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Co-occurring graminoid and forb species do not differ in their root morphological response to soil heterogeneity. Folia Geobotanica 41: 121–135.
. 2006. What youngsters say about adults: seedling roots reflect clonal traits of adult plants. Journal of Ecology 95: 406–413.
. 2007. . 2016.
Exploratory analysis of paleoecological data using the program CanoDraw. Journal of Paleolimnology 19: 163-169.
1994. Asymmetric relationship between grasses and forbs: results from a field experiment under nutrient limitation. Grass and Forage Science 68: 186-198.
. 2013. Foraging speed and precision of arbuscular mycorrhizal fungi under field conditions: an experimental approach. Molecular Ecology 1574-1587.
. 2020. Effect of AM symbiosis exclusion on grassland community composition. Folia Geobotanica 35: 13–25.
. 2000. Multivariate Analysis of Ecological Data using Canoco 5, Cambridge University Press.
. 2014. Communities of arbuscular mycorrhizal fungi in grassland: Seasonal variability and effects of environment and host plants. Folia Geobotanica 36: 243–263.
2001. . 2020.
Does fish conditioning in aquaculture increase survival success in the wild? A case study on a cyprinid fish. Sustainability 13: 13936.
. 2021. Associations of fish with various types of littoral habitats in reservoirs. Ecology of Freshwater Fish 23: 405-413.
. 2014. Biomass and Abundance Biases in European Standard Gillnet Sampling. PLoS ONE 10: e0122437.
. 2015. Seasonal and daily protandry in a cyprinid fish. Scientific Reports , doi:10.1038/s41598-017-04827-x
. 2017. Diurnal behavior and habitat preferences of Erebia aethiops, an aberrant lowland species of a mountain butterfly clade. Journal of Insect Behavior 24: 230-246.
. 2011. The Utricularia-associated microbiome: composition, function, and ecology, In Carnivorous plants: Physiology, ecology, and evolution. Oxford University Press.
. 2018. Extracellular enzyme activities in benthic cyanobacterial mats: comparison between nutrient-enriched and control sites in marshes of northern Belize. Aquatic Microbial Ecology 44: 11–20.
. 2006. Utricularia carnivory revisited: plants supply photosynthetic carbon to traps. JOURNAL OF EXPERIMENTAL BOTANY 61: 99-103.
. 2010. Microbial community development in the traps of aquatic Utricularia species. Aquatic Botany 90: 129–136.
. 2009. Ecological implications of organic carbon dynamics in the traps of aquatic carnivorous Utricularia plants. FUNCTIONAL PLANT BIOLOGY 38: 583-593.
. 2011. Enzymatic activities in traps of four aquatic species of the carnivorous genus Utricularia. New Phytologist 159: 669–675.
. 2003. Dinitrogen fixation associated with shoots of aquatic carnivorous plants: is it ecologically important?. ANNALS OF BOTANY 114: 125-133.
. 2014. Hunters or farmers? Microbiome characteristics help elucidate the diet composition in an aquatic carnivorous plant. Microbiome 225, doi:10.1186/s40168-018-0600-7
. 2018. 
The ability of Tetrahymena utriculariae (Ciliophora, Oligohymenophorea) to colonize traps of different species of aquatic carnivorous Utricularia. Journal of Eukaryotic Microbiology 67: 608–611.
. 2020. Current standard assays using artificial substrates overestimate phosphodiesterase activity. SOIL BIOLOGY & BIOCHEMISTRY 56: 75-79.
. 2013.