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改进用于筛选具有更高多酚含量的马铃薯育种系的筛选过程。

Improving the screening process for the selection of potato breeding lines with enhanced polyphenolics content.

作者信息

Shiroma-Kian Cecilia, Tay David, Manrique Iván, Giusti M Monica, Rodriguez-Saona Luis E

机构信息

Department of Food Science and Technology, Ohio State University, 2015 Fyffe Court, Columbus, Ohio 43210, USA.

出版信息

J Agric Food Chem. 2008 Nov 12;56(21):9835-42. doi: 10.1021/jf801716b. Epub 2008 Oct 3.

Abstract

Efficient selection of potato varieties with enhanced nutritional quality requires simple, rapid, accurate, and cost-effective assays to obtain tuber chemical composition information. Our objective was to develop simple protocols to determine phenolics, anthocyanins, and antioxidant capacity in polyphenolic extracts of potatoes using Fourier transform infrared spectroscopy combined with multivariate techniques. Lyophilized potato samples (23) were analyzed. Polyphenolic compounds were extracted from potatoes and applied directly applied onto a three-bounce ZnSe crystal for attenuated total reflectance measurements in the infrared region of 4000 to 700 cm (-1). Robust models were generated (r > or = 0.99) with standard error of cross-validation values of 4.17 mg gallic acid equivalent/100 g (total phenolics), 0.87 mg pelargonidin-3-glucoside/100 g (monomeric anthocyanins), and 130.8 mumol Trolox equivalent/100 g (antioxidant capacity) potato powder. In addition, classification models discriminated potato samples at the species and variety level. Application of a simple infrared spectroscopic protocol allowed simultaneous rapid quantification of specific nutritional components in potatoes and efficient selection of value-added potato varieties.

摘要

高效选择营养品质优良的马铃薯品种需要简单、快速、准确且经济高效的分析方法,以获取块茎化学成分信息。我们的目标是开发简单的方法,利用傅里叶变换红外光谱结合多元技术来测定马铃薯多酚提取物中的酚类、花青素和抗氧化能力。对23个冻干马铃薯样品进行了分析。从马铃薯中提取多酚化合物,直接将其应用于三反射ZnSe晶体上,以在4000至700厘米(-1)的红外区域进行衰减全反射测量。生成了稳健的模型(r≥0.99),交叉验证值的标准误差分别为4.17毫克没食子酸当量/100克(总酚类)、0.87毫克天竺葵素-3-葡萄糖苷/100克(单体花青素)和130.8微摩尔Trolox当量/100克(抗氧化能力)马铃薯粉。此外,分类模型在物种和品种水平上区分了马铃薯样品。应用简单的红外光谱方法能够同时快速定量马铃薯中的特定营养成分,并高效选择增值马铃薯品种。

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