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Classification of Colletotrichum coccodes isolates into vegetative compatibility groups using infrared attenuated total reflectance spectroscopy and multivariate analysis

机译:使用红外衰减全反射光谱法和多元分析将炭疽菌(Coletotrichum coccodes)分为营养相容性组

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In this study the potential of infrared (IR) spectroscopy for the classification of Colletotrichum coccodes (C. coccodes) isolates into vegetative compatibility groups (VCGs) was evaluated. Isolates which belong to the same VCG may have similar pathological and physiological traits that differ from those that are not assigned to the same VCG. Early classification of isolates into VCGs is of a great importance for a better understanding of the epidemiology of the disease and improves its control. The main goal of the present study was to classify 14 isolates of C. coccodes into VCGs and differentiate between them, based on their IR absorption spectra as obtained by the FTIR-ATR sampling technique. Advanced statistical and mathematical methods, including Principal Component Analysis (PCA) and Linear Discriminant Analysis (LDA), were applied to the spectra after manipulation. The results show that it is possible to assign the isolates into VCGs with more than 90% success based on the wavenumber low region (1800-800cm-1) and using 15 PCs. However, on the isolate level, the best differentiation results were obtained using PCA (15 PCs) and LDA for the combined regions (2990-2800cm-1, 1800-800cm-1), with identification success rates of 87.2%.
机译:在这项研究中,评估了将红外(IR)光谱法将炭疽菌​​(C. coccodes)分离株分为植物相容性组(VCG)的潜力。属于同一VCG的分离株可能具有相似的病理和生理特性,这与未分配给同一VCG的那些不同。早期将分离株分类为VCG对更好地了解该病的流行病学和改善其控制至关重要。本研究的主要目标是根据FTIR-ATR采样技术获得的红外吸收光谱,将14个C.coccodes分离株分类为VCG,并对其进行区分。操作后,对光谱进行了先进的统计和数学方法,包括主成分分析(PCA)和线性判别分析(LDA)。结果表明,根据波数低区域(1800-800cm-1)并使用15台PC,可以将分离株成功分为90%以上。然而,在分离水平上,使用PCA(15个PCs)和LDA对合并区域(2990-2800cm-1、1800-800cm-1)获得了最好的分化结果,鉴定成功率为87.2%。

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