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首页> 外文期刊>Environmental Science: Processes & Impacts >Contrasting physiological responses of ozone-tolerant Phaseolus vulgaris and Nicotiana tobaccum varieties to ozone and nitric acid
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Contrasting physiological responses of ozone-tolerant Phaseolus vulgaris and Nicotiana tobaccum varieties to ozone and nitric acid

机译:耐臭氧的菜豆和烟草品种对臭氧和硝酸的生理响应对比

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摘要

Ozone (O3) and nitric acid (HNO3) are synthesized by the same atmospheric photochemical processes and are almost always co-pollutants. Effects of O3 on plants have been well-elucidated, yet less is known about the effects of HNO3 on plants. We investigated the physiological effects of experimental O3 and HNO3 fumigation on Phaseolus vulgaris (snap bean) and Nicotiana tobaccum (tobacco) varieties with known sensitivity to O3, but unknown responses to HNO3. Responses were measured as leaf absorptance, aboveground plant biomass, and photosynthetic CO2-response curve parameters. Our results demonstrate that O3 reduced absorptance, stomatal conductance and plant biomass in both species, and maximum photosynthetic rate in P. vulgaris, whereas the main effect of HNO3 was an increase in mesophyll conductance. Overall, the results suggest that HNO3 affects mesophyll conductance through increased nitrogen absorbed by leaves during HIMO3 deposition which in turn increases photosynthetic demand for CO2, or that damage to epicuticular waxes on leaves increased diffusion of CO2 to sites of carboxylation.
机译:臭氧(O3)和硝酸(HNO3)是通过相同的大气光化学过程合成的,几乎总是共污染物。 O3对植物的影响已得到很好的阐明,但对HNO3对植物的影响知之甚少。我们调查了O3和HNO3熏蒸对菜豆(snap bean)和烟草(烟草)品种的生理影响,这些品种对O3的敏感性已知,但对HNO3的响应未知。测量的响应为叶片吸收率,地上植物生物量和光合CO2响应曲线参数。我们的结果表明,O3降低了这两个物种的吸收率,气孔导度和植物生物量,并且降低了寻常假单胞菌的最大光合速率,而HNO3的主要作用是提高了叶肉电导率。总体而言,结果表明,HNO3通过增加HIMO3沉积期间叶片吸收的氮而影响叶肉电导,这反过来又增加了对CO2的光合需求,或者损害叶片上的表皮蜡会增加CO2向羧化位点的扩散。

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