ROOT PROLIFERATION IN RECENT AND WEATHERED SANDY SOILS FROM VERACRUZ, MEXICO

被引:18
作者
KELLMAN, M
机构
[1] Department of Geography, York University, North York
基金
加拿大自然科学与工程研究理事会;
关键词
Cedrela odorata; leaching; México; plant nutrients; roots; sandy soils; soil adsorp-; tion; tropical forest;
D O I
10.1017/S0266467400004648
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Field observations and laboratory experiments on unweathered and weathered dune sand beneath a tropical deciduous forest in Veracruz, México were used to test the hypothesis that temporary nutrient adsorption by more weathered soil facilitates more effective nutrient recycling through the stimulation of a superficial fine root system. An analysis of soil solution composition in the field indicated that K, P and NO3--N were being more effectively retained in weathered sand topsoil than in recent sand but, in a leaching experiment, only NO3--N was more effectively adsorbed by this soil. Fine roots in weathered sand were more concentrated superficially than in recent sand, and a bioassay with seedlings of Cedrela odorata showed more fine root proliferation in this medium than in recent sand. In combination, these data suggest that weathering of sand in this area promotes an increased nitrate adsorption capacity which may stimulate greater root proliferation in topsoils and lead to the entrainment of other nutrients in a more concentrated topsoil-vegetation cycle. If these results can be applied to the larger domain of tropical soils generally, they suggest that nitrate adsorption may play an important role in stimulating effective nutrient recycling by forests occupying weathered soils. © 1990, Cambridge University Press. All rights reserved.
引用
收藏
页码:355 / 370
页数:16
相关论文
共 37 条
[1]  
BLACK C.A., Methods of soil analysis, (1965)
[2]  
CHAO T.T., HARWARD M.E., FANG S.C., Iron or aluminum coatings in relation to sulfate adsorption characteristics of soils, Soil Science Society of America, Proceedings, 28, pp. 632-635, (1964)
[3]  
DEANS J.D., Fluctuations of the soil environment and fine root growth in a young Sitka spruce plantation, Plant & Soil, 52, pp. 195-208, (1979)
[4]  
DREW M.C., Comparison of the effects of a localized supply of phosphate, nitrate and potassium on the growth of the seminal root system, and the shoot, in barley, New Phytologist, 75, pp. 479-490, (1975)
[5]  
EPSTEIN E., Mineral nutrition of plants: principles and perspectives, (1972)
[6]  
GREENLAND D.J., KOWAL J.M.L., Nutrient content of the moist tropical forest of Ghana, Plant Soil, 12, pp. 154-174, (1960)
[7]  
HACKETT C., A method of applying nutrients locally to roots under controlled conditions, and some morphological effects of locally applied nitrate on the branching of wheat roots, Australian Journal of Biological Science, 25, pp. 1169-1180, (1972)
[8]  
JACKSON M.L., Soil chemical analysis, (1962)
[9]  
JENIK J., Root structure and underground biomass in equatorial forests, pp. 323-331, (1971)
[10]  
JOHNSON D.W., COLE D.W., Anion mobility in soils: relevance to nutrient transport from forest ecosystems. Environment International, 3, pp. 79-90, (1980)