24 results on '"Hemkemeyer, Michael"'
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2. A hitchhiker’s guide: estimates of microbial biomass and microbial gene abundance in soil
3. From dry to thrive: Increased metabolic activity, potassium content and a shift towards fungi after drying-rewetting reveals adjustment of the microbial community to osmotic stress
4. Disentangling the effects of mineral fertiliser N, P and K on microbial biomass, necromass and ionome in soil from the Askov long-term field experiment
5. Long-term differences in fertilisation type change the bacteria:archaea:fungi ratios and reveal a heterogeneous response of the soil microbial ionome in a Haplic Luvisol
6. Mycorrhiza Reduces Phosphorus Uptake from Struvite in Rye (Secale cereale L.) Plants
7. A hitchhiker’s guide:estimates of microbial biomass and microbial gene abundance in soil
8. Interaction of minerals, organic matter, and microorganisms during biogeochemical interface formation as shown by a series of artificial soil experiments
9. 9. Artificial Soils as Tools for Microbial Ecology
10. Microbial Community Profiling: SSCP and T-RFLP Techniques
11. Functions of elements in soil microorganisms
12. Black Soldier Fly Diet Impacts Soil Greenhouse Gas Emissions From Frass Applied as Fertilizer
13. Microbial Biomass Sulphur—An Important Yet Understudied Pool in Soil
14. Black Soldier Fly Diet Impacts Soil Greenhouse Gas Emissions From Frass Applied as Fertilizer
15. Artificial soil studies reveal domain-specific preferences of microorganisms for the colonisation of different soil minerals and particle size fractions
16. Response of microbial communities to long-term fertilization depends on their microhabitat
17. Organic Amendments Alleviate Salinity Effects on Soil Microorganisms and Mineralisation Processes in Aerobic and Anaerobic Paddy Rice Soils
18. Taxon-specific fungal preference for distinct soil particle size fractions
19. Bacterial Preferences for Specific Soil Particle Size Fractions Revealed by Community Analyses
20. Mycorrhiza Reduces Phosphorus Uptake from Struvite in Rye (Secale cerealeL.) Plants
21. Soil organic carbon exerts particle size fraction-specific effects on microbial community structure and the mineralisation of organic pollutants
22. Interaction of minerals, organic matter, and microorganisms during biogeochemical interface formation as shown by a series of artificial soil experiments
23. Soil particle size fractions harbour distinct microbial communities and differ in potential for microbial mineralisation of organic pollutants
24. Importance of soil organic matter for the diversity of microorganisms involved in the degradation of organic pollutants
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