Nutrient Distribution around Roots of Brachiaria, Maize, Sorghum, and Upland Rice in an Andisol
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概要
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Plants grown on Andisols often have an insufficient phosphorus (P) supply, since active aluminium (Al) and iron bind P in low available forms to the plants. The objectives of the present studies were to examine the differences in growth associated with the P-uptake ability among four Gramineae, to determine which P-forms are utilised, and to relate plant growth to the distribution of nutrients in soil close to the roots. Rhizosphere soil was separated from bulk soil by using a rhizobox system. Shoot and root yields and nutrient contents of maize (Zea mays L.), Sorghum bicolor (L.), Brachiaria dictyoneura (Stapf), and upland rice (Oryza sativa L.) were determined after cultivation in rhizo-boxes for 105 d. Soil was sampled at increasing distances from the roots and analysed for P compounds, other nutrients, and pH. Maize gave the highest yield by using P reserves in its large seeds, resulting in the greatest depletion of K in the root soil of maize. Brachiaria showed the highest efficiency while upland rice the lowest in using soil P, respectively. The amounts of Bray-2 P and acetic acid-extractable P were significantly lower in root soil compared to bulk soil. Soil pH increased in the root soil of all crops, mainly around the Brachiaria roots.
著者
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Ae Noriharu
National Institute For Agro-environmental Sciences
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Hylander Lars
National Institute Of Agro-environmental Sciences:(present Address)uppsala University
関連論文
- The Status and Origin of Available Nitrogen in Soils
- Nitrogen Uptake Response of Vegetable Crops to Organic Materials
- Characteristics of Extractable Soil Organic Nitrogen Determined by Using Various Chemical Solutions and Its Significance for Nitrogen Uptake by Crops
- Growth Responses of Cereal Crops to Organic Nitrogen in the Field (Plant Nutrition)
- Nutrient Distribution around Roots of Brachiaria, Maize, Sorghum, and Upland Rice in an Andisol
- Extraction of Organic Phosphorus in Andosols by Various Methods
- Genetic Variation in Acquisition, and Utilization of Phosphorus from Iron-Bound Phosphorus in Pigeonpea
- The Status of Inorganic and Organic Phosphorus in Some Soils in Relation to Plant Availability
- Genotypic Variation in Iron-, and Aluminum-Phosphate Solubilizing Activity of Pigeonpea Root Exudates under P Deficient Conditions
- Phosphorus (P) Uptake Mechanisms of Crops Grown in Soils with Low P Status : II. Significance of Organic Acids in Root Exudates of Pigeonpea
- Nitrogen Uptake Response of Crops to Organic Nitrogen
- Phosphorus (P) Uptake Mechanisms of Crops Grown in Soils with Low P Status : I. Screening of Crops for Efficient P Uptake