Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces

D Xu, L Fels, D Wefers, J Behr, F Jakob… - International Journal of …, 2018 - Elsevier
Water kefir granules are supposed to mainly consist of dextrans produced by Lactobacillus
(L.) hilgardii. Still, other microorganisms such as L. hordei, L. nagelii, Leuconostoc (Lc.) …

Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces.

D Xu, L Fels, D Wefers, J Behr, F Jakob… - International Journal of …, 2018 - europepmc.org
Water kefir granules are supposed to mainly consist of dextrans produced by Lactobacillus
(L.) hilgardii. Still, other microorganisms such as L. hordei, L. nagelii, Leuconostoc (Lc.) …

Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces

D Xu, L Fels, D Wefers, J Behr… - … journal of biological …, 2018 - pubmed.ncbi.nlm.nih.gov
Water kefir granules are supposed to mainly consist of dextrans produced by Lactobacillus
(L.) hilgardii. Still, other microorganisms such as L. hordei, L. nagelii, Leuconostoc (Lc.) …

Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces

D Xu, L Fels, D Wefers, J Behr… - … Journal of Biological …, 2018 - mediatum.ub.tum.de
Water kefir granules are supposed to mainly consist of dextrans produced by Lactobacillus
(L.) hilgardii. Still, other microorganisms such as L. hordei, L. nagelii, Leuconostoc (Lc.) …

[引用][C] Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces

D Xu, L Fels, D Wefers, J Behr… - Int. J. Biological …, 2018 - mediatum.ub.tum.de
mediaTUM - Medien- und Publikationsserver mediaTUM Universitätsbibliothek Technische
Universität München Logo Benutzer: Gast Login de en mediaTUM Gesamtbestand …

[引用][C] Lactobacillus hordei dextrans induce Saccharomyces cerevisiae aggregation and network formation on hydrophilic surfaces

D Xu, L Fels, D Wefers, J Behr, F Jakob, RF Vogel - 2018