Soil‐plant element relationships in a tundra ecosystem
- 1 October 1989
- Vol. 12 (3) , 296-303
- https://doi.org/10.1111/j.1600-0587.1989.tb00849.x
Abstract
The objectives of this study were to (1) provide a baseline estimate of soil and plant element concentrations for an intensive research site at Imnavait Creek in northern Alaska, and (2) examine the relationships between soil and plant elements in an arctic ecosystem. Soil and plant element concentrations were highly variable along biotic, spatial, and temporal axes. Deciduous shrubs had higher leaf concentration of N, P. K and Mg, whereas an evergreen shrub had higher leaf concentrations of Ca, Mn, Al and Si. Based on high required solution phase turnover rates, the most likely elemental deficiencies are N > P > K > Ca = Mg. Based on low required solution phase turnover rates and high soil concentrations. Fe, Mn, Zn and Cu deficiencies are unlikely. Manganese could be present in toxic concentrations. The nutrient bottleneck in tundra ecosystems appears to be the rate of nutrient movement to the solution phase.Keywords
This publication has 21 references indexed in Scilit:
- Plant‐Soil Processes in Eriophorum Vaginatum Tussock Tundra in Alaska: A Systems Modeling ApproachEcological Monographs, 1984
- A Multivariate Approach to the Analysis of Factorial Fertilization Experiments in Alaskan Arctic TundraEcology, 1982
- Changes in Soil Properties and Vegetation Following Disturbance of Alaskan Arctic TundraJournal of Applied Ecology, 1981
- Distribution and Variability of Soils near Atkasook, AlaskaArctic and Alpine Research, 1980
- The Mineral Nutrition of Wild PlantsAnnual Review of Ecology and Systematics, 1980
- Response to Fertilization by Various Plant Growth Forms in an Alaskan Tundra: Nutrient Accumulation and GrowthEcology, 1980
- Development of a DTPA Soil Test for Zinc, Iron, Manganese, and CopperSoil Science Society of America Journal, 1978
- Phosphorus Cycling in Alaskan Coastal Tundra: A Hypothesis for the Regulation of Nutrient CyclingOikos, 1978
- Landform‐Soil‐Vegetation‐Water Chemistry Relationships, Wrigley Area, N.W.T.: II. Chemical, Physical, and Mineralogical Determinations and RelationshipsSoil Science Society of America Journal, 1975
- Selective absorption of mineral elements by native plants of WisconsinPlant and Soil, 1966