HR Excellence in Science
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Total found: 15277 records
Xing S., Fayle T. M. (2021) The rise of ecological network meta-analyses: Problems and prospects. Global Ecology and Conservation 30: article number: e01805.
DOI: 10.1016/j.gecco.2021.e01805
Yombai J., Klimeš P., Dargush P., Posman A., Mottl O., Mani A., Dem F., Novotný V. (2021) Ant species diversity, distribution and community composition in different forest types in Papua New Guinea. Case Studies in the Environment 5(1): 1342727.
DOI: 10.1525/cse.2021.1342727
You C., Jirků M., Corcoran D.L., Parker W., Jirků-Pomajbíková K. (2021) Altered gut ecosystems plus the microbiota’s potential for rapid evolution: a recipe for inevitable change with unknown consequences Computational and Structural Biotechnology Journal 19: 5969-5977.
DOI: 10.1016/j.csbj.2021.10.033
Yousefi S., Sharifi M., Štefka J. (2021) Comparative phylogeography of two bat species and their mites in Iran shows impact of host sociality and vagility on population structure Journal of Zoological Systematics and Evolutionary Research 59: 1557–1582.
DOI: 10.1111/jzs.12559
Yurchenko V., Butenko A., Kostygov A. (2021) Genomics of trypanosomatidae: where we stand and what needs to be done? Pathogens 10: 1124.
DOI: 10.3390/pathogens10091124

Documents to download:
Yurchenko_2021_Pathogens (pdf)
Zabelina V., Yonemura N., Uchino K., Iizuka T., Mochida Y., Takemura Y., Klymenko V., Sezutsu H., Sehnal F., Tamura T. (2021) Production of cloned transgenic silkworms by breeding non-diapausing parthenogenic strains. Journal of Insect Physiology 132: article number: 104265.
DOI: 10.1016/j.jinsphys.2021.104265
Zabelina V., Takasu Y., Sehadová H., Yonemura N., Nakajima K., Sezutsu H., Šerý M., Žurovec M., Sehnal F., Tamura T. (2021) Mutation in Bombyx mori fibrohexamerin (P25) gene causes reorganization of rough endoplasmic reticulum in posterior silk gland cells and alters morphology of fibroin secretory globules in the silk gland lumen. Insect Biochemistry and Molecular Biology 135: article number: 103607.
DOI: 10.1016/j.ibmb.2021.103607
Záhonová K., Lax G., Sinha S., Leonard G., Richards T., Lukeš J., Wideman J.G. (2021) Single-cell genomics unveils a canonical origin of the diverse mitochondrial genomes of euglenozoans BMC Biology 19: 103.
DOI: 10.1186/s12915-021-01035-y

Documents to download:
Zahonova_2021_BMC_Biology (pdf)
Zahra S., Novotný V., Fayle T. M. (2021) Do reverse Janzen-Connell effects reduce species diversity? Trends in Ecology & Evolution 36: 387-390.
DOI: 10.1016/j.tree.2021.02.002
Zajączkowska Ž., Akutko K., Kváč M., Sak B., Szydłowicz M., Hendrich A.B., Iwańczak B., Kicia M. (2021) Enterocytozoon bieneusi infects children with inflammatory bowel disease undergoing immunosuppressive treatment Frontiers in Medicine 8: 741751.
DOI: 10.3389/fmed.2021.741751
Zakharova A., Saura A., Butenko A., Podešvová L., Warmusová S., Kostygov A., Nenarokova A., Lukeš J., Opperdoes F.R., Yurchenko V. (2021) A New Model Trypanosomatid, Novymonas esmeraldas: Genomic Perception of Its “Candidatus Pandoraea novymonadis” Endosymbiont mBio 12: e01606-21.
DOI: 10.1128/mBio.01606-21

Documents to download:
Zakharova_2021_mBio (pdf)
Zaman, M., Kleineidam K., Bakken L., Berendt J., Bracken C., Butterbach-Bahl K., Cai Z., Chang S.X., Clough T., Dawar K., Ding W.X., Dörsch P., dos Reis Martins M., Eckhardt C., Fiedler S., Frosch T., Goopy J., Görres C.-M., Gupta A., Henjes S., Hofmann M.E.G., Horn M.A., Jahangir M.M.R., Jansen-Willems A., Lenhart K., Heng L., Lewicka-Szczebak D., Lucic G., Merbold L., Mohn J., Molstad L., Moser G., Murphy P., Sanz-Cobena A., Šimek M., Urquiaga S., Well R., Wrage-Mönnig N., Zaman S., Zhang J., Müller C. (2021) Measuring Emission of Agricultural Greenhouse Gases and Developing Mitigation Options using Nuclear and Related Techniques. Springer, 337 p. ISBN 978-3-030-55395-1 DOI: 10.1007/978-3-030- 55396-8
Žárský V., Klimeš V., Pačes J., Vlček Č., Hradilová M., Beneš V., Nývltová E., Hrdý I., Pyrih J., Mach J., Barlow L., Stairs C.W., Eme L., Hall N., Eliáš M., Dacks J., Roger A., Tachezy J. (2021) The Mastigamoeba balamuthi Genome and the Nature of the Free-Living Ancestor of Entamoeba Molecular Biology and Evolution 38: 2240–2259.
DOI: 10.1093/molbev/msab020
Zawierucha K., Porazinska D.L., Ficetola G.F., Ambrosini R., Baccolo G., Buda J., Ceballos J.L., Devetter M., Dial R., Franzetti A., Fuglewicz U., Gielly L., Łokas E., Janko K., Novotná Jaroměřská T., Kościński A., Kozłowska A., Ono M., Parnikoza I., Pittino F., Poniecka E., Sommers P., Schmidt S.K., Shain D., Sikorska S., Uetake J., Takeuchi N. (2021) A hole in the nematosphere: tardigrades and rotifers dominate the cryoconite hole environment, whereas nematodes are missing Journal of Zoology 313: 18–36.
DOI: 10.1111/jzo.12832
Zemek R., Konopická J., Jozová E., Skoková Habuštová O. (2021) Virulence of Beauveria bassiana strains isolated from cadavers of Colorado potato beetle, Leptinotarsa decemlineata. Insects 12: article number: 1077.
DOI: 10.3390/insects12121077
Zhong Y., Chu C., Myers J.A., Gilbert G.S., Lutz J.A., Stillhard J., Zhu K. , Thompson J., Baltzer J., He F., LaManna J. A., Davies S., Aderson-Teixeira K.J., et al., Novotný V., O’Brien M.J., den Ouden J., Parker G.G., et al., Zhu L., Zimmerman J.K. (2021) Arbuscular mycorrhizal trees influence the latitudinal beta diversity gradient of tree communities in forests worldwide. Nature Communications 12: article number: 3137.
DOI: 10.1038/s41467-021-23236-3
Zhou M., Lutts S., Han R. (2021) Kosteletzkya pentacarpos: A Potential Halophyte Candidate for Phytoremediation in the Meta(loid)s Polluted Saline Soils Plants 10 (11): 2495.
DOI: 10.3390/plants10112495
Ziani S., Bezděk A., Krell F., Sommer D. (2021) Authorship and date of publication of the name Scarabaeus stercorosus (currently Anoplotrupes stercorosus) (Coleoptera: Scarabaeoidea: Geotrupidae). Zootaxa 5067: 593-599.
DOI: https://doi.org/10.11646/zootaxa.5067.4.7
Antoł A., Labecka A.M., Horváthová T., Sikorska A., Szabla N., Bauchinger U., Kozłowski, J., Czarnoleski M. (2020) Effects of thermal and oxygen conditions during development on cell size in the common rough woodlice Porcellio scaber Ecology and Evolution 10: 9552-9566 .
DOI: 10.1002/ece3.6683
Antoł A., Labecka A.M., Horváthová T., Zieliński B., Szabla N., Vasko Y., Pecio A., Kozłowski J., Czarnoleski M. (2020) Thermal and oxygen conditions during development cause common rough woodlice (Porcellio scaber) to alter the size of their gas-exchange organs Journal of Thermal Biology 90: Article number 102600.
DOI: 10.1016/j.jtherbio.2020.102600
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