1997Letters in Applied MicrobiologyRequires access

Oligosaccharide profiles of soybeans during kinema production

Prabir K. Sarkar, Linda J Jones, Graham S Craven, Shawn Somerset

Open publisher page 40 citations

Abstract

Oligosaccharide profiles of unfermented and fermented soybeans were determined by a high‐performance liquid chromatographic method using a Hypersil NH2 column. In raw soybeans, mean contents of sucrose, raffinose and stachyose on a dry weight basis were 6·3, 1·9 and 4·3%, respectively (ratio of 3·3 : 1 : 2·3). Although soaking and cooking treatments caused a 73–88% reduction in oligosaccharide content, fermentation lowered these levels below the limit of detection (1·0 g kg−1 dry wt), thus eliminating a potential cause of flatulence for consumers.

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Oligosaccharide profiles of unfermented and fermented soybeans were determined by a high‐performance liquid chromatographic method using a Hypersil NH2 column. In raw soybeans, mean contents of sucrose, raffinose and stachyose on a dry weight basis were 6·3, 1·9 and 4·3%, respectively (ratio of 3·3 : 1 : 2·3). Although soaking and cooking treatments caused a 73–88% reduction in oligosaccharide content, fermentation lowered these levels below the limit of detection (1·0 g kg−1 dry wt), thus eliminating a potential cause of flatulence for consumers.

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Available abstract

Oligosaccharide profiles of unfermented and fermented soybeans were determined by a high‐performance liquid chromatographic method using a Hypersil NH2 column. In raw soybeans, mean contents of sucrose, raffinose and stachyose on a dry weight basis were 6·3, 1·9 and 4·3%, respectively (ratio of 3·3 : 1 : 2·3). Although soaking and cooking treatments caused a 73–88% reduction in oligosaccharide content, fermentation lowered these levels below the limit of detection (1·0 g kg−1 dry wt), thus eliminating a potential cause of flatulence for consumers.

Key concepts: Raffinose, Stachyose, Oligosaccharide, Fermentation, Sucrose, Food science, Chemistry, Flatulence

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