Development of formulae for estimating amylose content, amylopectin chain length distribution, and resistant starch content based on the iodine absorption curve of rice starch
Sumiko Nakamura, Hikaru Satoh, Ken’ichi Ohtsubo
Bioscience Biotechnology and Biochemistry
Abstract
Not only amylose but also amylopectin greatly affects the gelatinization properties of rice starch and the quality of cooked rice grains. We here characterized the starches of 32 rice cultivars and evaluated the relationship between their iodine absorption curve, apparent amylose content (AAC), pasting property, resistant starch (RS) content, and chain length distribution of amylopectin. We found that the iodine absorption curve differed among the various sample rice cultivars. Using the wavelength at which absorbance becomes maximum on iodine staining of starch (λmax), we propose a novel index, "new λmax" (AAC/(λmax of sample rice starches-λmax of glutinous rice starch)). We developed the novel estimation formulae for AAC, RS contents, and amylopectin fractions with the use of λmax and "new λmax." These formulae would lead to the improved method for estimating starch properties using an easy and rapid iodine colorimetric method.
Extracted Claims
2 claims extracted from this paper into the knowledge graph
amylose and amylopectin affect gelatinization properties of rice starch and the quality of cooked rice grains
“Not only amylose but also amylopectin greatly affects the gelatinization properties of rice starch and the quality of cooked rice grains.”
iodine absorption curve used to estimate amylose content, amylopectin chain length distribution, and resistant starch content
“We developed the novel estimation formulae for AAC, RS contents, and amylopectin fractions with the use of λmax and 'new λmax.'”