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Predator diversity and environmental change modify the strengths of trophic and nontrophic interactions. Global Change Biology 23: 2629–2640,.
. 2017. Thermal acclimation modulates the impacts of temperature and enrichment on trophic interaction strengths and population dynamics. Global Change Biology 21: 3290–3298.
. 2015. Temperature-size responses alter food chain persistence across environmental gradients. Ecology Letters 20: 852–862.
. 2017. Framing fragmentation in strategic policy documents of spatial planning and environmental domains: differences and similarities. Journal of Environmental Planning and Management 63: 415-432.
. 2020. Long-term biomanipulation of Rimov Reservoir (Czech Republic). Hydrobiologia 345: 95–108.
. 1997. Trophic structure of nine Czech reservoirs regularly stocked with piscivorous fish. Hydrobiologia 429: 141–149.
. 2000. Zooplankton community structure along a trophic gradient in a canyon-shaped dam reservoir. Journal of Plankton Research 22: 1829–1840.
. 2000. Spatial distribution of the Daphnia longispina species complex and other planktonic crustaceans in the heterogeneous environment of canyon-shaped reservoirs. Journal of Plankton Research 29: 619–628.
. 2007. Relationship between root length density and soil microorganisms in the rhizospheres of white clover and perennial ryegrass. Communications In Soil Science and Plant Analysis 28: 1675–1682.
. 1997. Effects of Soil Organic Matter Properties and Microbial Community Composition on Enzyme Activities in Cryoturbated Arctic Soils. PLOS ONE 9, doi:10.1371/journal.pone.0094076
. 2014. Effects of trophic status, water level and temperature on shallow lake metabolism and metabolic balance: A standardized pan-European mesocosm experiment. Limnology and Oceanography 64: 616-631.
. 2019. Sources of Errors Made During Determination of Microbial Biomass Through Fumigation Method. Rostlinna vyroba 38: 893–898.
1992. Decomposition processes in soil of a healthy and a declining Phragmites australis stand. Aquatic Botany 69: 217–234.
. 2001. Soil biochemical activity and phosphorus transformations and losses from acidified forest soils. Soil Biology & Biochemistry 36: 1569–1576.
. 2004. Microbial characteristics of soils on a latitudinal transect in Siberia. Global Change Biology 9: 1106–1117.
. 2003. Effect of soil CO2 concentration on microbial biomass. Biology and Fertility of Soils 25: 269–273.
. 1997. Microbial Biomass As A Measure of Soil Biological-activity. Rostlinna vyroba 39: 779–788.
1993. . 2006.
Nitrogen transformations and pools in N-saturated mountain spruce forest soils. Biology and Fertility of Soils 45: 395–404.
. 2009. Natural abundance of C-13 in leaf litter as related to feeding activity of soil invertebrates and microbial mineralisation. Soil Biology & Biochemistry 32: 1793–1797.
. 2000. Carbon isotopes in tree rings of Norway spruce exposed to atmospheric pollution. Environmental Science & Technology 41: 5778–5782.
. 2007. Soil Respiration As A Measure of Soil Biological-activity. Rostlinna vyroba 39: 769–778.
1993. . 1993.
On the Relationship Between Specific Respiration Activity and Microbial Biomass In Soils. Soil Biology & Biochemistry 23: 525–532.
. 1991. Heterotrophic fixation of CO2 in soil. Microbial Ecology 49: 218–225.
. 2005.