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Data and Supplementary Information from: Oligosaccharide Production Using β-galactosidase from <i>Lactobacillus bulgaricus</i> and <i>Kluyveromyces lactis</i> in Sweetened Reconstituted Nonfat Dry Milk

Metadata Updated: October 2, 2025

Supplementary information and raw data for the publication entitled "Oligosaccharide Production Using β-galactosidase from Lactobacillus bulgaricus and Kluyveromyces lactis in Sweetened Reconstituted Nonfat Dry Milk"

ß-galactosidase (B-gal) is a vital enzyme used in the food industry to reduce lactose from dairy ingredients through hydrolysis and to synthesize galacto-oligosaccharides (GOS), a known bifidogenic prebiotic, from galactose through transgalactosylation. To favor transgalactosylation, high carbohydrate concentrations must be available to accept the galactose. Many dairy products rely on sweeteners for flavor and texture, but it is not known if high non-lactose sugar concentrations in milk can also favor transgalactosylation. B-gal from GRAS status Lactobacillus bulgaricus strains B548, LB11, YB1, or Kluyveromyces lactis (KL) in the commercial product Lactozyme® 2600L were used to determine if the transgalactosylation activity is greater in reconstituted nonfat dry milk (NDM, 10%, wt/wt) with commercial sweeteners compared to the transgalactosylation activity that occurs in unsweetened NDM at 50 °C for 20 h. Sucrose (14.4%, wt/wt), corn syrup solids (14.4%, wt/wt), or a mixture of sucrose (9.9%, wt/wt) and corn syrup solids (4.5%, wt/wt) were dissolved with NDM (n=3), then heated with stirring for 30 minutes at 70 °C for batch pasteurization. For L. bulgaricus, whole cells were inoculated at 7 log CFU/mL, or the same quantity of cells were lysed prior to adding to the milk and carbohydrate mixtures, or 1.85 U of KL B-gal was used. The sucrose mixture released the highest glucose from all whole cell, lysate, and KL enzyme preps, with LB11 lysate releasing the highest (245.57 ± 25.16 mM). High-Performance Anion-Exchange Chromatography with Pulsed Amperometric Detection was used to visualize the presence of oligosaccharides with degrees of polymerization of 3 to 7. Oligosaccharides from YB1 lysate treated sucrose mixtures also increased the anaerobic growth of Bifidobacterium breve 2141 at 37 °C compared to untreated or KL B-gal treated sucrose mixtures. B-gal treatment of sucrose in nonfat milk with and without corn syrup can be a source of prebiotic oligosaccharides, although more work is needed to determine if background microbiota are involved in hydrolyzing sucrose, and if fructose is also polymerizing to form novel oligosaccharides.

Access & Use Information

Public: This dataset is intended for public access and use. License: Creative Commons CCZero

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Dates

Metadata Created Date May 8, 2025
Metadata Updated Date October 2, 2025

Metadata Source

Harvested from USDA JSON

Additional Metadata

Resource Type Dataset
Metadata Created Date May 8, 2025
Metadata Updated Date October 2, 2025
Publisher Agricultural Research Service
Maintainer
Identifier 10.15482/USDA.ADC/28528067.v1
Data Last Modified 2025-09-24
Public Access Level public
Bureau Code 005:18
Metadata Context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
Schema Version https://project-open-data.cio.gov/v1.1/schema
Catalog Describedby https://project-open-data.cio.gov/v1.1/schema/catalog.json
Harvest Object Id 607e6061-37a2-4651-93f0-df3808b524ac
Harvest Source Id d3fafa34-0cb9-48f1-ab1d-5b5fdc783806
Harvest Source Title USDA JSON
License https://creativecommons.org/publicdomain/zero/1.0/
Program Code 005:040
Source Datajson Identifier True
Source Hash 197aa970302c10730623f0fa2b45f1d4f4dd55b4079674c2a1d469f2b712c1f0
Source Schema Version 1.1
Temporal 2025-03-10/2025-03-10

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