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      Heat-Moisture Treatment Further Reduces In Vitro Digestibility and Enhances Resistant Starch Content of a High-Resistant Starch and Low-Glutelin Rice.

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          Abstract

          A novel rice germplasm sbeIIb/Lgc1 producing grains rich in resistant starch (RS) but low in glutelin has been developed through CRISPR/Cas9-mediated targeted mutagenesis for its potential benefits to patients with diabetes and kidney diseases. In this study, a hydrothermal approach known as heat-moisture treatment (HMT) was identified as a simple and effective method in reinforcing the nutritional benefits of sbeIIb/Lgc1 rice. As a result of HMT treatment at 120 °C for 2 h, significant reductions in in vitro digestibility and enhancements in RS content were observed in sbeIIb/Lgc1 rice flour when the rice flour mass fraction was 80% and 90%. The low-glutelin feature of sbeIIb/Lgc1 rice was not compromised by HMT. The potential impacts of HMT on a range of physicochemical properties of sbeIIb/Lgc1 rice flour have also been analyzed. HMT resulted in a darker color of rice flour, alteration in the semi-crystalline structure, an increase in gelatinization temperatures, and reductions in the pasting viscosities as the moisture content increased. This study provides vital data for the food industry to facilitate the application of this dual-functional rice flour as a health food ingredient.

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          Author and article information

          Journal
          Foods
          Foods (Basel, Switzerland)
          MDPI AG
          2304-8158
          2304-8158
          Oct 24 2021
          : 10
          : 11
          Affiliations
          [1 ] School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.
          [2 ] Excellence and Innovation Center, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
          Article
          foods10112562
          10.3390/foods10112562
          8622339
          34828843
          03937908-c504-42b8-959a-80331075b680
          History

          heat-moisture treatment,Oryza sativa L.,in vitro digestibility,resistant starch,rice flour

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