{"id":20368,"date":"2018-02-23T11:31:22","date_gmt":"2018-02-23T11:31:22","guid":{"rendered":"https:\/\/www.upjs.sk\/prirodovedecka-fakulta\/pracoviska\/ubev\/apu\/kb\/publikacie\/"},"modified":"2022-11-13T21:31:42","modified_gmt":"2022-11-13T20:31:42","slug":"publikacie","status":"publish","type":"cpt_pracoviska","link":"https:\/\/www.upjs.sk\/prirodovedecka-fakulta\/pracoviska\/ustavy-pf\/ubev\/apu\/kb\/publikacie\/","title":{"rendered":"Publik\u00e1cie"},"content":{"rendered":"
2013<\/strong><\/p>\n Lackovi\u010dov\u00e1, A., Guttov\u00e1, A., Ba\u010dkor, M., Pi\u0161\u00fat, P., Pi\u0161\u00fat, I. Rep\u010d\u00e1k, M., Suv\u00e1k, M. 2012<\/strong><\/p>\n Ba\u010dkorov\u00e1, M., Jend\u017eelovsk\u00fd, R., Kello, M., Ba\u010dkor, M., Mike\u0161, J., Fedoro\u010dko, P. Bagdonaite, E., M\u00e1rtonfi, P., Rep\u010d\u00e1k, M., Labokas, J. Elia\u0161ov\u00e1, A., Porack\u00e1, V., Pal’ove-Balang, P., Imrich, J., Rep\u010d\u00e1k, M. Fabriciova, G., Lopez-Tobar, E., Ca?amares, M.V., Backor, M., Sanchez-Cortes, S. Hrivn\u00e1k, R., O\u0165ahe\u013eov\u00e1, H., G\u00f6m\u00f6ry, D., Valachovi\u010d, M., Pa\u013eove-Balang, P. Kov\u00e1\u010dik, J., Gr\u00faz, J., Klejdus, B., \u0160tork, F., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., \u0160tork, F., Gr\u00faz, J. Kov\u00e1\u010dik, J., Klejdus, B., Rep\u010d\u00e1kov\u00e1, K. Kov\u00e1\u010dik, J., Klejdus, B., \u0160tork, F., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., \u0160tork, F., Hedbavny, J. Kov\u00e1\u010dik, J., \u0160tork, F., Klejdus, B., Gr\u00faz, J., Hedbavny, J. Matou\u0161ek, J., Stehl\u00edk, J., Proch\u00e1zkov\u00e1, J., Orctov\u00e1, L., Wullenweber, J., F\u00fcssy, Z., Kov\u00e1\u010dik, J., Duraisamy, G.S., Ziegler, A., Schubert, J., Steger, G. Pa\u013eove-Balang, P., \u010ciamporov\u00e1, M., Zelinov\u00e1, V., Pavlovkin, J., Gurinov\u00e1, E., Mistr\u00edk, I. \u0160uvada, R., M\u00e1rtonfi, P., M\u00e1rtonfiov\u00e1, L. Vantov\u00e1, I., Ba\u010dkor, M., Klejdus, B., Ba\u010dkorov\u00e1, M., Kov\u00e1\u010dik, J. 2011<\/strong><\/p>\n Ba\u010dkor, M., P\u00e9li, E.R., Vantov\u00e1, I. Ba\u010dkorov\u00e1, M., Ba\u010dkor, M., Mike\u0161, J., Jend\u017eelovsk\u00fd, R., Fedoro\u010dko, P. Kocov\u00e1, V., M\u00e1rtonfi, P. Kov\u00e1\u010dik, J., Klejdus, B., Ba\u010dkor, M., \u0160tork, F., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., M\u00e1rtonfi, P., \u0160tork, F., M\u00e1rtonfiov\u00e1, L. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., Zo\u0144, J. Kov\u00e1\u010dik, J., Klejdus, B., \u0160tork, F., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., \u0160tork, F., Hedbavny, J., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., \u0160tork, F., Mal\u010dovsk\u00e1, S. Maggi, F., M\u00e1rtonfi, P., Conti, F., Cristalli, G., Papa, F., Sagratini, G., Vittori, S. Pal’ove-Balang, P., Mistr\u00edk, I. Pawlik-Skowro\u0144ska, B., Ba\u010dkor, M. Piov\u00e1r, J., Stavrou, E., Kadukov\u00e1, J., Kim\u00e1kov\u00e1, T., Ba\u010dkor, M. Pisani, T., Munzi, S., Paoli, L., Ba\u010dkor, M., Kov\u00e1\u010dik, J., Piov\u00e1r, J., Loppi, S. Pisani, T., Munzi, S., Paoli, L., Ba\u010dkor, M., Loppi, S. Svitok, M., Hrivn\u00e1k, R., Ot’ahel’ov\u00e1, H., D\u00fabravkov\u00e1, D., Pal’ove-Balang, P., Slobodn\u00edk, V. 2010<\/strong><\/p>\n Ba\u010dkor, M., Klemov\u00e1, K., Ba\u010dkorov\u00e1, M., Ivanova, V. Ba\u010dkor, M., Kov\u00e1\u010dik, J., Piov\u00e1r, J., Pisani, T., Loppi, S. Ba\u010dkor, M., Peksa, O., \u0160kaloud, P., Ba\u010dkorov\u00e1, M. Bagdonaite, E., M\u00e1rtonfi, P., Rep\u010d\u00e1k, M., Labokas, J. Hrivn\u00e1k, R., Ot’ahel’ov\u00e1, H., Valachovi\u010d, M., Pal’ove-Balang, P., Kubinsk\u00e1, A. Ivanova, V., Ba\u010dkor, M., Dahse, H.-M., Graefe, U. Kolar\u010dik, V., Zozomov\u00e1-Lihov\u00e1, J., M\u00e1rtonfi, P. Kov\u00e1\u010dik, J., Gr\u00faz, J., Klejdus, B., \u0160tork, F., Marchiosi, R., Ferrarese-Filho, O. Kov\u00e1\u010dik, J., Klejdus, B., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Gr\u00faz, J., Mal\u010dovsk\u00e1, S., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., Ba\u010dkor, M. Kov\u00e1\u0107ik, J., Klejdus, B., Hedbavny, J., Ba\u0107kor, M. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., Zo\u0144, J. M\u00e1rtonfiov\u00e1, L., M\u00e1rtonfi, P., \u0160uvada, R. P\u00f6ykk\u00f6, H., Ba\u010dkor, M., Benc\u00farov\u00e1, E., Molcanov\u00e1, V., Ba\u010dkorov\u00e1, M., Hyv\u00e4rinen, M. Zelinov\u00e1, V., Mistr\u00edk, I., Pa\u013eove-Balang, P., Tam\u00e1s, L. 2009<\/strong><\/p>\n Ba\u010dkor, M., Klejdus, B., Vantov\u00e1, I., Kov\u00e1\u010dik, J. Ba\u010dkor, M., Kov\u00e1\u010dik, J., Dzubaj, A., Ba\u010dkorov\u00e1, M. Ba\u010dkor, M., Loppi, S. G\u00e1l, P., Toporcer, T., Grendel, T., Vidov\u00e1, Z., Smetana Jr., K., Dvo\u0159\u00e1nkov\u00e1, B., G\u00e1l, T., Moze\u0161, S., Lenhardt, L., Longauer, F., Sabol, M., Sabo, J., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Gr\u00faz, J., Ba\u010dkor, M., Strnad, M., Rep\u010d\u00e1k, M. Kov\u00e1\u010dik, J., Gr\u00faz, J., Hedbavny, J., Klejdus, B., Strnad, M. Kov\u00e1\u010dik, J., Klejdus, B., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Hedbavny, J., \u0160tork, F., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Klejdus, B., Kadukov\u00e1, J., Ba\u010dkor, M. Ol\u0161avsk\u00e1, K., Pern\u00fd, M., M\u00e1rtonfi, P., Hod\u00e1lov\u00e1, I. Pavlovkin, J., Pal’ove-Balang, P., Kolarovi\u010d, L., Zelinov\u00e1, V. Pisani, T., Munzi, S., Paoli, L., Ba\u010dkor, M., Loppi, S. Rep\u010d\u00e1k, M., Krausov\u00e1, T. Rep\u010d\u00e1k, M., \u0160majda, B., Kov\u00e1\u010dik, J., Elia\u0161ov\u00e1, A. Zelinov\u00e1, V., Huttov\u00e1, J., Mistr\u00edk, I., Pal’ove-Balang, P., Tam\u00e1s, L. 2008<\/strong><\/p>\n Ba\u010dkor, M., Fahselt, D. Dzubaj, A., Ba\u010dkor, M., Tomko, J., Peli, E., Tuba, Z. Hod\u00e1lov\u00e1, I., Mered’a Jr., P., M\u00e1rtonfi, P., M\u00e1rtonfiov\u00e1, L., Danihelka, J. Kov\u00e1\u010dik, J., Ba\u010dkor, M. Kov\u00e1\u010dik, J., Ba\u010dkor, M., Kadukov\u00e1, J. Kov\u00e1\u010dik, J., Gr\u00faz, J., Ba\u010dkor, M., Tomko, J., Strnad, M., Rep\u010d\u00e1k, M. Kov\u00e1\u010dik, J., Rep\u010d\u00e1k, M. Krak, K., Mr\u00e1z, P. Maggi, F., Kolar\u010dik, V., M\u00e1rtonfi, P. M\u00e1rtonfi, P. M\u00e1rtonfi, P., M\u00e1rtonfiov\u00e1, L., Kolar\u010dik, V. Mere\u010fa Jr., P., Hod\u00e1lov\u00e1, I., M\u00e1rtonfi, P., Ku\u010dera, J., Lihov\u00e1, J. Mr\u00e1z, P., \u0160ingliarov\u00e1, B., Urfus, T., Krahulec, F.
Response of Evernia prunastri to urban environmental conditions in Central Europe after the decrease of air pollution<\/strong>
(2013)\u00a0Lichenologist<\/strong>,\u00a045\u00a0(1),\u00a0pp.\u00a089-100.\u00a0<\/p>\n
Methyl jasmonate and Echinothrips americanus regulate coumarin accumulation in leaves of Matricaria chamomilla<\/strong>
(2013)\u00a0Biochemical Systematics and Ecology<\/strong>,\u00a047,\u00a0pp.\u00a038-41.\u00a0<\/p>\n
Lichen secondary metabolites are responsible for induction of apoptosis in HT-29 and A2780 human cancer cell lines<\/strong>
(2012)\u00a0Toxicology in Vitro<\/strong>,\u00a026\u00a0(3),\u00a0pp.\u00a0462-468.<\/p>\n
Variation in concentrations of major bioactive compounds in Hypericum perforatum L. from Lithuania<\/strong>
(2012)\u00a0Industrial Crops and Products<\/strong>,\u00a035\u00a0(1),\u00a0pp.\u00a0302-308.\u00a0<\/p>\n
Accumulation of tetracoumaroyl spermine in Matricaria chamomilla during Floral development and nitrogen deficiency<\/strong>
(2012)\u00a0Zeitschrift fur Naturforschung – Section C Journal of Biosciences<\/strong>,\u00a067\u00a0(1-2),\u00a0pp.\u00a058-64.\u00a0<\/p>\n
Adsorption of the anthraquinone drug parietin on silver nanoparticles: A SERS and fluorescence study<\/strong>
(2012)\u00a0Vibrational Spectroscopy<\/strong>,\u00a063,\u00a0pp.\u00a0477-484.\u00a0<\/p>\n
Environmental effects on species richness of macrophytes in Slovak streams<\/strong>
(2012)\u00a0Central European Journal of Biology<\/strong>,\u00a07\u00a0(6),\u00a0pp.\u00a01030-1036.\u00a0<\/p>\n
Accumulation of metals and selected nutritional parameters in the field-grown chamomile anthodia<\/strong>
(2012)\u00a0Food Chemistry<\/strong>,\u00a0131\u00a0(1),\u00a0pp.\u00a055-62.<\/p>\n
Modulation of copper uptake and toxicity by abiotic stresses in Matricaria chamomilla plants<\/strong>
(2012)\u00a0Journal of Agricultural and Food Chemistry<\/strong>,\u00a060\u00a0(27),\u00a0pp.\u00a06755-6763.\u00a0<\/p>\n
Phenolic metabolites in carnivorous plants: Inter-specific comparison and physiological studies<\/strong>
(2012)\u00a0Plant Physiology and Biochemistry<\/strong>,\u00a052,\u00a0pp.\u00a021-27.<\/p>\n
Physiological responses of Tillandsia albida (Bromeliaceae) to long-term foliar metal application<\/strong>
(2012)\u00a0Journal of Hazardous Materials<\/strong>,\u00a0239-240,\u00a0pp.\u00a0175-182.\u00a0<\/p>\n
Prey-induced changes in the accumulation of amino acids and phenolic metabolites in the leaves of Drosera capensis L<\/strong>
(2012)\u00a0Amino Acids<\/strong>,\u00a042\u00a0(4),\u00a0pp.\u00a01277-1285.<\/p>\n
Effect of metabolic regulators on aluminium uptake and toxicity in Matricaria chamomilla plants<\/strong>
(2012)\u00a0Plant Physiology and Biochemistry<\/strong>,\u00a054,\u00a0pp.\u00a0140-148.\u00a0<\/p>\n
Biological and molecular analysis of the pathogenic variant C3 of potato spindle tuber viroid (PSTVd) evolved during adaptation to chamomile (Matricaria chamomilla)<\/strong>
(2012)\u00a0Biological Chemistry<\/strong>,\u00a0393\u00a0(7),\u00a0pp.\u00a0605-615.\u00a0<\/p>\n
Cellular responses of two Latin-American cultivars of Lotus corniculatus to low pH and Al stress<\/strong>
(2012)\u00a0Central European Journal of Biology<\/strong>,\u00a07\u00a0(6),\u00a0pp.\u00a01046-1054.\u00a0<\/p>\n
Differentiation of Diploid and Triploid Taxa within Taraxacum sect. Erythrosperma (Asteraceae) from the Pannonian Region<\/strong>
(2012)\u00a0Folia Geobotanica<\/strong>,\u00a047\u00a0(1),\u00a0pp.\u00a069-91.\u00a0<\/p>\n
Copper uptake and copper-induced physiological changes in the epiphytic lichen Evernia prunas<\/strong>tri
(2012)\u00a0Plant Growth Regulation<\/strong>,\u00a069\u00a0(1),\u00a0pp.\u00a01-9.\u00a0<\/p>\n
Copper tolerance in the macrolichens Cladonia furcata and Cladina arbuscula subsp. mitis is constitutive rather than inducible<\/strong>
(2011)\u00a0Chemosphere<\/strong>,\u00a085\u00a0(1),\u00a0pp.\u00a0106-113.<\/p>\n
Variable responses of different human cancer cells to the lichen compounds parietin, atranorin, usnic acid and gyrophoric acid<\/strong>
(2011)\u00a0Toxicology in Vitro<\/strong>,\u00a025\u00a0(1),\u00a0pp.\u00a037-44.<\/p>\n
Endopolyploidy in Trifolium pratense L<\/strong>
(2011)\u00a0Caryologia<\/strong>,\u00a064\u00a0(4),\u00a0pp.\u00a0419-426.\u00a0<\/p>\n
Physiological responses of root-less epiphytic plants to acid rain<\/strong>
(2011)\u00a0Ecotoxicology<\/strong>,\u00a020\u00a0(2),\u00a0pp.\u00a0348-357.<\/p>\n
Copper uptake, physiology and cytogenetic characteristics in three Matricaria chamomilla cultivars<\/strong>
(2011)\u00a0Water, Air, and Soil Pollution<\/strong>,\u00a0218\u00a0(1-4),\u00a0pp.\u00a0681-691.<\/p>\n
Significance of phenols in cadmium and nickel uptake<\/strong>
(2011)\u00a0Journal of Plant Physiology<\/strong>,\u00a0168\u00a0(6),\u00a0pp.\u00a0576-584.<\/p>\n
Nitrate deficiency reduces cadmium and nickel accumulation in chamomile plants<\/strong>
(2011)\u00a0Journal of Agricultural and Food Chemistry<\/strong>,\u00a059\u00a0(9),\u00a0pp.\u00a05139-5149.<\/p>\n
Comparison of methyl jasmonate and cadmium effect on selected physiological parameters in Scenedesmus quadricauda (Chlorophyta, Chlorophyceae)<\/strong>
(2011)\u00a0Journal of Phycology<\/strong>,\u00a047\u00a0(5),\u00a0pp.\u00a01044-1049.<\/p>\n
Sensitivity of Xanthoria parietina to UV-A: Role of metabolic modulators<\/strong>
(2011)\u00a0Journal of Photochemistry and Photobiology B: Biology<\/strong>,\u00a0103\u00a0(3),\u00a0pp.\u00a0243-250.\u00a0<\/p>\n
Volatile components of whole and different plant parts of bastard balm (Melittis melissophyllum L., Lamiaceae) collected in central Italy and Slovakia<\/strong>
(2011)\u00a0Chemistry and Biodiversity<\/strong>,\u00a08\u00a0(11),\u00a0pp.\u00a02057-2079.<\/p>\n
Effect of aluminium on nitrogen assimilation in roots of Lotus japonicus<\/strong>
(2011)\u00a0Plant Biosystems<\/strong>,\u00a0145\u00a0(3),\u00a0pp.\u00a0527-531.\u00a0<\/p>\n
Zn\/Pb-tolerant lichens with higher content of secondary metabolites produce less phytochelatins than specimens living in unpolluted habitats<\/strong>
(2011)\u00a0Environmental and Experimental Botany<\/strong>,\u00a072\u00a0(1),\u00a0pp.\u00a064-70.<\/p>\n
Influence of long-term exposure to copper on the lichen photobiont Trebouxia erici and the free-living algae Scenedesmus quadricauda<\/strong>
(2011)\u00a0Plant Growth Regulation<\/strong>,\u00a063\u00a0(1),\u00a0pp.\u00a081-88.<\/p>\n
Physiological effects of mercury in the lichens Cladonia arbuscula subsp. mitis (Sandst.) Ruoss and Peltigera rufescens (Weiss) Humb<\/strong>
(2011)\u00a0Chemosphere<\/strong>,\u00a082\u00a0(7),\u00a0pp.\u00a01030-1037.<\/p>\n
Physiological effects of arsenic in the lichen Xanthoria parietina (L.) Th. Fr.<\/strong>
(2011)\u00a0Chemosphere<\/strong>,\u00a082\u00a0(7),\u00a0pp.\u00a0963-969.<\/p>\n
The importance of local and regional factors on the vegetation of created wetlands in Central Europe<\/strong>
(2011)\u00a0Wetlands<\/strong>,\u00a031\u00a0(4),\u00a0pp.\u00a0663-674.<\/p>\n
Comparison of the phytotoxic effects of usnic acid on cultures of free-living alga Scenedesmus quadricauda and aposymbiotically grown lichen photobiont Trebouxia erici<\/strong>
(2010)\u00a0Journal of Chemical Ecology<\/strong>,\u00a036\u00a0(4),\u00a0pp.\u00a0405-411.<\/p>\n
Physiological aspects of cadmium and nickel toxicity in the lichens Peltigera rufescens and Cladina arbuscula subsp. mitis<\/strong>
(2010)\u00a0Water, Air, and Soil Pollution<\/strong>,\u00a0207\u00a0(1-4),\u00a0pp.\u00a0253-262.<\/p>\n
Photobiont diversity in lichens from metal-rich substrata based on ITS rDNA sequences<\/strong>
(2010)\u00a0Ecotoxicology and Environmental Safety<\/strong>,\u00a073\u00a0(4),\u00a0pp.\u00a0603-612.<\/p>\n
Variation in the contents of pseudohypericin and hypericin in Hypericum perforatum from Lithuania<\/strong>
(2010)\u00a0Biochemical Systematics and Ecology<\/strong>,\u00a038\u00a0(4),\u00a0pp.\u00a0634-640.<\/p>\n
Effect of environmental variables on the aquatic macrophyte composition pattern in streams: A case study from Slovakia<\/strong>
(2010)\u00a0Fundamental and Applied Limnology<\/strong>,\u00a0177\u00a0(2),\u00a0pp.\u00a0115-124.\u00a0<\/p>\n
Molecular structural studies of lichen substances with antimicrobial, antiproliferative, and cytotoxic effects from Parmelia subrudecta<\/strong>
(2010)\u00a0Preparative Biochemistry and Biotechnology<\/strong>,\u00a040\u00a0(4),\u00a0pp.\u00a0377-388.<\/p>\n
Systematics and evolutionary history of the Asterotricha group of the genus Onosma (Boraginaceae) in central and southern Europe inferred from AFLP and nrDNA ITS data<\/strong>
(2010)\u00a0Plant Systematics and Evolution<\/strong>,\u00a0290\u00a0(1),\u00a0pp.\u00a021-45.<\/p>\n
Lignification and related parameters in copper-exposed Matricaria chamomilla roots: Role of H2O2 and NO in this process<\/strong>
(2010)\u00a0Plant Science<\/strong>,\u00a0179\u00a0(4),\u00a0pp.\u00a0383-389.<\/p>\n
Physiological responses of Scenedesmus quadricauda (Chlorophyceae) to UV-A and UV-C light<\/strong>
(2010)\u00a0Photochemistry and Photobiology<\/strong>,\u00a086\u00a0(3),\u00a0pp.\u00a0612-616.<\/p>\n
Role of ploidy in cadmium and nickel uptake by Matricaria chamomilla plants<\/strong>
(2010)\u00a0Food and Chemical Toxicology<\/strong>,\u00a048\u00a0(8-9),\u00a0pp.\u00a02109-2114.<\/p>\n
Effect of aluminium uptake on physiology, phenols and amino acids in Matricaria chamomilla plants<\/strong>
(2010)\u00a0Journal of Hazardous Materials<\/strong>,\u00a0178\u00a0(1-3),\u00a0pp.\u00a0949-955.<\/p>\n
Effect of copper and salicylic acid on phenolic metabolites and free amino acids in Scenedesmus quadricauda (Chlorophyceae)<\/strong>
(2010)\u00a0Plant Science<\/strong>,\u00a0178\u00a0(3),\u00a0pp.\u00a0307-311.<\/p>\n
Tolerance of Silene vulgaris to copper: Population-related comparison of selected physiological parameters<\/strong>
(2010)\u00a0Environmental Toxicology<\/strong>,\u00a025\u00a0(6),\u00a0pp.\u00a0581-592.<\/p>\n
Copper uptake is differentially modulated by phenylalanine ammonia-lyase inhibition in diploid and tetraploid chamomile<\/strong>
(2010)\u00a0Journal of Agricultural and Food Chemistry<\/strong>,\u00a058\u00a0(18),\u00a0pp.\u00a010270-10276.<\/p>\n
Breeding behavior and its possible consequences for gene flow in Taraxacum sect. Erythrosperma (H. Lindb.) Dahlst.<\/strong>
(2010)\u00a0Plant Species Biology<\/strong>,\u00a025\u00a0(2),\u00a0pp.\u00a093-102.<\/p>\n
Host use of a specialist lichen-feeder: Dealing with lichen secondary metabolites<\/strong>
(2010)\u00a0Oecologia<\/strong>,\u00a0164\u00a0(2),\u00a0pp.\u00a0423-430.<\/p>\n
Peroxidase activity against guaiacol, NADH, chlorogenic acid, ferulic acid and coniferyl alcohol in root tips of Lotus japonicus and L. corniculatus grown under low pH and aluminium stress<\/strong>
(2010)\u00a0Biologia<\/strong>,\u00a065\u00a0(2),\u00a0pp.\u00a0279-283.\u00a0<\/p>\n
Physiological adaptations in the lichens Peltigera rufescens and Cladina arbuscula var. mitis, and the moss Racomitrium lanuginosum to copper-rich substrate<\/strong>
(2009)\u00a0Chemosphere<\/strong>,\u00a076\u00a0(10),\u00a0pp.\u00a01340-1343.<\/p>\n
Physiological comparison of copper toxicity in the lichens Peltigera rufescens (Weis) Humb. and Cladina arbuscula subsp. mitis (Sandst.) Ruoss<\/strong>
(2009)\u00a0Plant Growth Regulation<\/strong>,\u00a058\u00a0(3),\u00a0pp.\u00a0279-286.<\/p>\n
Interactions of lichens with heavy metals<\/strong>
(2009)\u00a0Biologia Plantarum<\/strong>,\u00a053\u00a0(2),\u00a0pp.\u00a0214-222.<\/p>\n
Effect of Atropa belladonna L. on skin wound healing: Biomechanical and histological study in rats and in vitro study in keratinocytes, 3T3 fibroblasts, and human umbilical vein endothelial cells<\/strong>
(2009)\u00a0Wound Repair and Regeneration<\/strong>,\u00a017\u00a0(3),\u00a0pp.\u00a0378-386.<\/p>\n
Salicylic acid-induced changes to growth and phenolic metabolism in Matricaria chamomilla plants<\/strong>
(2009)\u00a0Plant Cell Reports<\/strong>,\u00a028\u00a0(1),\u00a0pp.\u00a0135-143.<\/p>\n
Cadmium and nickel uptake are differentially modulated by salicylic acid in Matricaria chamomilla plants<\/strong>
(2009)\u00a0Journal of Agricultural and Food Chemistry<\/strong>,\u00a057\u00a0(20),\u00a0pp.\u00a09848-9855.<\/p>\n
Nitric oxide signals ROS scavenger-mediated enhancement of PAL activity in nitrogen-deficient Matricaria chamomilla roots: side effects of scavengers<\/strong>
(2009)\u00a0Free Radical Biology and Medicine<\/strong>,\u00a046\u00a0(12),\u00a0pp.\u00a01686-1693.<\/p>\n
Phenolic metabolism of Matricaria chamomilla plants exposed to nickel<\/strong>
(2009)\u00a0Journal of Plant Physiology<\/strong>,\u00a0166\u00a0(13),\u00a0pp.\u00a01460-1464.<\/p>\n
Nickel uptake and its effect on some nutrient levels, amino acid contents and oxidative status in Matricaria chamomilla plants<\/strong>
(2009)\u00a0Water, Air, and Soil Pollution<\/strong>,\u00a0202\u00a0(1-4),\u00a0pp.\u00a0199-209.<\/p>\n
Salicylic acid alleviates NaCl-induced changes in the metabolism of Matricaria chamomilla plants<\/strong>
(2009)\u00a0Ecotoxicology<\/strong>,\u00a018\u00a0(5),\u00a0pp.\u00a0544-554.<\/p>\n
Comparison of cadmium and copper effect on phenolic metabolism, mineral nutrients and stress-related parameters in Matricaria chamomilla plants<\/strong>
(2009)\u00a0Plant and Soil<\/strong>,\u00a0320\u00a0(1-2),\u00a0pp.\u00a0231-242.<\/p>\n
Physiology of Matricaria chamomilla exposed to nickel excess<\/strong>
(2009)\u00a0Ecotoxicology and Environmental Safety<\/strong>,\u00a072\u00a0(2),\u00a0pp.\u00a0603-609.<\/p>\n
Cyanus triumfettii subsp. triumfettii (Compositae) does not occur in the western carpathians and adjacent parts of pannonia: Karyological and morphological evidence<\/strong>
(2009)\u00a0Nordic Journal of Botany<\/strong>,\u00a027\u00a0(1),\u00a0pp.\u00a021-36.<\/p>\n
Growth and functional responses of different cultivars of Lotus corniculatus to aluminum and low pH stress<\/strong>
(2009)\u00a0Journal of Plant Physiology<\/strong>,\u00a0166\u00a0(14),\u00a0pp.\u00a01479-1487.\u00a0<\/p>\n
Physiological effects of a geothermal element: Boron excess in the epiphytic lichen Xanthoria parietina (L.) TH. FR.<\/strong>
(2009)\u00a0Chemosphere<\/strong>,\u00a076\u00a0(7),\u00a0pp.\u00a0921-926.<\/p>\n
Phenolic glucosides in the course of ligulate flower development in diploid and tetraploid Matricaria chamomilla<\/strong>
(2009)\u00a0Food Chemistry<\/strong>,\u00a0116\u00a0(1),\u00a0pp.\u00a019-22.<\/p>\n
Circadian rhythm of (Z)- and (E)-2-?-D-glucopyranosyloxy-4-methoxy cinnamic acids and herniarin in leaves of Matricaria chamomilla<\/strong>
(2009)\u00a0Plant Cell Reports<\/strong>,\u00a028\u00a0(7),\u00a0pp.\u00a01137-1143.\u00a0<\/p>\n
Impact of aluminum on phosphate uptake and acid phosphatase activity in root tips of Lotus japonicus<\/strong>
(2009)\u00a0Journal of Plant Nutrition<\/strong>,\u00a032\u00a0(10),\u00a0pp.\u00a01633-1641.\u00a0\u00a0<\/p>\n
Lichen photobionts and metal toxicity<\/strong>
(2008)\u00a0Symbiosis<\/strong>,\u00a046\u00a0(1),\u00a0pp.\u00a01-10.<\/p>\n
Tolerance of the lichen Xanthoria parietina (L.) Th. Fr. to metal stress<\/strong>
(2008)\u00a0Ecotoxicology and Environmental Safety<\/strong>,\u00a070\u00a0(2),\u00a0pp.\u00a0319-326.<\/p>\n
Morphological characters useful for the delimitation of taxa within Viola subsect. Viola (Violaceae): A morphometric study from the West Carpathians<\/strong>
(2008)\u00a0Folia Geobotanica<\/strong>,\u00a043\u00a0(1),\u00a0pp.\u00a083-117.<\/p>\n
Oxidative status of Matricaria chamomilla plants related to cadmium and copper uptake<\/strong>
(2008)\u00a0Ecotoxicology<\/strong>,\u00a017\u00a0(6),\u00a0pp.\u00a0471-479.<\/p>\n
Physiological responses of Matricaria chamomilla to cadmium and copper excess<\/strong>
(2008)\u00a0Environmental Toxicology<\/strong>,\u00a023\u00a0(1),\u00a0pp.\u00a0123-130.<\/p>\n
Phenolic compounds composition and physiological attributes of Matricaria chamomilla grown in copper excess<\/strong>
(2008)\u00a0Environmental and Experimental Botany<\/strong>,\u00a062\u00a0(2),\u00a0pp.\u00a0145-152.<\/p>\n
Accumulation of coumarin-related compounds in leaves of Matricaria chamomilla related to sample processing<\/strong>
(2008)\u00a0Food Chemistry<\/strong>,\u00a0111\u00a0(3),\u00a0pp.\u00a0755-757.<\/p>\n
Trichomes in the tribe Lactuceae (Asteraceae) – Taxonomic implications<\/strong>
(2008)\u00a0Biologia<\/strong>,\u00a063\u00a0(5),\u00a0pp.\u00a0616-630.<\/p>\n
Palynological analysis of five selected Onosma taxa<\/strong>
(2008)\u00a0Biologia<\/strong>,\u00a063\u00a0(2),\u00a0pp.\u00a0183-186.<\/p>\n
Hypericum dubium Leers – New data on taxonomy and biology<\/strong>
(2008)\u00a0Folia Geobotanica<\/strong>,\u00a043\u00a0(1),\u00a0pp.\u00a069-82.<\/p>\n
Karyotypes and genome size of Onosma species from northern limits of the genus in carpathians<\/strong>
(2008)\u00a0Caryologia<\/strong>,\u00a061\u00a0(4),\u00a0pp.\u00a0363-374.<\/p>\n
Intraspecific variation in Viola suavis in Europe: Parallel evolution of white-flowered morphotypes<\/strong>
(2008)\u00a0Annals of Botany<\/strong>,\u00a0102\u00a0(3),\u00a0pp.\u00a0443-462.<\/p>\n
Cytogeography of Pilosella officinarum (Compositae): Altitudinal and longitudinal differences in ploidy level distribution in the Czech Republic and Slovakia and the general pattern in Europe<\/strong>
(2008)\u00a0Annals of Botany<\/strong>,\u00a0101\u00a0(1),\u00a0pp.\u00a059-71.\u00a0<\/p>\n