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December 11, 2025Frontiers in Plant Science3 citationsOpen Access

Evaluation of glycemic response and starch digestibility in Korean rice toward the development of low GI rice

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CLChang‐Min LeeOJO‐Young JeongHPHyun-Su Park

Key Points

  • The aim is to evaluate glycemic response and starch digestibility in Korean rice to identify candidates for low GI rice development.
  • Assessment of 16 Korean rice accessions for grain morphology and biochemical composition
  • In vitro GI assays to determine starch digestibility and glycemic index
  • In vivo murine studies to validate blood glucose responses
  • Textural analysis for consumer acceptance of rice varieties
  • Seven rice accessions showed GI values below 60, indicating low glycemic index
  • Seullomi lines recognized for high resistant starch content and low-to-intermediate GI values
  • In vivo tests indicated decreased blood glucose spikes for specific accessions compared to a commercial variety
  • Textural analysis found moderate hardness and stickiness in selected lines, enhancing consumer acceptance

Abstract

The global rise in type 2 diabetes has intensified the need for dietary strategies that promote glycemic control, including the development of functional staple foods with a low glycemic index (GI). In this study, we assessed 16 Korean rice accessions for grain morphology, biochemical composition, starch digestibility, and glycemic response to identify promising candidates for low GI rice breeding. Substantial variation was observed in amylose (4.3–41.8%) and protein content (6.09–9.28%), both key factors influencing starch hydrolysis and postprandial glucose levels. In vitro GI assays showed that seven accessions had GI values below 60, including Dodamssal, Goami2, and Goami4, which were characterized by high resistant starch (RS) content. Interestingly, Seullomi1 and Seullomi2 maintained low-to-intermediate GI values, associated with elevated proportions of slowly digestible starch (SDS), moderate-to-high amylose content resistance to enzymatic digestion. Starch digestibility profiling confirmed that these lines retained higher SDS content even after cooking, suggesting greater resistance to enzymatic hydrolysis. In vivo murine study ( n = 5 per group) further validated these findings, with Seullomi1, Seullomi2, and Dodamssal showing significantly reduced blood glucose spikes at 30 minutes compared with Sindongjin, a commercial Korean rice variety. Complementary textural analysis revealed that the Seullomi lines preserved moderate hardness and stickiness, traits favorable for consumer acceptance. Collectively, these results establish Seullomi1 and Seullomi2 as promising prototypes for the development of functional rice varieties that provide glycemic control with acceptable textural quality, thereby facilitating the breeding of rice to mitigate the risk of type 2 diabetes.

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Cite This Study

Lee et al. (2025) studied this question.

synapsesocial.com/papers/694019342d562116f28f6d1fhttps://doi.org/10.3389/fpls.2025.1724565
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