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首页> 外文期刊>Physiologia plantarum >pH affects ammonium, nitrate and proton fluxes in the apical region of conifer and soybean roots
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pH affects ammonium, nitrate and proton fluxes in the apical region of conifer and soybean roots

机译:pH值会影响针叶树和大豆根顶端区域的铵,硝酸盐和质子通量

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The effect of pH on nitrate and ammonium uptake in the high-affinity transport system and low-affinity transport system ranges was compared in two conifers and one crop species. Many conifers grow on acidic soils, thus their preference for ammonium vs nitrate uptake can differ from that of crop plants, and the effect of pH on nitrogen (N) uptake may differ. Proton, ammonium and nitrate net fluxes were measured at seedling root tips and 5, 10, 20 and 30 mm from the tips using a non-invasive microelectrode ion flux measurement system in solutions of 50 or 1500 oM NHNO at pH 4 and 7. In Glycine max and Pinus contorta, efflux of protons was observed at pH 7 while pH 4 resulted in net proton uptake in some root regions. Pseudotsuga menziesii roots consistently showed proton efflux behind the root tip, and thus appear better adapted to maintain proton efflux in acid soils. P. menziesii's ability to maintain ammonium uptake at low pH may relate to its ability to maintain proton efflux. In all three species, net nitrate uptake was greatest at neutral pH. Net ammonium uptake in G. max and net nitrate uptake in P. menziesii were greatly reduced at pH 4, particularly at high N concentration, thus N concentration should be considered when determining optimum pH for N uptake. In P. menziesii and G. max, net N uptake was greater in 1500 than 50 oM NHNO solution, but flux profiles of all ions varied among species.
机译:在两个针叶树和一个农作物物种中,比较了pH对高亲和力运输系统和低亲和力运输系统范围内硝酸盐和铵吸收的影响。许多针叶树都生长在酸性土壤上,因此它们对铵态氮和硝酸盐态吸收的偏好可能与农作物不同,并且pH值对氮(N)吸收的影响也可能不同。使用无创微电极离子通量测量系统,在pH值为4和7的50或1500 oM NHNO溶液中,在幼苗根尖和距根尖5、10、20和30 mm处测量质子,铵和硝酸盐净通量。在pH 7时,观察到最大的Glycine max和Pinus contorta质子流出,而在pH 4时,在某些根部区域吸收了净质子。假单胞菌(Pseudotsuga menziesii)根始终在根尖后显示质子外流,因此看起来更适合在酸性土壤中维持质子外流。孟氏疟原虫在低pH值下维持铵吸收的能力可能与其维持质子外排的能力有关。在所有三个物种中,中性pH值下硝酸盐的净摄入量最大。在pH 4时,G。max的净铵吸收和孟席斯对P. menziesii的净吸收都大大降低,尤其是在高氮浓度下,因此在确定最适合氮吸收的pH时应考虑氮浓度。在P. menziesii和G.max中,在1500年的净N吸收量大于50 oM NHNO溶液,但是所有离子的通量分布在物种之间变化。

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