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Board-invited review: Sensitivity and responses of functional groups to feed processing methods on a molecular basis

机译:董事会邀请的审查:分子基础上官能团对饲料加工方法的敏感性和响应

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摘要

In complex feed structures, there exist main chemical functional groups which are associated with nutrient utilization and availability and functionality. Each functional group has unique molecular structure therefore produce unique molecular vibration spectral profile. Feed processing has been used to improve nutrient utilization for many years. However, to date, there was little study on processing-induced changes of feed intrinsic structure and functional groups on a molecular basis within intact tissue. This is because limited research technique is available to study inherent structure on a molecular basis. Recently bioanalytical techniques: such as Synchrotron Infrared Microspectroscopy as well as Diffuse Reflectance Infrared Fourier Transform molecular spectroscopy have been developed. These techniques enable to detect molecular structure change within intact tissues. These techniques can prevent destruction or alteration of the intrinsic protein structures during processing for analysis. However, these techniques have not been used in animal feed and nutrition research. The objective of this review was show that with the advanced technique, sensitivity and responses of functional groups to feed processing on a molecular basis could be detected in my research team. These functional groups are highly associated with nutrient utilization in animals.
机译:在复杂的饲料结构中,存在主要的化学官能团,这些官能团与养分利用,可利用性和功能性有关。每个官能团具有独特的分子结构,因此产生独特的分子振动光谱图。饲料加工已被用于提高养分利用率多年。然而,迄今为止,在完整组织中,基于分子的加工诱导的饲料内在结构和功能基团变化的研究很少。这是因为有限的研究技术可用于基于分子研究固有结构。最近已经开发出生物分析技术:例如同步加速器红外显微光谱以及漫反射红外傅里叶变换分子光谱。这些技术能够检测完整组织内的分子结构变化。这些技术可以防止在分析过程中破坏或改变固有蛋白质结构。但是,这些技术尚未用于动物饲料和营养研究中。这篇综述的目的是表明,通过先进的技术,可以在我的研究团队中检测到官能团对分子进料加工的敏感性和反应性。这些官能团与动物的营养利用高度相关。

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