Department of Organic Chemistry and Biochemistry, Ruđer Bošković Institute, Bijenička 54, 10000 Zagreb, Croatia.
Appl Spectrosc. 2010 Dec;64(12):1364-73. doi: 10.1366/000370210793561664.
Classification, discrimination, and biochemical assignment of vibrational spectra of pollen samples belonging to 43 different species of the order Pinales has been made using three different vibrational techniques. The comparative study of transmission (KBr pellet) and attenuated total reflection (ATR) Fourier transform infrared (FT-IR) and FT-Raman spectroscopies was based on substantial variability of pollen grain size, shape, and relative biochemical composition. Depending on the penetration depth of the probe light, vibrational techniques acquire predominant information either on pollen grain walls (FT-Raman and ATR-FT-IR) or intracellular material (transmission FT-IR). Compared with the other two methods, transmission FT-IR obtains more comprehensive information and as a result achieves superior spectral identification and discrimination of pollen. The results strongly indicate that biochemical similarities of pollen grains belonging to the same plant genus or family lead to similar features in corresponding vibrational spectra. The exploitation of that property in aerobiological monitoring was demonstrated by simple and rapid pollen identification based on relatively small spectral libraries, with the same (or better) taxonomic resolution as that provided by optical microscopy. Therefore, the clear correlation between vibrational spectra and pollen grain morphology, biochemistry, and taxonomy is obtained, while successful pollen identification illustrates the practicability of such an approach in environmental studies.
采用三种不同的振动技术对 43 种不同松科花粉样品的振动光谱进行了分类、鉴别和生化归属。传输(KBr 压片)和衰减全反射(ATR)傅里叶变换红外(FT-IR)和 FT-Raman 光谱的比较研究基于花粉粒大小、形状和相对生化成分的显著可变性。根据探头光的穿透深度,振动技术主要获取花粉壁(FT-Raman 和 ATR-FT-IR)或细胞内物质(透射 FT-IR)的信息。与其他两种方法相比,透射 FT-IR 获得了更全面的信息,因此在花粉的光谱识别和鉴别方面取得了更好的效果。结果强烈表明,属于同一植物属或科的花粉粒的生化相似性导致相应振动光谱中出现相似的特征。通过基于相对较小的光谱库的简单快速花粉鉴定,展示了在空气生物学监测中利用这一特性的潜力,其分类分辨率与光学显微镜提供的分辨率相同(或更好)。因此,获得了振动光谱与花粉粒形态、生化和分类学之间的清晰相关性,而成功的花粉鉴定则说明了这种方法在环境研究中的实用性。