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Abstract
Ozone (O
3) and nitric acid (HNO
3) are synthesized by the same atmospheric photochemical processes and are almost always co-pollutants. Effects of O
3 on plants have been well-elucidated, yet less is known about the effects of HNO
3 on plants. We investigated the physiological effects of experimental O
3 and HNO
3 fumigation on
Phaseolus vulgaris (snap bean) and
Nicotiana tobaccum (tobacco) varieties with known sensitivity to O
3, but unknown responses to HNO
3. Responses were measured as leaf absorptance, aboveground plant biomass, and photosynthetic CO
2-response curve parameters. Our results demonstrate that O
3 reduced absorptance, stomatal conductance and plant biomass in both species, and maximum photosynthetic rate in
P. vulgaris, whereas the main effect of HNO
3 was an increase in mesophyll conductance. Overall, the results suggest that HNO
3 affects mesophyll conductance through increased nitrogen absorbed by leaves during HNO
3 deposition which in turn increases photosynthetic demand for CO
2, or that damage to epicuticular waxes on leaves increased diffusion of CO
2 to sites of carboxylation.
Citation
Stripe, Cara M.; Santiago, Louis S.; Padgett, Pamela E. 2014. Contrasting physiological responses of ozone-tolerant Phaseolus vulgaris and Nicotiana tobaccum varieties to ozone and nitric acid. Environmental Science: Processes Impacts. 16(11): 2488-2495.