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Molecular heterogeneity in Aphanizomenon flos-aquae and Anabaena flos-aquae (Cyanophyta): A synchrotron-based Fourier-transform infrared study of lake micropopulations

机译:aphanizomenon flos-aquae和anabaena flos-aquae(蓝藻)的分子异质性:基于同步加速器的湖泊微观拟合的傅里叶变换红外研究

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摘要

Synchrotron-based Fourier-transform infrared (FTIR) microspectroscopy was used to characterize micropopulations of the cyanobacteria Anabaena flos-aquae and Aphanizomenon flos-aquae in mixed phytoplankton samples taken from the epilimnion and hypolimnion of a stratified eutrophic lake (Rostherne Mere, UK). All FTIR spectra (normalized to amide I) showed a closely similar sequence of 10 bands over the wavenumber range 4,000-900 cm -1 and were assigned to a range of vibrationally active chemical groups. Interspecific differences between Anabaena and Aphanizomenon were revealed using correlation and multivariate analysis (principal component analysis, PCA) of the set of individual band intensities. Differences between species (separately for epilimnion and hypolimnion) were also analysed by comparing band intensity means, and by performing PCA over a broad spectral region (1,750-900 cm -1 ). Comparison of intensity means showed that spectra obtained from epilimnetic algae had significant differences in bands 5-7 and in bands 4, 9 and 10. However, in the spectra obtained from the hypolimnion algae, a different pattern was observed, with significant differences between the species restricted to bands 7-10. PCA of the spectral region 1,750-900 cm -1 also demonstrated interspecific differences in relation to carbohydrate and protein concentrations, with Anabaena displaying higher carbohydrate levels in both the epilimnion and hypolimnion. Intraspecific comparisons of band intensity means for epilimnion and hypolimnion subpopulations demonstrated clear differences in Aphanizomenon , where significant differences were observed between epilimnion (higher carbohydrate concentration compared with protein) and hypolimnion (lower carbohydrate concentration compared with protein) subpopulations. Anabaena however showed only minor differences. PCA comparison of the spectral region 1,750-900 cm -1 , followed by data visualization using scores plots and loading plots, also demonstrated quantitative differences. Scores plots resolved the epilimnion and hypolimnion subpopulations in Aphanizomenon (but not Anabaena ), with the loading plot showing large differences in carbohydrates, supporting the analysis using discrete peak intensities. © 2006 British Phycological Society.
机译:基于同步加速器的傅立叶变换红外(FTIR)显微光谱用于表征从分层富营养化湖(Rostherne Mere)的上浮和下浮中获取的浮游植物混合样本中蓝细菌Anabaena flos-aqua和Aphanizomenon flos-aqua的微种群。所有FTIR光谱(对酰胺I进行归一化)显示在4,000-900 cm -1的波数范围内有10条带的非常相似的序列,并被分配给了一系列具有振动活性的化学基团。使用相关性和多条带分析(单个成分强度)分析揭示了鱼腥藻和Aphanizomenon之间的种间差异。还通过比较谱带强度平均值,并在较宽的光谱区域(1,750-900 cm -1)上进行了PCA,分析了物种之间的差异(分别用于上扬和下扬)。强度平均值的比较表明,从表皮藻类获得的光谱在5-7条带和在条带4、9和10中具有显着差异。但是,在从次条藻类获得的光谱中,观察到了不同的模式,并且物种限制在7-10波段。光谱区域1,750-900 cm -1的PCA还显示出与碳水化合物和蛋白质浓度有关的种间差异,其中鱼腥藻在上the和下hypo均显示出较高的碳水化合物水平。上层和下层亚群的带强度平均值的种内比较显示了Aphanizomenon的明显差异,其中上层层(与蛋白质相比,碳水化合物浓度较高)和下层(与蛋白质相比,碳水化合物浓度较低)亚群之间存在显着差异。然而,鱼腥藻只表现出很小的差异。光谱区域1,750-900 cm -1的PCA比较,然后使用分数图和负荷图进行数据可视化,也显示出定量差异。分数图解决了Aphanizomenon(而不是Anabaena)中的上扬和次上层亚群,加载图显示了碳水化合物的巨大差异,支持使用离散峰强度进行分析。 ©2006英国植物学学会。

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