Effect of soil acidification on the growth of Korean pine (Pinus koraiensis) seedlings in a granite-derived forest soil.

Dong-Su Choi, Hyun-O Jin, Choong-Hwa Lee, Young-Chai Kim, Masazumi Kayama
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Abstract

The growth of pine trees has diminished in recent years in industrial areas of Korea. Soil acidification is believed to be responsible. To study its effects, we grew seedlings of three-year-old Korean pine in brown forest soil derived from granite, which had been treated with an acid solution, for 182 days. The anion mol ratio in the solution was SO4(2-):NO3-:Cl-=5:3:2, which is the average in the total precipitation in Korea; six H+ ion concentrations in the soil were studied (0 (control), 10, 30, 60 and 90 mmol H+.kg-1). With increasing amounts of H+ added to the soil, the concentrations of Ca, Mg, K, Al and Mn increased, especially below a soil pH of 3.8. The concentrations of Ca, Mg and K in pine needles and stems increased with increasing H+ added to the soil, whereas their concentrations in the root decreased. Conversely, the concentration of N and P in each organ of the pine plant was higher in all treatments than in controls. Also, the concentrations of Al and Mn increased significantly in all organs of the plant with increasing H+. We also estimated the effect of deliberate soil acidification on tree growth, using the molar ratio (Ca+Mg+K)/Al as an indicator of soil acidification. A strong positive correlation was found between the total dry mass (TDM) of seedlings and the (Ca+Mg+K)/Al molar ratio calculated from the concentrations of water-soluble elements in soil (r=0.99, p<0.001). When the (Ca+Mg+K)/Al molar ratio reached 1.0, the relative TDM had fallen to 40%. These results show that deliberate soil acidification reduces the growth of the Korean pine less than it does the Red pine, which has been the dominant species in Korea.

土壤酸化对花岗岩源森林土壤中红松幼苗生长的影响
近年来,韩国工业地区的松树生长减少了。土壤酸化被认为是罪魁祸首。为了研究其效果,我们在花岗岩棕色森林土壤中种植了三岁红松幼苗,并用酸溶液处理了182天。溶液中阴离子摩尔比为SO4(2-):NO3-:Cl-=5:3:2,为国内总降水量的平均值;研究了0(对照)、10、30、60和90 mmol H+.kg-1土壤中H+的浓度。随着H+添加量的增加,土壤中Ca、Mg、K、Al和Mn的浓度增加,特别是pH值低于3.8时。松针和松茎中Ca、Mg和K的浓度随土壤H+添加量的增加而增加,而根中Ca、Mg和K的浓度则降低。相反,各处理松植株各器官的氮、磷浓度均高于对照。随着H+的增加,植株各器官中Al和Mn的浓度均显著升高。我们还利用土壤酸化的摩尔比(Ca+Mg+K)/Al作为土壤酸化的指标,估计了土壤酸化对树木生长的影响。幼苗总干质量(TDM)与土壤中水溶性元素浓度计算的(Ca+Mg+K)/Al摩尔比呈正相关(r=0.99, p
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