The productivity of Pinus radiata D. Don plantations can be increased on many soils by N and P fertilization. Foliar analyses are usually taken as a guide for nutrient management, but there is little information about the relationship of foliar nutrient status to foliar physiology. This paper provides such information from N and P fertilization experiments. The concentrations and contents of N and P in the needles of P. radiata change because of accumulation during needle growth, retranslocation during shoot growth, and replenishment from current uptake during periods of little shoot growth. Up to 60 % P and 50 % N may be retranslocated in a single growing season from needles less than one year old. Three years after fertilizer application ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We investigated effects of nitrogen (N) fertilizer and canopy position on the allocation of N to Rub...
We investigated effects of nitrogen (N) fertilizer and canopy position on the allocation of N to Rub...
The hypothesis was tested that the stem volume increment in the first year after fertiliser applicat...
Morphological and photosynthetic acclimation of current-year needles to canopy gradients in light av...
The aim of this study is to compare the processes of accumulation and use of N, P, K, Mg and Ca betw...
It is commonly assumed that the nitrogen to phosphorus (N:P) ratio of a terrestrial plant reflects t...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We investigated effects of nitrogen (N) fertilizer and canopy position on the allocation of N to Rub...
We investigated effects of nitrogen (N) fertilizer and canopy position on the allocation of N to Rub...
The hypothesis was tested that the stem volume increment in the first year after fertiliser applicat...
Morphological and photosynthetic acclimation of current-year needles to canopy gradients in light av...
The aim of this study is to compare the processes of accumulation and use of N, P, K, Mg and Ca betw...
It is commonly assumed that the nitrogen to phosphorus (N:P) ratio of a terrestrial plant reflects t...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
Nutrient resorption is an important strategy for nutrient conservation, particularly under condition...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...
We studied the effects of excessive nitrogen (N) fertilization on foliar nutrient dynamics and stem ...