Production of the Functional Trisaccharide 1-Kestose from Cane Sugar Molasses Using Aspergillus japonicus [beta]-Fructofuranosidase

We report the production of the functional trisaccharide 1-kestose, O-[beta]-d-fructofuranosyl-(2[arrow right]1)-[beta]-d-fructofuranosyl [alpha]-d-glucopyranoside, by [beta]-fructofuranosidase from Aspergillus japonicus using sugar cane molasses as substrate. Sucrose in cane sugar molasses acted as...

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Veröffentlicht in:Current microbiology 2017-01, Vol.74 (1), p.145
Hauptverfasser: Hirabayashi, Katsuki, Kondo, Nobuhiro, Toyota, Hiroshi, Hayashi, Sachio
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Sprache:eng
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Zusammenfassung:We report the production of the functional trisaccharide 1-kestose, O-[beta]-d-fructofuranosyl-(2[arrow right]1)-[beta]-d-fructofuranosyl [alpha]-d-glucopyranoside, by [beta]-fructofuranosidase from Aspergillus japonicus using sugar cane molasses as substrate. Sucrose in cane sugar molasses acted as a fructosyl donor and acceptor for the enzyme. The tetrasaccharide nystose, O-[beta]-d-fructofuranosyl-(2[arrow right]1)-[beta]-d-fructofuranosyl-(2[arrow right]1)-[beta]-d-fructofuranosyl [alpha]-d-glucopyranoside, was produced from 1-kestose. Cane sugar molasses mixed with water provided a better substrate solution for [beta]-fructofuranosidase compared to undiluted molasses due to the high concentration of product inhibitors such as glucose and fructose in molasses. The maximum concentration of 1-kestose obtained was 84.9 mg/ml and the maximum production efficiency was 32.3% after 24 h reaction at 40 °C. The maximum efficiency of combined fructo-oligosaccharide (1-kestose and nystose) production was 40.6%. 1-Kestose was therefore produced via a fructosyl-transfer reaction catalyzed by [beta]-fructofuranosidase from A. japonicus.
ISSN:0343-8651
1432-0991
DOI:10.1007/s00284-016-1154-1