List of publications
Total found: 510 records |
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Toxopeus J., McKinnon A.H.,
Štětina T., Turnbull K.F., Sinclair B. (2019) Laboratory acclimation to autumn-like conditions induces freeze tolerance in the spring field cricket Gryllus veletis (Orthoptera: Gryllidae). Journal of Insect Physiology
113: 9-16.
DOI: 10.1016/j.jinsphys.2018.12.007 |
Zarei M., Madadi H., Zamani A.,
Nedvěd O. (2019) Predation rate of competing Chrysoperla carnea and Hippodamia variegata on Aphis fabae at various prey densites and arena complexities. Bulletin of Insectology
72: 273-280.
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Beltrá A., Wäckers F.L.,
Nedvěd O., Pekas A. (2018) Predation rate and performance of three ladybirds against the green peach aphid Myzus persicae in sweet pepper. Entomologia Experimentalis et Applicata
166: 491-499.
DOI: 10.1111/eea.12691 |
Ceryngier P.,
Nedvěd O., Grez A., Riddick E., Roy H., San Martin G., Steenberg T., Veselý P., Zaviezo T., Zúniga-Reinoso Á., Haelewaters D. (2018) Predators and parasitoids of the harlequin ladybird, Harmonia axyridis, in its native range and invaded areas. Biological Invasions
20: 1009-1031.
DOI: 10.1007/s10530-017-1608-9 |
Des Marteaux L. E., Khazraeenia S., Yerushalmi G.Y., Donini A., Li N.G., Sinclair B. (2018) The effect of cold acclimation on active ion transport in cricket ionoregulatory tissues. Comparative Biochemistry and Physiology, Part A
216: 28-33.
DOI: 10.1016/j.cbpa.2017.11.005 |
Des Marteaux L. E.,
Štětina T.,
Košťál V. (2018) Insect fat body cell morphology and response to cold stress is modulated by acclimation. Journal of Experimental Biology
221: jeb189647.
DOI: 10.1242/jeb.189647 |
Des Marteaux L. E., Stinziano J.R., Sinclair B. (2018) Effects of cold acclimation on rectal macromorphology, ultrastructure, and cytoskeletal stability in Gryllus pennsylvanicus crickets. Journal of Insect Physiology
104: 15-24.
DOI: 10.1016/j.jinsphys.2017.11.004 |
Holecová M., Zach P., Hollá K., Šebestová M., Klesniaková M., Šestáková A., Honěk A.,
Nedvěd O., Parák M., Martinková Z., Holec J., Viglášová S., Brown P., Roy H., Kulfan J. (2018) Overwintering of ladybirds (Coleoptera: Coccinellidae) on Scots pine in Central Europe. European Journal of Entomology
115: 658-667.
DOI: 10.14411/eje.2018.065 |
Lakhal M.A., Ghezali D.,
Nedvěd O., Doumandji S. (2018) Checklist of ladybirds of Algeria with two new recorded species (Coleoptera, Coccinellidae). ZooKeys
2018: 41-52.
DOI: 10.3897/zookeys.774.23895 |
Lehmann P., Pruisscher P.,
Košťál V.,
Moos M.,
Šimek P., Nylin S., Agren R., Varemo L., Wiklund C., Wheat C.W., Gotthard K. (2018) Metabolome dynamics of diapause in the butterfly Pieris napi: distinguishing maintenance, termination and post-diapause phases. Journal of Experimental Biology
221: jeb.169508.
DOI: 10.1242/jeb.169508 |
Rozsypal J.,
Košťál V. (2018) Supercooling and freezing as eco-physiological alternatives rather than mutually exclusive strategies: A case study in Pyrrhocoris apterus. Journal of Insect Physiology
111: 53-62.
DOI: 10.1016/j.jinsphys.2018.10.006 |
Rozsypal J.,
Moos M., Goto S.G. (2018) Cold acclimation increases cold tolerance independently of diapause programing in the bean bug, Riptortus pedestris. Bulletin of Entomological Research
108: 487-493.
DOI: 10.1017/S0007485317001006 |
Rozsypal J.,
Moos M.,
Šimek P.,
Košťál V. (2018) Thermal analysis of ice and glass transitions in insects that do and do not survive freezing. Journal of Experimental Biology
221: article number: jeb170464.
DOI: 10.1242/jeb.170464 |
Štětina T.,
Hůla P.,
Moos M.,
Šimek P., Šmilauer P.,
Košťál V. (2018) Recovery from supercooling, freezing, and cryopreservation stress in larvae of the drosophilid fly, Chymomyza costata. Scientific Reports
8: 4414.
DOI: 10.1038/s41598-018-22757-0 |
Awad M. A. E. E., Piálek L.,
Krejčí A., Laugier G.,
Nedvěd O. (2017) Paternity following multiple mating in ladybird Harmonia axyridis. BioControl
62: 297-307.
DOI: 10.1007/s10526-017-9806-z |
Biranvand A., Tomaszewska W.,
Nedvěd O., Khormizi M., Nicolas V., Canepari C., Shakarami J., Fekrat L., Fürsch H. (2017) Review of the tribe Hyperaspidini Mulsant (Coleoptera: Coccinellidae) from Iran. Zootaxa
4326: 311-326.
DOI: 10.11646/zootaxa.4236.2.6 |
Biranvand Amir,
Nedvěd O., Shakarami Jahanshir, Fekrat Lida, Hamidi Elnaz,
Volf M., Hanley Guy A. (2017) The ladybeetle community (Coleoptera: Coccinellidae) in north east of Iran. Baltic Journal of Coleopterology
17: 49-67.
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Escalona H. E., Zwick A., Li H.-S., Li J., Wang X., Pang H., Hartley D., Jermiin L. S.,
Nedvěd O., Misof B., Niehuis O., Ślipiński A., Tomaszewska W. (2017) Molecular phylogeny reveals food plasticity in the evolution of true ladybird beetles (Coleoptera: Coccinellidae: Coccinellini). BMC Evolutionary Biology
17: article number 151.
DOI: 10.1186/s12862-017-1002-3 |
Haelewaters D., Zhao S.Y., Clusella-Trullas S., Cottrell T., De Kesel A., Fiedler L., Herz A., Hesketh H., Hui C., Kleespies R., Losey J., Minnaar I., Murray K.,
Nedvěd O., Pfliegler W., Raak-van den B., Riddick E., Shapiro-Ilan D.I., Smyth R.R., Steenberg T., van Wielink P., Viglášová S., Zhao Z., Ceryngier P., Roy H. (2017) Parasites of Harmonia axyridis: current research and perspectives. BioControl
62: 355-371.
DOI: 10.1007/s10526-016-9766-8 |
Košťál V.,
Štětina T., Poupardin R.,
Korbelová J., Bruce A. W (2017) Conceptual framework of the ecophysiological phases of insect diapause development justified by transcriptomic profiling. Proceedings of the National Academy of Sciences USA
114: 8532-8537 .
DOI: 10.1073/pnas.1707281114 |