Construction of LC-MS maps of root exudates in cotton (Gossypium hirsutum L.) seedlings

Rathod Balaji Ulhas, Channarayappa
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引用次数: 1

Abstract

Root exudates composition and pattern of biochemical expression is genotype specific and highly influenced by both by abiotic and biotic factors. During this investigation, various attempts made to standardize the techniques to construct LC-MS maps using cotton as a plant system. Construction of root exudates maps by LC-MS analysis found as very unique and having high utility in genotype identification through genotypic maps, detecting the presence/absence of specific chemicals of interest, and for rhizosphere engineering. As expected each sample (root exudates of a particular genotype) produced very distinct peaks-spectra. Each peak in the peak-spectral map (Y-axis) provides very useful information, the peak intensity (peak height), which represents the percent of each chemical/analyte present in the sample. The total number of peaks in each spectrum indicates the number of biochemicals present in that sample. The root exudates samples were probed in both positive and negative LC-MS mode, since some acidic compounds could not be detected in positive mode. The peaks displayed in the negative mode spectra maps indicates most of them are belong to the compounds in acidic groups. This distinction also provides additional chemical diversity and chemical specificity to include in the genotypic maps. By this way, the diversity present in all these parameters for each cotton genotype was included and the information presented was used to establish a very high-resolution maps. These peak spectral maps directly depend on the biochemicals produced by a specific genotype and genetically controlled; therefore, they can be called as genotypic maps or root exudates maps. Keywords: Root Exudates, Silica sand, Liquid Chromatography mass spectroscopy (LC-MS)
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棉花幼苗根系分泌物LC-MS图谱的构建
根系分泌物的组成和生化表达模式具有基因型特异性,受到非生物因子和生物因子的高度影响。在本次调查中,各种尝试进行了标准化的技术,以棉花作为植物系统构建LC-MS地图。通过LC-MS分析构建根分泌物图谱是非常独特的,并且在通过基因型图谱进行基因型鉴定、检测感兴趣的特定化学物质的存在/缺失以及根际工程方面具有很高的实用性。正如预期的那样,每个样品(特定基因型的根分泌物)产生非常不同的峰谱。峰谱图(y轴)中的每个峰提供了非常有用的信息,峰强度(峰高),它代表了样品中存在的每种化学物/分析物的百分比。每个光谱中峰的总数表示该样品中存在的生物化学物质的数量。由于一些酸性化合物在阳性模式下无法检测到,因此根渗出液样品在阳性和阴性lc - mmode下都进行了探测。负模谱图显示的峰表明它们大多属于酸性基团的化合物。这种差异也为基因型图谱提供了额外的化学多样性和化学特异性。通过这种方法,每个棉花基因型的所有这些参数的多样性都被包括在内,所提供的信息被用来建立一个非常高分辨率的地图。这些峰谱图直接取决于特定基因型和基因控制产生的生化物质;因此,它们可以被称为无基因型图或根分泌物图。关键词:根分泌物,硅砂,液相色谱质谱(LC-MS)
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