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Micronutrient distribution in 16-year-old maritime pine.
1Institut National de la Recherche Agronomique, Station de Recherches Forestières de Bordeaux-Cestas, B.P. 45, F-33611 Gazinet Cedex, France.
Tree Physiology
|April 1, 1992
Summary
Maritime pine trees actively redistribute essential micronutrients like iron and zinc throughout their structures. Trunks and branches serve as primary storage for most micronutrients, except manganese, which concentrates in needles.
Area of Science:
- Forestry science
- Plant physiology
- Soil science
Background:
- Micronutrients are vital for tree health and growth.
- Understanding nutrient cycling in forests is crucial for sustainable management.
- Maritime pine (Pinus pinaster) is an economically important species in many regions.
Purpose of the Study:
- To quantify micronutrient concentrations (Fe, Mn, Zn, Cu, B) in different tree compartments.
- To investigate the redistribution patterns of these micronutrients within maritime pine.
- To identify the main storage tissues for key micronutrients in Pinus pinaster.
Main Methods:
- Analysis of micronutrient content (Fe, Mn, Zn, Cu, B) in trunk, branches, and needles.
- Sampling of a 16-year-old maritime pine stand.
- Quantitative assessment of nutrient distribution across tree tissues.
Main Results:
- Significant redistribution of micronutrients (Fe, Mn, Zn, Cu, B) was observed within the trees.
- Trunks and branches were identified as major reservoirs for most micronutrients.
- Manganese (Mn) showed a distinct accumulation pattern, primarily in the needles.
Conclusions:
- Maritime pine exhibits active internal cycling and storage of essential micronutrients.
- Long-lived woody tissues play a key role in micronutrient homeostasis, with specific exceptions like manganese.
- These findings contribute to understanding nutrient dynamics in forest ecosystems and inform forest nutrition management.