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通过酶法挤压提高米糠中阿魏酰低聚糖的得率及其机制

Improving the Yield of Feruloyl Oligosaccharides from Rice Bran through Enzymatic Extrusion and Its Mechanism.

作者信息

Deng Fenghong, Hu Xiuting, Wang Yueru, Luo Shunjing, Liu Chengmei

机构信息

The State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, China.

出版信息

Foods. 2023 Mar 23;12(7):1369. doi: 10.3390/foods12071369.

Abstract

Rice bran, rich in feruloyl arabinoxylan, is a good source of feruloyl oligosaccharides (FOs). To prepare FOs, bran was often hydrolyzed by amylase and protease to remove starch and protein and then hydrolyzed by xylanase, which was time-consuming and had a low yield. To solve the above problems, enzymatic extrusion was used to treat rice bran, and the effects of traditional hydrolysis, a combination of traditional extrusion and hydrolysis (extrusion-hydrolysis) and enzymatic extrusion on the yield of FOs were investigated and compared in this study. It was found that traditional extrusion and enzymatic extrusion significantly increased the yield of FOs. Particularly, the yield of FOs resulting from enzymatic extrusion was increased to 5.78%, while the yield from traditional hydrolysis was 4.23%. Microscopy analysis showed that extrusion damaged the cell wall of bran, which might increase the accessibility of xylanase to arabinoxylan and the yield of FOs. Spectroscopy analysis suggested that FOs obtained by different pretreatments had similar structures. It was obvious that enzymatic extrusion saved the time for removal of starch and protein and increased the yield of FOs. In addition, the highest yield of FOs was found at the moisture content of 30% and the screw speed of 50 rpm. This study provided an efficient method for the preparation of FOs that is suitable for industrial production.

摘要

米糠富含阿魏酰阿拉伯木聚糖,是阿魏酰低聚糖(FOs)的良好来源。为制备FOs,通常先用淀粉酶和蛋白酶水解米糠以去除淀粉和蛋白质,然后用木聚糖酶水解,这种方法耗时且产率低。为解决上述问题,本研究采用酶法挤压处理米糠,并研究和比较了传统水解、传统挤压与水解相结合(挤压 - 水解)以及酶法挤压对FOs产率的影响。结果发现,传统挤压和酶法挤压显著提高了FOs的产率。特别是,酶法挤压得到的FOs产率提高到了5.78%,而传统水解的产率为4.23%。显微镜分析表明,挤压破坏了米糠的细胞壁,这可能增加木聚糖酶对阿拉伯木聚糖的可及性以及FOs的产率。光谱分析表明,不同预处理得到的FOs具有相似的结构。显然,酶法挤压节省了去除淀粉和蛋白质的时间并提高了FOs的产率。此外,在水分含量为30%和螺杆转速为50转/分钟时发现FOs的产率最高。本研究为适合工业化生产的FOs制备提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d1/10093099/949515f1705e/foods-12-01369-g001.jpg

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