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Concentrations of Al, As, Cd, Cu, Fe, Pb and Zn were determined in foliar parts of plants and in soils.
Cadmium accumulation in foliar invertebrates was related to the species biology.
However, fertiliser additions caused significant reductions in foliar concentrations of most nutrients studied except N.
A significant decrease in foliar injury was observed in NF seedlings compared to CF seedlings (p < 0.01, t-test).
Intra-specific variation in foliar nutrient response to fertilization treatments and associated growth performance is largely unknown in southern pines.
Spatial and temporal variations in foliar phenology play a significant role in growth and reproduction of plant species (Suresh and Sukumar 2011).
Quantitative changes in foliar chemistry in response to UV-B radiation are frequently reported but less is known about the qualitative changes in putative UV-screening compounds.
We saw differences in foliar P at the treatment and site level but not for the interaction between treatment and site.
However, among all sites, there were no consistent seasonal trends in foliar NIR reflectance, and we found no correlation among leaf-level NIR reflectance and satellite-observed greendown.
The higher growth of pine seedlings attained in the liquid biosolid treatment was coupled with a significant decrease in foliar δ13C, suggesting lower water use efficiency.
Differential family responses in foliar nutrient levels (especially N and P) were closely associated with current-year foliage biomass production and annual height growth for the three taxa.
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