高级检索
    陈永亮, 马忠明. 不同N、P源对红松根/土界面pH及磷有效性影响[J]. 北京林业大学学报, 2005, 27(2): 23-27.
    引用本文: 陈永亮, 马忠明. 不同N、P源对红松根/土界面pH及磷有效性影响[J]. 北京林业大学学报, 2005, 27(2): 23-27.
    CHEN Yong-liang, MA Zhong-ming. Effects of different nitrogen and phosphorus sources on pH and availability of P in the root/soil interface of Pinus koraiensis seedlings[J]. Journal of Beijing Forestry University, 2005, 27(2): 23-27.
    Citation: CHEN Yong-liang, MA Zhong-ming. Effects of different nitrogen and phosphorus sources on pH and availability of P in the root/soil interface of Pinus koraiensis seedlings[J]. Journal of Beijing Forestry University, 2005, 27(2): 23-27.

    不同N、P源对红松根/土界面pH及磷有效性影响

    Effects of different nitrogen and phosphorus sources on pH and availability of P in the root/soil interface of Pinus koraiensis seedlings

    • 摘要: 用根垫法研究了不同形态N源与P源对红松苗木根土界面pH及磷有效性的影响.结果表明,铵态N处理使根土界面pH降低,硝态N处理使根土界面pH升高.不同N源处理引起根土界面pH变化的幅度受P源种类及距根面距离的影响,施加矿物P时,铵态N引起的根土界面pH下降的幅度明显减小.不同P源处理时根土界面有效P含量受N源种类的影响,铵态N处理时,加入易溶性P近根面处有效P含量显著增加,而加入难溶性P时仅距根面0~2mm处有效P含量显著增加;硝态N处理时,仅在加入易溶性P时近根面处有效P含量显著增加,而加入难溶性P时,近根面处有效P含量与不加P处理时相近,表明铵态N处理引起的根系分泌质子是根土界面处难溶性矿物P溶解的主要驱动力.根土界面处P浓度与苗木叶中P浓度具有较好的相关性。

       

      Abstract: The effects of different nitrogen and phosphorus sources on pH and P availability in the root/soil interface of Korean pine seedlings were studied by means of the root-mat method. The results show that the addition of NH4+-N decreases the pH in the root/soil interface, while the addition of NO3--N increases the pH compared with the control treatment. The type of P sources and the distance from the root plane reamarkably influence the changes of pH in the root/soil interface induced by the addition of the nitrogen sources. Compared with the addition of only NH4+-N, the extent to which the pH in the root/soil interface decreases is obviously smaller when treated by NH4+-N and rock P. When treated with different P sources, the contents of available P in the root/soil interface are affected by the types of the N sources. The content of the available P in the root/soil interface obviously increases when treated with NH4+-N and soluble P, whereas the content of the available P increases only in the area 1-2 mm from the root plane when treated with NH4+-N and rock P. When treated with NO3--N, the contents of available P in the root/soil interface increase only when applied with soluble P, whereas the contents of the available P change little when applied with rock P. The results above show that the protons excreted by the roots are the main activating force for the solution of the rock P in the root/soil interface. The concentrations of P in the root/soil interface are remarkably correlated with those in the needles of the seedlings.

       

    /

    返回文章
    返回