a Department of Animal and Poultry Science , College of Agriculture and Bioresources, University of Saskatchewan , Saskatoon , Canada.
Crit Rev Food Sci Nutr. 2017 Jan 2;57(1):8-17. doi: 10.1080/10408398.2013.764513.
Advanced synchrotron radiation-based infrared microspectroscopy is able to reveal feed and food structure feature at cellular and molecular levels and simultaneously provides composition, structure, environment, and chemistry within intact tissue. However, to date, this advanced synchrotron-based technique is still seldom known to food and feed scientists. This article aims to provide detailed background for flaxseed (oil seed) protein research and then review recent progress and development in flaxseed research in ruminant nutrition in the areas of (1) dietary inclusion of flaxseed in rations; (2) heat processing effect; (3) assessing dietary protein; (4) synchrotron-based Fourier transform infrared microspectroscopy as a tool of nutritive evaluation within cellular and subcellular dimensions; (5) recent synchrotron applications in flaxseed research on a molecular basis. The information described in this paper gives better insight in flaxseed research progress and update.
基于同步加速器的先进红外显微光谱技术能够揭示细胞和分子水平上的饲料和食物结构特征,同时提供完整组织内的成分、结构、环境和化学信息。然而,迄今为止,这种先进的基于同步加速器的技术在食品和饲料科学家中仍然鲜为人知。本文旨在为亚麻籽(油籽)蛋白质研究提供详细的背景信息,然后综述反刍动物营养领域中亚麻籽研究的最新进展和发展,包括:(1)日粮中添加亚麻籽;(2)热处理效果;(3)评估日粮蛋白;(4)基于同步加速器的傅里叶变换红外显微光谱作为在细胞和亚细胞水平上进行营养评估的工具;(5)最近在基于分子基础的亚麻籽研究中同步加速器的应用。本文所描述的信息使人们对亚麻籽研究进展和更新有了更深入的了解。