Optimisation of Phytate Degradation in Whole Grain Rice During Germination Processing Using Response Surface Methodology

Q4 Biochemistry, Genetics and Molecular Biology Borneo Journal of Resource Science and Technology Pub Date : 2023-12-28 DOI:10.33736/bjrst.5347.2023
H. Lee, Elisha Yiu, ALVIN-LIM-TEIK Zheng, JOSEPH-CHOON-FAH Bong, SU-PENG Loh, PANG-HUNG Yiu
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Abstract

Phytic acid (IP6), stored in seeds as metal salts known as phytates, binds to micronutrients and prevents its absorption by the human body. The germination process could improve cereal nutritional values by stimulating endogenous phytase activity and promoting phytate degradation. This study evaluated the physicochemical changes of phytates in rice cultivars with different IP6 contents, followed by optimisation of phytate degradation using response surface modeling. The magnitude of changes in IP6 content and phytase activity differed among rice cultivars. This suggested that the efficiency of germination treatments relied on the amount of natural phytic acid and phytase activity present in the rice grains. The cultivar “Tuan” was then selected and studied for the germination effect on phytate degradation using a central composite design. The cultivar gave a lower IP6 content, enhanced phytase activity and improved minerals bioaccessibility under acidic conditions. Acidic germination facilitated the degradation of phytate complexes in whole grain rice by making phytate complexes more soluble, accelerating phytase activity and thus, releasing mineral micronutrients from phytate globoids. The optimum germination condition was identified at pH 2.7, 25 °C over 12 h. In conclusion, germination processing facilitated phytate degradation in whole grain rice to make value-added rice products with low phytic acid and good mineral bioaccessibility.
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利用响应面方法优化整粒稻米在发芽处理过程中的植酸降解过程
植酸(IP6)以被称为植酸盐的金属盐形式储存在种子中,会与微量营养素结合,阻止人体吸收。发芽过程可以刺激内源植酸酶的活性,促进植酸降解,从而提高谷物的营养价值。本研究评估了 IP6 含量不同的水稻品种中植酸的理化变化,并利用响应面模型对植酸降解进行了优化。不同水稻品种的 IP6 含量和植酸酶活性的变化幅度不同。这表明,发芽处理的效率取决于稻谷中天然植酸的含量和植酸酶的活性。因此,我们选择了 "Tuan "这一栽培品种,并采用中心复合设计法研究了发芽对植酸降解的影响。在酸性条件下,该品种的 IP6 含量较低,植酸酶活性增强,矿物质的生物利用率提高。酸性发芽能使植酸复合体更易溶解,加速植酸酶的活性,从而促进植酸复合体在整粒稻米中的降解,释放植酸球蛋白中的矿物质微量元素。总之,发芽处理可促进整粒大米中植酸的降解,从而生产出植酸含量低、矿物质生物可利用性好的高附加值大米产品。
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来源期刊
Borneo Journal of Resource Science and Technology
Borneo Journal of Resource Science and Technology Agricultural and Biological Sciences-Forestry
CiteScore
0.70
自引率
0.00%
发文量
16
审稿时长
12 weeks
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