The effects of water regime on phosphorus responses of rainfed lowland rice cultivars

被引:26
作者
Huguenin-Elie, O. [1 ]
Kirk, G. J. D. [1 ]
Frossard, E. [2 ]
机构
[1] Int Rice Res Inst, Manila, Philippines
[2] Swiss Fed Inst Technol, Swiss Fed Inst Technol, Inst Plant Sci, CH-8315 Lindau, Switzerland
基金
英国生物技术与生命科学研究理事会;
关键词
ORYZA-SATIVA L; GENOTYPIC VARIATION; DEFICIENCY; SOIL; TOLERANCE; SOLUBILIZATION; RHIZOSPHERE; GERMPLASM; PHOSPHATE; STRESS;
D O I
10.1093/aob/mcn199
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Soil phosphorus (P) solubility declines sharply when a flooded soil drains, and an important component of rice (Oryza sativa) adaptation to rainfed lowland environments is the ability to absorb and utilize P under such conditions. The aim of this study was to test the hypothesis that rice cultivars differ in their P responses between water regimes because P uptake mechanisms differ. Six lowland rice cultivars (three considered tolerant of low P soils, three sensitive) were grown in a factorial experiment with three water regimes (flooded, moist and flooded-then-moist) and four soil P levels, and growth and P uptake were measured. Small volumes of soil were used to maximize inter-root competition and uptake per unit root surface. The results were compared with the predictions of a model allowing for the effects of water regime on P solubility and diffusion. The plants were P stressed but not water stressed in all the water regimes at all P levels except the higher P additions in the flooded soil. The cultivar rankings scarcely differed between the water regimes and P additions. In all the treatments, the soil P concentrations required to explain the measured uptake were several times the concentration of freely available P in the soil. The cultivar rankings were driven more by differences in growth habit than specific P uptake mechanisms, so the hypothesis cannot be corroborated with these data. Evidently all the plants could tap sparingly soluble forms of P by releasing a solubilizing agent or producing a greater root length than measured, or both. However, any cultivar differences in this were not apparent in greater net P uptake, possibly because the restricted rooting volume meant that additional P uptake could not be converted into new root growth to explore new soil volumes.
引用
收藏
页码:211 / 220
页数:10
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