Bean S R, Bietz J A, Lookhart G L
Department of Grain Science and Industry, Kansas State University, Manhattan 66505, USA.
J Chromatogr A. 1998 Jul 24;814(1-2):25-41. doi: 10.1016/s0021-9673(98)00437-3.
Cereal grains are widely used of human foods and animal feed throughout the world. Cereals provide dietary protein, which also often has a functional role, as wheat gluten does in bread. Cereal proteins are unique in many ways: they are highly complex and heterogeneous, are often difficult to extract, and aggregate readily, making them difficult to characterize. Because of the economic importance and widespread use of cereal proteins, however, many techniques have been used for their analysis. High-performance capillary electrophoresis (HPCE) is one of the newest techniques to be so used. This review describes the development of charge- and size-based HPCE methods for analysis of cereal grain proteins, and the use of these methods for cultivar identification, classification, and prediction of quality. HPCE is versatile, rapid, easily automated, readily quantified, and provides high-resolution separations. Clearly, HPCE is a valuable addition to other methods of cereal protein analysis and should, in time, be applicable to all protein classes from all cereals.
谷物在全世界被广泛用作人类食物和动物饲料。谷物提供膳食蛋白质,其通常也具有功能性作用,就像小麦面筋在面包中的作用一样。谷物蛋白在许多方面都很独特:它们高度复杂且具有异质性,通常难以提取,并且容易聚集,这使得它们难以表征。然而,由于谷物蛋白的经济重要性和广泛用途,许多技术已被用于其分析。高效毛细管电泳(HPCE)是最新用于此的技术之一。本综述描述了基于电荷和大小的HPCE方法用于分析谷物蛋白的发展,以及这些方法在品种鉴定、分类和品质预测中的应用。HPCE具有通用性、快速、易于自动化、易于定量,并能提供高分辨率分离。显然,HPCE是谷物蛋白分析其他方法的宝贵补充,并且迟早应适用于所有谷物的所有蛋白质类别。