Carbon translocation to the rhizosphere of maize and wheat and influence on the turnover of native soil organic matter at different soil nitrogen levels
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- Type
- article
- Published
- 1994-04-01
- Cited by
- 172
- References
- 30
- OpenAlex
- https://openalex.org/W2011711943
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:42789405
Keywords
Rhizosphere, Agronomy, Respiration, Soil respiration, Organic matter
References
- Mineralization of nitrogen by protozoan activity in soil
- Energy cost of ion transport.
- Effect of active roots on the decomposition of soil organic materials
- Survival of and introduced into two soils of different texture in field microplots
- Effect of wheat (Triticum aestivum) roots on mineralization rates of soil organic matter
- Subcellular distribution of steryl ester biosynthesis in spinach leaves.
- Organic matter contributed to soil by plant roots during the growth and decomposition of maize
- Assimilate translocation to the rhizosphere of two wheat lines and subsequent utilization by rhizosphere microorganisms at two soil nitrogen concentrations
- Exudation of Water-soluble Vitamins and of Some Carbohydrates by Intact Roots of Maize Seedlings (Zea mays L.) into a Mineral Nutrient Solution
- Interactions of bacteria, protozoa and plants leading to mineralization of soil nitrogen
- Root-induced nitrogen mineralisation: A theoretical analysis
- Determination of carbon 12C and 14C in plant and soil
- Root activity and carbon metabolism in soils
- Effect of plant roots on carbon metabolism of soil microbial biomass
- Production of root-derived material and associated microbial growth in soil at different nutrient levels
- Effect of barley plants on the decomposition of 14C‐labelled soil organic matter
- Contribution of rhizodeposits to the maintenance and growth of soil microbial biomass
- Gas and ion exchanges in wheat roots after nitrogen supply
- Survival of Pseudomonas fluorescens and Bacillus subtilis introduced into two soils of different texture in field microplots
- Suppression of decomposition of 14C‐labelled plant roots in the presence of living roots of maize and perennial ryegrass
Cited by
- Stoichiometric constraints on the microbial processing of carbon with soil depth along a riparian hillslope
- Studies of soil respiration in eucalypt forests of south east Australia
- Linking soil C and N dynamics in managed ecosystem under elevated CO2
- La problématique et l'évolution du contrôle de qualité pour la mise en œuvre de la radiothérapie conformationnelle avec modulation d'intensité
- Étude de la rhizodéposition chez le maïs : influence de la distribution des photo-assimilats aux racines et de la morphologie racinaire
- Dynamique du système racinaire de l'écosystème prairial et contribution au bilan de carbone du sol sous changement climatique
- The Effects of substrate, temperature and soil fertility on respiration and N2O production in pastoral soils
- Molecular mechanisms of plant and microbe coexistence
- Translocation of nitrogen and carbon integrates biotic crust and grass production in desert grassland
- Rhizodeposition and biotic interactions in the rhizosphere of Phaseolus vulgaris L. and Hordeum vulgare L.
- Rôles des modifications de la microflore bactérienne et de l'exudation racinaire de la tomate par la symbiose mycorhizienne dans le biocontrôle sur le Phytophthora nicotianae
- Genetic control of root exudation
- Soil carbon dioxide emission from intensively cultivated black soil in Northeast China: nitrogen fertilization effect
- Biofortification of durum wheat with zinc and iron
- Nitrogen fertilization has minimal influence on rhizosphere effects of smooth crabgrass (Digitaria ischaemum) and bermudagrass (Cynodon dactylon)
- Carbon fluxes from plants to soil and dynamics of microbial immobilization under plastic film mulching and fertilizer application using 13C pulse-labeling
- Soil properties and presence of plants affect the temperature sensitivity of carbon dioxide production by soils
- Carbon allocation in grassland communities under drought stress followed by 14C pulse labeling
- Understanding the variability in soybean nitrogen fixation across agroecosystems
- Root traits as tools for creating phosphorus efficient crop varieties
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