As a prerequisite for use in marine aquaculture, two immobilisation systems were developed by employing the probiotic bacterium Pseudoalteromonas sp. strain MLms_gA3. Their impact on the survivability of the fish pathogen Vibrio anguillarum was explored. Probiotic bacteria either grown as a biofilm on ceramic tiles or embedded in alginate beads were added to sterile artificial seawater that contained the fish pathogen. While immobilisation on ceramics followed a recently developed protocol, a medium allowing for alginate microencapsulation was newly developed. Anti-Vibrio activities were obtained with both immobilisation systems. The viable cell counts of V. anguillarum constantly decreased within the first two weeks of the treatments evidencing the potential of the immobilisation systems for providing probiotic-based protection against this pathogen.
Wesseling W., Lohmeyer M., Wittka S., Bartels J., Kroll S., Soltmann C., Kegler P., Kunzmann A., Neumann S., Ramsch B., Sellner B. and Meinhardt F. (2016) Adverse Effects of Immobilised Pseudoalteromonas on the Fish Pathogenic Vibrio anguillarum: An In Vitro Study. Journal of Marine Biology 2016: 1-11. 10.1155/2016/3683809
@article{Wesseling2016,
Title = {Adverse Effects of Immobilised Pseudoalteromonas on the Fish Pathogenic Vibrio anguillarum: An In Vitro Study},
Author = {Wesseling, Wiebke and Lohmeyer, Michael and Wittka, Sabine and Bartels, Julia and Kroll, Stephen and Soltmann, Christian and Kegler, Pia and Kunzmann, Andreas and Neumann, Sandra and Ramsch, Burkhard and Sellner, Beate and Meinhardt, Friedhelm},
Editor = {},
Journal = {Journal of Marine Biology},
Year = {2016},
Pages = {1-11},
Volume = {2016},
Doi = {10.1155/2016/3683809},
Abstract = {As a prerequisite for use in marine aquaculture, two immobilisation systems were developed by employing the probiotic bacterium Pseudoalteromonas sp. strain MLms_gA3. Their impact on the survivability of the fish pathogen Vibrio anguillarum was explored. Probiotic bacteria either grown as a biofilm on ceramic tiles or embedded in alginate beads were added to sterile artificial seawater that contained the fish pathogen. While immobilisation on ceramics followed a recently developed protocol, a medium allowing for alginate microencapsulation was newly developed. Anti-Vibrio activities were obtained with both immobilisation systems. The viable cell counts of V. anguillarum constantly decreased within the first two weeks of the treatments evidencing the potential of the immobilisation systems for providing probiotic-based protection against this pathogen.},
}
TY - JOUR
AU - Wesseling, Wiebke
AU - Lohmeyer, Michael
AU - Wittka, Sabine
AU - Bartels, Julia
AU - Kroll, Stephen
AU - Soltmann, Christian
AU - Kegler, Pia
AU - Kunzmann, Andreas
AU - Neumann, Sandra
AU - Ramsch, Burkhard
AU - Sellner, Beate
AU - Meinhardt, Friedhelm
TI - Adverse Effects of Immobilised Pseudoalteromonas on the Fish Pathogenic Vibrio anguillarum: An In Vitro Study
T2 - Journal of Marine Biology
PY - 2016
SP - 1-11
VL - 2016
DO - 10.1155/2016/3683809
AB - As a prerequisite for use in marine aquaculture, two immobilisation systems were developed by employing the probiotic bacterium Pseudoalteromonas sp. strain MLms_gA3. Their impact on the survivability of the fish pathogen Vibrio anguillarum was explored. Probiotic bacteria either grown as a biofilm on ceramic tiles or embedded in alginate beads were added to sterile artificial seawater that contained the fish pathogen. While immobilisation on ceramics followed a recently developed protocol, a medium allowing for alginate microencapsulation was newly developed. Anti-Vibrio activities were obtained with both immobilisation systems. The viable cell counts of V. anguillarum constantly decreased within the first two weeks of the treatments evidencing the potential of the immobilisation systems for providing probiotic-based protection against this pathogen.
ER -