P for Two, Sharing a Scarce Resource: Soil Phosphorus Acquisition in the Rhizosphere of Intercropped Species1
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Summary
The relevance of a range of root-induced or microbially-mediated rhizosphere processes driving P acquisition are discussed, and how complementarity may operate when cereals are intercropped with legume by addressing cases of complementary use of soil P resources in space and time.
- Type
- article
- Published
- 2011-04-20
- Cited by
- 442
- References
- 75
- OpenAlex
- https://openalex.org/W21508183
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27346409
Keywords
Selection (genetic algorithm), Biology, Computer science, Artificial intelligence
References
- Microbial community composition and functional diversity in the rhizosphere of maize
- Spatial and temporal dynamics of the microbial community structure in the rhizosphere of cluster roots of white lupin (Lupinus albus L.)
- Root excretion of carboxylic acids and protons in phosphorus-deficient plants
- Low-P tolerance of various maize cultivars
- Partitioning selection and complementarity in biodiversity experiments
- Interspecific complementary and competitive interactions between intercropped maize and faba bean
- Identification of β-propeller phytase-encoding genes in culturable Paenibacillus and Bacillus spp. from the rhizosphere of pasture plants on volcanic soils.
- Roots of the Second Green Revolution
- Growth, P uptake and rhizosphere properties of intercropped wheat and chickpea in soil amended with iron phosphate or phytate
- Plants May Alter Competition by Modifying Nutrient Bioavailability in Rhizosphere: A Modeling Approach
- Positive interactions among plants
- Rhizosphere Properties of Poaceae Genotypes Under P-limiting Conditions
- Soil bacterial and fungal communities across a pH gradient in an arable soil
- The efficiency of a durum wheat-winter pea intercrop to improve yield and wheat grain protein concentration depends on N availability during early growth
- Review of mechanisms and quantification of priming effects.
- Origins of root-mediated pH changes in the rhizosphere and their responses to environmental constraints: A review
- Resource partitioning for soil phosphorus: a hypothesis
- Carboxylate release of wheat, canola and 11 grain legume species as affected by phosphorus status
- Fungi mediate long term sequestration of carbon and nitrogen in soil through their priming effect
- Plants Integrate Information About Nutrients and Neighbors
Cited by
- Study on physical and chemical clogging phenomena during artificial recharge of groundwater
- Changes in tundra plant and soil organic geochemical composition in response to long-term increased winter precipitation in N. Alaska
- Interactions entre céréale et légumineuse en association et acquisition de phosphore du sol : processus rhizosphériques sous-jacents
- Effets des associations de plantes sur la symbiose mycorhizienne et réponse spécifique des plantes à la mycorhization
- Phosphorus content in spring barley and red clover plants in pure and mixed sowing
- Clay minerals, iron/aluminum oxides, and their contribution to phosphate sorption in soils — A myth revisited
- Impact of Roots, Microorganisms and Microfauna on the Fate of Soil Phosphorus in the Rhizosphere
- Effects of root interaction and nitrogen fertilization on the chlorophyll content, root activity, photosynthetic characteristics of intercropped soybean and microbial quantity in the rhizosphere
- Effect of plant species on P cycle-related microorganisms associated with litter decomposition and P soil availability: implications for agroforestry management
- Enhancing Yields in Organic Crop Production by Eco-Functional Intensification
- Integrative Comparison of the Role of the PHOSPHATE RESPONSE1 Subfamily in Phosphate Signaling and Homeostasis in Rice1
- Rhizosphere properties in monocropping and intercropping systems between faba bean (Vicia faba L.) and maize (Zea mays L.) grown in a calcareous soil
- Explore less to control more: why and when should plants limit the horizontal exploration of soil by their roots?
- Physiological and Molecular Aspects of Tolerance to Environmental Constraints in Grain and Forage Legumes
- Plant identity and density can influence arbuscular mycorrhizal fungi colonization, plant growth, and reproduction investment in coculture
- How a phosphorus-acquisition strategy based on carboxylate exudation powers the success and agronomic potential of lupines (Lupinus, Fabaceae).
- Differences in maize physiological characteristics, nitrogen accumulation, and yield under different cropping patterns and nitrogen levels
- The growth of one year-old oil palms intercropped with soybean and groundnut.
- Acquisition of phosphorus and other poorly mobile nutrients by roots. Where do plant nutrition models fail?
- Interspecific facilitation of P acquisition in intercropping of maize with white lupin in two contrasting soils as influenced by different rates and forms of P supply
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