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Tree dieback and related changes in nitrogen dynamics modify the concentrations and proportions of cations on soil sorption complex. Ecological Indicators 97: 319–328.
. 2019. Sources of Errors Made During Determination of Microbial Biomass Through Fumigation Method. Rostlinna vyroba 38: 893–898.
1992. Soil-microorganisms at different CO2 and O2 tensions. Folia Microbiologica 39: 225–230.
. 1994. Soil Respiration As A Measure of Soil Biological-activity. Rostlinna vyroba 39: 769–778.
1993. 2016. Soil organic matter quality and microbial activities in spruce swamp forests affected by drainage and water regime restoration. SOIL USE AND MANAGEMENT 32: 200-209.
. 2005.
Soil CO2 efflux in three wet meadow ecosystems with different C and N status. Community Ecology 9: 49–55.
. 2008. Soil carbon inventories and carbon-13 on a latitude transect in Siberia. Tellus Series B - Chemical and Physical Meteorology 54: 631-641.
. 2002. Soil biochemical activity and phosphorus transformations and losses from acidified forest soils. Soil Biology & Biochemistry 36: 1569–1576.
. 2004. Short-term partitioning of C-14-[U]-glucose in the soil microbial pool under varied aeration status. Biology and Fertility of Soils 40: 386–392.
. 2004. Rhizosphere microflora of winter wheat plants cultivated under elevated CO2. Plant and Soil 197: 251-259.
. 1997. Response of central Siberian Scots pine to soil water deficit and long-term trends in atmospheric CO2 concentration. Global Biogeochemical Cycles 16: 1–13.
. 2002. On the Relationship Between Specific Respiration Activity and Microbial Biomass In Soils. Soil Biology & Biochemistry 23: 525–532.
. 1991. 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. Quality of DOC produced during litter decomposition of peatland plant dominants. Soil Biology & Biochemistry 121: 221-230.
. 2018. Quality and potential biodegradability of soil organic matter preserved in permafrost of Siberian tussock tundra. Soil Biology & Biochemistry 39: 1978-1989.
. 2007. Profile Distribution of the Forms of Soil-phosphorus In Dependence On the Degree of Anthropogenic Effect. Rostlinna vyroba 40: 305-314.
. 1994. Pools and composition of soils in the alpine zone of the Tatra Mountains. Biologia 61: S35-S49.
. 2006. A plant–microbe interaction framework explaining nutrient effects on primary production. Nature Ecology & Evolution 2: 1588–1596.
. 2018. Plant growth and microbial processes in a constructed wetland planted with Phalaris arundinacea. Ecological Engineering 27: 153-165.
. 2006. Physiology and microbial community structure in soil at extreme water content. Folia Microbiologica 50: 161–166.
. 2005. Phospholipid fatty acid composition of microorganisms in pine forest soils of Central Siberia. Biology Bulletin 35: 452-458.
. 2008. Nitrogen transformations and pools in N-saturated mountain spruce forest soils. Biology and Fertility of Soils 45: 395–404.
. 2009. Nitrogen availability in Norway spruce forest floor - the effect of forest defoliation induced by bark beetle infestation. BOREAL ENVIRONMENT RESEARCH 15: 553-564.
. 2010. 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.