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http://dx.doi.org/10.7740/kjcs.2014.59.3.223

Changes of Physicochemical Properties According to the Shoot Length in Germinated Brown Rice  

Oh, Sea-Kwan (National Institute of Crop Science, RDA)
Lee, Jeong-Heui (National Institute of Crop Science, RDA)
Won, Yong-Jae (National Institute of Crop Science, RDA)
Lee, Dong-Hyun (Misillan Ltd.)
Kim, Chung-Kon (National Institute of Crop Science, RDA)
Publication Information
KOREAN JOURNAL OF CROP SCIENCE / v.59, no.3, 2014 , pp. 223-229 More about this Journal
Abstract
The objective of this study was to evaluate quality properties including amylose, alkali digestion value (ADV), texture and GABA (Gamma Amino-Butyric Acid) of brown rice and 1~5 mm germinated brown rice of Keunnun and Samkwang culitvars. The protein content of germinated brown rice showed increasing tendency according to shoot length, however, the difference was not statistically significant. The amylose content of all samples ranged from 15.0% to 16.0% in Keunnun and 17.0% to 18.0% in Samkwang, without significant differences. Compared to regular brown rice, germinated brown rice from both cultivars demonstrated reduced gel consistency, which contributed to the improved cooked rice texture. Especially, germinated brown rice had significantly lower setback values, which is correlated with high palatability of cooked rice. However, there was no significant difference in gel consistency between 1 mm and 2~5 mm germinated brown rice. GABA content in Keunnun increased by 3~5 times after germination process. In Samkwang, GABA content increased by 50 times (from $0.005{\mu}g/g$ to $0.243{\sim}0.247{\mu}g/g$) after germination. The hardness of germinated brown rice was significantly lower than that of brown rice. However, there was no significant difference in hardness according to shoot length. Consequently, when processing germinate brown rice, it is recommended to maximize functional ingredients by germination while maintaining shoot length less than 2 mm.
Keywords
brown rice; germinated brown rice; physicochemical; functional ingredients; GABA;
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