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Chinese Journal of Applied Ecology ›› 2003, Vol. ›› Issue (12): 2145-2148.

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Gradient distribution of soil N,P,and K along the distance from Picea mongolica seedlings root surface

ZOU Chunjing1,2, HAN Shijie1, XU Wenduo1, GU Zhijing1   

  1. 1. Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China;
    2. College of Life Science and Biotechnology, Shanghai Jiaotong University, Shanghai 200030, China
  • Received:2003-06-25 Revised:2003-08-12 Online:2003-12-15

Abstract: Six years old seedlings of Picea mongolica were planted in pots with horizontal and vertical root treatments. Soil samples were stratified collected,and their available nitrogen (N),phosphorus (P),and potassium (K) contents were determined.The results showed that the available contents of N,Pand Kin soils along the distance from Picea mongolica seedlings root surface had a special gradient distribution. Near root surface,there was a depletion zone of soil available N,P,and K,and along the distance from it,the nutrient element contents increased gradually and reached their background values in the bulk soil. In the horizontal root treatment,the depletion zone of soil available N,P,and Kexisted in different distance from root surface,owing to the absorption and the use intensity of the seedlings to these nutrient elements. The depletion zone of soil available Nand Kappeared from 1 cm from root surface,and that of available Pexisted in0.5 cm from root surface. In the vertical root treatment,the depletion zone of available Nand Kalso appeared from 1 cm from root surface as in the horizontal root treatment,but the available Pcontent near root surface was lower than that far away from root surface. It is proved that the absorption and the utilize intensity of soil available Pby Picea mongolica seedlings was intense,which might become a limiting factor to its growth and development. Therefore, Picea mongolica should be planted on soils rich in phosphorus,or Pand Nfertilizers should be applied to improve the absorption and the use efficiency of available Pby Picea mongolica .

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