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High-throughput Microscale Protocol for the Analysis of Processing Parameters and Nutritional Qualities in Maize (Zea mays L.)

机译:用于分析玉米加工参数和营养品质的高通量微方案(Zea mays L.)

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摘要

Maize is an important grain crop in the United States and worldwide. However, maize grain must be processed prior to human consumption. Furthermore, whole grain composition and processing characteristics vary among maize hybrids and can impact the quality of the final processed product. Therefore, in order to produce healthier processed food products from maize, it is necessary to know how to optimize processing parameters for particular sets of germplasm to account for these differences in grain composition and processing characteristics. This includes a better understanding of how current processing techniques impact the nutritional quality of the final processed food product. Here, we describe a microscale protocol that both simulates the processing pipeline to produce cornflakes from large flaking grits and allows for the processing of multiple grain samples simultaneously. The flaking grits, the intermediate processed products, or final processed product, as well as the corn grain itself, can be analyzed for nutritional content as part of a high-throughput analytical pipeline. This procedure was developed specifically for incorporation into a maize breeding research program, and it can be modified for other grain crops. We provide an example of the analysis of insoluble-bound ferulic acid and p-coumaric acid content in maize. Samples were taken at five different processing stages. We demonstrate that sampling can take place at multiple stages during microscale processing, that the processing technique can be utilized in the context of a specialized maize breeding program, and that, in our example, most of the nutritional content was lost during food product processing.
机译:玉米是美国和全世界重要的谷物作物。但是,玉米粒必须在人类食用之前进行处理。此外,玉米杂种的全谷物组成和加工特性各不相同,并且会影响最终加工产品的质量。因此,为了从玉米生产更健康的加工食品,有必要知道如何优化特定种质的加工参数以解决谷物成分和加工特性的这些差异。这包括对当前加工技术如何影响最终加工食品的营养质量的更好理解。在这里,我们描述了一种微型协议,该协议既可以模拟加工流程来从大片状沙砾中生产玉米片,也可以同时处理多个谷物样品。可以作为高通量分析流程的一部分,对片状粗粒,中间加工产品或最终加工产品以及玉米谷物本身的营养成分进行分析。该程序是专门为纳入玉米育种研究程序而开发的,可以针对其他谷物作物进行修改。我们提供了一个分析玉米中不溶性结合阿魏酸和对香豆酸含量的例子。在五个不同的处理阶段采集样品。我们证明了采样可以在微型加工过程中的多个阶段进行,加工技术可以在专门的玉米育种程序中使用,并且在我们的示例中,大部分营养成分在食品加工过程中损失了。

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