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Spatiotemporal patterns of enzyme activities in the rhizosphere: effects of plant growth and root morphology and the rhizosphere extent was constant, while the enzyme activities at the root surface kept increasing. Lupine

Spatial patterns of extracellular enzymes: Combining X-ray computed micro-tomography and 2D zymography. The objectives of the study were (i) to assess spatial distribution patterns in the activity of six enzymes

Spatial patterns of enzyme activities in the rhizosphere: Effects of root hairs and root radius on the spatial distribution of enzyme activity in the rhizosphere of various plants are unknown. Four plants

Environmental drivers and stoichiometric constraints on enzyme activities in soils from rhizosphere to continental scale mainly determined enzyme activity patterns on the continental scale by the humidity gradient. Patterns

Nitrogen-inputs regulate microbial functional and genetic resistance and resilience to drying–rewetting cycles, with implications for crop yields, in terms of abundances of genes (potential functions) and activities of enzymes (quantifiable functions

Microbial growth and enzyme kinetics in rhizosphere hotspots are modulated by soil organics and nutrient availability compared for parameters of microbial growth and enzyme kinetics. The pattern of hotspot distribution

Depth rather than microrelief controls microbial biomass and kinetics of C-, N-, P- and S-cycle enzymes in peatland. The same depth pattern characterized the Vmax distribution of 6 out of 8 enzymes. Phosphatase activity

Spatial heterogeneity of microbial community and enzyme activities in a broad-leaved Korean pine mixed forest, but our knowledge regarding their spatial patterns and underlying driving mechanisms in small scale

Nitrogen-inputs regulate microbial functional and genetic resistance and resilience to drying–rewetting cycles, with implications for crop yields) and activities of enzymes (quantifiable functions), to this stress, and particularly the contribution

Enzyme activity of soils in urban landscapes of the lower Don area, Southern Russia taken down to a depth of 200 cm. The activity of extracellular enzymes was determined

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