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首页> 外文期刊>Analytical Letters >Detection of Vibrational Spectroscopic Biomarkers of the Effect of Gold Nanoparticles on Wheat Seedlings Using Attenuated Total Reflectance Fourier Transform Infrared Spectroscopy
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Detection of Vibrational Spectroscopic Biomarkers of the Effect of Gold Nanoparticles on Wheat Seedlings Using Attenuated Total Reflectance Fourier Transform Infrared Spectroscopy

机译:使用减毒总反射傅里叶变换红外光谱检测金纳米粒子在小麦幼苗上的振动光谱生物标志物

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摘要

The aim of this study is to evaluate the biochemical changes in the leaves of wheat seedlings exposed to gold nanoparticles (AuNPs) nondestructively and rapidly using attenuated total reflectance Fourier transform infrared spectroscopy and laser-induced fluorescence. The 18nm size gold nanoparticles are synthesized by citrate reduction. For analyzing the effect of gold nanoparticles on wheat seedlings, the treatment of gold nanoparticles was applied to the seedlings through roots and following the spectroscopic measurement of biochemical signatures. The laser-induced fluorescence measurement has been performed to access the effect of gold nanoparticles on the chlorophyll concentration of wheat seedlings. The decrease in the fluorescence intensity and the fluorescence intensity ratio on the treatment of gold nanoparticles indicates increase in the concentration of chlorophyll in the leaves of wheat seedlings. The attenuated total reflectance Fourier transform infrarred spectroscopy in combination with principal component analysis has been used to visualize the biochemical changes in the cellulose, hemicellulose, pectin, lignin, amino acids, proteins, and lipid of the leaves of wheat seedlings by recording infrared spectra in the region from 4000 to 400cm(-1). Principal component analysis applied to the preprocessed infrared data clearly distinguishes the spectral variability between control and gold nanoparticle treated seedlings. The study shows that exposure of gold nanoparticles increases the concentrations of cellulose, hemicelluloses, pectin, and lignin in the leaves of wheat seedlings. The increase in these chemicals indicates the modulation of cell walls of the wheat seedlings by the gold nanoparticle treatment. The exposure to gold nanoparticles also enhances the expression of lipid and proteins in the leaves of wheat seedlings.
机译:本研究的目的是评估小麦幼苗叶片的生物化学变化,使用减毒的总反射率傅里叶变换红外光谱和激光诱导的荧光,且快速地暴露于金纳米颗粒(AUNP)的小麦幼苗叶片的生化变化。通过柠檬酸盐还原合成18nm尺寸的金纳米颗粒。为了分析金纳米粒子对小麦幼苗的影响,将金纳米颗粒的处理施用于幼苗通过根系,并在生化签名的光谱测量之后。已经进行了激光诱导的荧光测量以进入金纳米粒子对小麦幼苗叶绿素浓度的影响。荧光强度和荧光强度比对金纳米颗粒的处理的降低表明小麦幼苗叶片中叶绿素浓度的增加。通过记录红外光谱,通过记录红外光谱来实现与主要成分分析组合的衰减总反射率傅立叶变换基础傅里叶变换基础耦合突出光谱分析纤维素,半纤维素,果胶,木质素,氨基酸,蛋白质和血液的生化变化区域为4000至400cm(-1)。应用于预处理红外数据的主要成分分析清楚地区分控和金纳米粒子处理幼苗之间的光谱变异性。该研究表明,金纳米颗粒的暴露增加了小麦幼苗叶片中纤维素,半纤维素,果胶和木质素的浓度。这些化学品的增加表明通过金纳米粒子处理调节小麦幼苗的细胞壁。暴露于金纳米粒子也增强了小麦幼苗叶片中脂质和蛋白质的表达。

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