanda Hyogo 6691337 Japan;

    Univ Tsukuba Fac Life &

    Environm Sci Microbiol Res Ctr Sustainabil MiCS Tsukuba Ibaraki 3058572 Japan;

    Kwansei Gakuin Univ Sch Sci &

    Technol Dept Chem Sanda Hyogo 6691337 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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