Seznam publikací

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Celkem nalezeno: 307 záznamů
Marcisz K., Jassey V.E.J., Kosakyan A., Krashevska V., Lahr D.J.G., Lara E., Lamentowicz L., Lamentowicz M., Macumber A., Mazei Y., Mitchell E.A.D., Nasser N., Patterson T., Roe H.M., Singer D., Tsyganov A., Fournier B. (2020) Testate amoebae functional traits and their use in paleoecology. Frontiers in Ecology and Evolution 8: 575966.
DOI: 10.3389/fevo.2020.575966
Montero R., Strzelczyk J.E., Ho Chan T., Verleih M., Rebl A., Goldammer T., Köllner B., Korytář T. (2020) Dawn to Dusk: Diurnal Rhythm of the Immune Response in Rainbow Trout (Oncorhynchus Mykiss) Biology 9: 8.
DOI: 10.3390/biology9010008
Smýkal V., Pivarči M., Provazník J., Bazalová O., Jedlička P., Lukšan O., Horák A., Vaněčková H., Beneš V., Fiala I., Hanus R., Doležel D. (2020) Complex evolution of insect insulin receptors and homologous decoy receptors, and functional significance of their multiplicity. Molecular Biology and Evolution 37: 1775-1789.
DOI: 10.1093/molbev/msaa048
van Beest G. S., Born-Torrijos A. (2020) Which Way to the Brain? A Parasite’s Favorite Entry Portals Into Fish. Frontiers for Young Minds 8: 25.
DOI: 10.3389/ frym.2020.00025

Dokumenty ke stažení:
van Beest and Born-Torrijos 2020_FrontiersforYoungMinds (pdf)
Yanes-Roca C., Holzer A., Mráz J., Veselý L., Malinovsky O., Policar T. (2020) Improvements on Live Feed Enrichments for Pikeperch (Sander lucioperca) Larval Culture Animals 10: 401.
DOI: 10.3390/ani10030401
Alama Bermejo G., Holzer A., Bartholomew J. (2019) Myxozoan Adhesion and Virulence: Ceratonova shasta on the Move Microorganisms 7: 397.
DOI: 10.3390/microorganisms7100397
Byrne A.Q., Vredenburg V.T. , Martel A., Pasmans F., Bell R.C., Blackburn D.C., Bletz M.C., Bosch J., Briggs C.J., Brown R.M., Catenazzi A., Figueroa-Valenzuela R., Ghose S.L., Jaeger J.R., Jani A.J., Jirků M., Knapp R.A., Muñoz A., Portik D.M., Richards-Zawacki C.L., Rockney H., Rovito S., Stark T., Sulaeman H., Tao N.T., Voyles J., Waddle A.W., Yuan Z., Rosenblum E.B. (2019) Cryptic diversity of a widespread global pathogen reveals expanded threats to amphibian conservation Proceedings of the National Academy of Sciences of the United States of America 116: 41.
DOI: 10.1073/pnas.1908289116
Drábková  M., Jachníková N., Tyml T., Sehadová H., Ditrich O., Myšková E., Hypša V., Štefka J. (2019) Population co-divergence in common cuttlefish (Sepia officinalis) and its dicyemid parasite in the Mediterranean Sea. Scientific Reports 9: 14300.
DOI: 10.1038/s41598-019-50555-9
Jirsová D., Štefka J., Blažek R., Malala J., Lotuliakou D.E., Mahmoud Z., Jirků M. (2019) From taxonomic defation to newly detected cryptic species: Hidden diversity in a widespread African squeaker catfish Scientific Reports 9: 15748.
DOI: 10.1038/s41598-019-52306-2
Korytář T., Wiegertjes G.F., Zusková E., Tomanová A., Lisnerová M., Patra S., Sieranski V., Šíma R., Born-Torrijos A., Wentzel A.S., Blasco-Monleon S., Yanes-Roca C., Policar T., Holzer A. (2019) The kinetics of cellular and humoral immune responses of common carp to presporogonic development of the myxozoan Sphaerospora molnari Parasites & Vectors 12: 208.
DOI: 10.1186/s13071-019-3462-3
Kosakyan A., Alama Bermejo G., Bartošová-Sojková P., Born-Torrijos A., Šíma R., Nenarokova A., Eszterbauer E., Bartholomew J., Holzer A. (2019) Selection of suitable reference genes for gene expression studies in myxosporean (Myxozoa, Cnidaria) parasites. Scientific Reports 9: 15073.
DOI: 10.1038/s41598-019-51479-0

Dokumenty ke stažení:
Kosakyan_2019_ScientReport (pdf)
Kosakyan A., Lara E. (2019) Using Testate Amoebae Communities to Evaluate Environmental Stress: A Molecular Biology Perspective. In. J. Nriagu (Ed.), Encyclopedia of Environmental Health. Vol. 6 308–313.
DOI: 10.1016/B978-0-12-409548-9.11589-1
Lahr D.J.G., Kosakyan A., Lara E., Mitchell E., Morais L., Porfirio-Sousa A.L., Ribeiro G.M., Tice A.K., Pánek T., Kang S., Brown M.W. (2019) Phylogenomics and Morphological Reconstruction of Arcellinida Testate Amoebae Highlight Diversity of Microbial Eukaryotes in the Neoproterozoic Current Biology 29: 991–1001.e3.
DOI: 10.1016/j.cub.2019.01.078
Liu Y., Lövy A., Gu Z., Fiala I. (2019) Phylogeny of Myxobolidae (Myxozoa) and the evolution of myxospore appendages in the Myxobolus clade International Journal for Parasitology 49: 523–530.
DOI: 10.1016/j.ijpara.2019.02.009
Roumbedakis K. , Drábková  M., Tyml T., di Cristo C. (2019) A Perspective Around Cephalopods and Their Parasites, and Suggestions on How to Increase Knowledge in the Field. Frontiers in Physiology 9: 1573.
DOI: 10.3389/fphys.2018.01573
Singer D., Mitchell E.A.D., Payne R.J., Blandenier Q., Duckert C., Fernández L.D., Fournier B., Hernández C.E., Granath G., Rydin H., Bragazza L., Koronatova N.G., Goia I., Harris L.I., Kajukało K., Kosakyan A., Lamentowicz M., Kosykh N.P., Vellak K., Lara E. (2019) Dispersal limitations and historical factors determine the biogeography of specialized terrestrial protists Molecular Ecology 28: 3089–3100.
DOI: 10.1111/mec.15117
van Beest G.S., Villar-Torres M., Raga J., Montero F., Born-Torrijos A. (2019) In vivo fluorescent cercariae reveal the entry portals of Cardiocephaloides longicollis (Rudolphi, 1819) Dubois, 1982 (Strigeidae) into the gilthead seabream Sparus aurata L. Parasites & Vectors 12: 92.
DOI: 10.1186/s13071-019-3351-9
Vávra J., Fiala I., Krylová P., Petrusek A., Hyliš M. (2019) Establishment of a new microsporidian genus and species, Pseudoberwaldia daphniae (Microsporidia, Opisthosporidia), a common parasite of the Daphnia longispina complex in Europe Journal of Invertebrate Pathology 162: 43–54.
DOI: 10.1016/j.jip.2019.02.004
Bartošová-Sojková P., Lövy A., Reed C., Lisnerová M., Tomková T., Holzer A., Fiala I. (2018) Life in a rock pool: Radiation and population genetics of myxozoan parasites in hosts inhabiting restricted spaces PLOS ONE 13: e0194042.
DOI: 10.1371/journal.pone.0194042
Cantatore D.M.P., Irigoitia M., Holzer A., Bartošová-Sojková P., Pecková H., Fiala I., Timi J. (2018) The description of two new species of Chloromyxum Mingazzini, 1890 from skates in the Argentine Sea reveals that a limited geographic host distribution causes phylogenetic lineage separation of myxozoans in Chondrichthyes Parasite 25: 47.
DOI: 10.1051/parasite/2018051
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