4.5 Article

Effects of phosphorus concentration on adaptive mechanisms of high- and low-P efficiency soybean genotypes when grown in solution

Journal

PLANT SOIL AND ENVIRONMENT
Volume 57, Issue 2, Pages 61-66

Publisher

CZECH ACADEMY AGRICULTURAL SCIENCES
DOI: 10.17221/143/2010-PSE

Keywords

soybean; phosphorus; P efficiency; adaptive mechanism

Categories

Funding

  1. Heilongjiang Youth Science Found [LBH-Z07229]
  2. Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences
  3. CAS [KZCX2-EW-QN306]

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Low availability of phosphorus (P) in soil is a major constraint for crop production in agricultural ecosystems. Therefore, it is very important to explain the adaptive mechanism of crops under low P conditions. The response of high-and low-P efficient soybean (Glycine max L.) genotypes to various external P level was carried out in nutrient solution culture. Results showed that Dongnong1031 (low P-efficient genotype) undergoes major changes in terms of dry mass, root length, root number and root surface, while these response of Hai 616 (high P-efficient genotype) was lower after five weeks of growth. The higher P level in solution, the smaller difference between the two genotypes in these parameters. The amount of H+ released by root of Dongnong1031 was lower than that of Hai 616, except when supplied with 50 mu mol external P. There was a positive relationship between RPAE (relative phosphorus absorption efficiency) and P concentration in shoot and root material at all P levels, irrespective of soybean genotype. An exponential relationship was found between PUE (phosphorus utilization efficiency) and P concentrations in shoots and roots. These results suggested that an increase in measured root parameters coupled with H+ release by roots were key mechanisms for soybean genotypes with high-P efficiency to cope with low P conditions when grown in solution. In order to best select high soybean genotype with high-P efficiency one should pay attention to PUE combined with high RPAE.

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