Abstract
We compared net gas exchange rates of CO2 and H2O vapor of greenhouse-grown 'Duncan' grapefruit (Citrus paradidi Macf.) and 'Valencia' orange [C. sinensis (L.) Osbeck] leaves after multiple foliar sprays of urea N with and without NaCl: CaCl2 solutions. Highly saline solutions (3.8 dSm-1) caused necrotic burn symptoms after leaf chloride levels reached 7 mmnol-m-2. Grapefruit leaves had higher leaf Cl and more burn symptoms than orange leaves. The remaining green areas of all salt-stressed leaves, however, had similar rates of net CO2 assimilation ACO2.) and stomatal conductance (gs) as watersprayed control leaves. Total leaf N and chlorophyll increased with repeated foliar applications of urea solutions regardless of salinity lev́els in the spray solution. Thus, salts in solution did not interfere with foliar absorption of N. High urea N solutions (33.6g·liter-1) without salts caused foliar burn and leaf abscission after one application. Three sprays of urea-N solution (11.2 g·liter-1) increased N concentration of N-deficient leaves about 60% and increased ACO2 rate about 50%. ACO2 did not increase when nitrogen concentration in leaves exceeded a threshold value of about 200 mmol-m-2 so photosynthetic nitrogen use efficiency (PNUE = ACO2/N) decreased with increasing leaf N concentration. Net gas exchange and PNUE was higher for grapefruit than for orange leaves. Leaf Cl levels from foliar-applied salts may not be as detrimental to leaf gas exchange as Cl from salts in soil-applied irrigation water.
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Romero-Aranda, R., & Syvertsen, J. P. (1996). The influence of foliar-applied urea nitrogen and saline solutions on net gas exchange of Citrus leaves. Journal of the American Society for Horticultural Science, 121(3), 501–506. https://doi.org/10.21273/jashs.121.3.501
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