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2022

 

  1. Diallo M.A., Pirotte S., Ju Y., Morvan L., Rakus K., Suarez N.M., PoTsang L., Saneyoshi H., Xu Y., Davison A.J., Tompa P., Sussman J.L., Vanderplasschen A. 2022. A fish herpsvirus highlights functional diversities among Z domains related to phase separation induction and A-to-Z conversion. Nucelic Acids Res. 51(2): 806-830
  2. Wiśniewska K., Rost-Roszkowska M., Homa J., Kasperkiewicz K., Surmiak-Stalmach K., Szulińska E., Wilczek G. 2022. The effect of selected immunostimulants on hemocytes of the false black widow Steatoda grossa (Theridiidae) spiders under chronic exposition to cadmium. Comp. Biochem. Physiol. Part C: Toxicology & Pharmacology 252: 1-9
  3. Jaskulak M., Rorat A., Vandenbulcke F., Pauwels M., Grzmil P., Plytycz B. 2022. Polymorphic microsatellite markers demonstrate hybridization and interspecific gene flow between lumbricid earthworm species, Eisenia andrei and E. fetida. PLoS ONE 17(2): e0262493
  4. Adamek M., Rebl A., Matras M., Lodder C., El Rahman S., Stachnik M., Rakus K., Bauer J., Falco A., Jung-Schroers V., Piewband C., Techangamsuwan S., Surachetpong W., Reichert M., Tetens J., Steinhagen D. 2022. Immunological insights into the resistance of Nile tilapia strains to an infection with tilapia lake virus. Fish & Shellfish Immunology, 124, 118–133.
  5. Klak K., Maciuszek M., Marcinkowska M., Verburg-van Kemenade B.M.L., Chadzinska M. 2022. The importance of CXC-receptors CXCR1-2 and CXCR4 for adaptive regulation of the stress axis in teleost fish. Fish & Shellfish Immunology 127:647-658.
  6. Dietrich M.A., Adamek M., Teitge F., Teich L., Jung-Schroers V., Malinowska A., Świderska B., Rakus K., Kodzik N., Chadzińska M., Karol H., Liszewska E., Ciereszko A. 2022. Proteomic analysis of carp seminal plasma provides insights into the immune response to bacterial infection of the male reproductive system. Fish & Shellfish Immunology. 127(822-835).
  7. Jaskulak M., Vandenbulcke F., Rorat A., Pauwels M., Zorena K., Grzmil P., Płytycz B. 2022. Data on the identification of microsatellite markers in Eisenia fetida and Eisenia andrei. Data in Brief, 45:108612
  8. Prajsnar T., Michno B., Pooranachandran N., Fenton A., Mitchell T., Dockrell D., Renshaw S., Phagosomal Acidification Is Required to Kill Streptococcus pneumoniae in a Zebrafish Model. Cellular Microbiology, vol. 2022, Article ID 9429516, 13 pages, 2022. https://doi.org/10.1155/2022/9429516.