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Effects of ultraviolet-C radiation on net photosynthesis, transpiration and dark respiration of Spathiphyllum wallisii
Authors:N S Murali  Henrik Saxe
Institution:Dept of Botany, Univ. of Maryland, College Park, MD 20742, USA;Royal Veterinary &Agricultural Univ., Dept of Plant Physiology &Anatomy, Thorvaldsensvej 40, DK-1871 Copenhagen V, Denmark.
Abstract:Electric arc welding was suspected to have damaged about 25000 potted Spathiphyllum wallisii plants in a commercial greenhouse. Therefore, the effects of UV-C radiation, phytotoxic gases and smoke particles on some basic physiological processes and on growth of Spathiphyllum plants were investigated in a controlled environment. The phytotoxic gases (NO, NO2, O3), separately and in combination, were harmless at exposure concentrations (2 mg m?3) well above incident levels, for several hours. The smoke particles, mainly ZnO, Fe2O3 and MnO, did not disturb the root environment and plant growth, even at 25 g m?2, which is approximately 400 times the calculated dose after the adverse incident. UV-C radiation from electric welding significantly reduced photosynthesis and transpiration shortly after exposure at 1 m (80 μW cm?2 nm?1 at 254 nm), while dark respiration was significantly increased. Effects at 3 m were less pronounced. The effect persisted for 2–4 days, after which recovery was complete. Further experiments with continuous measurement of gas exchange in whole plants confirmed that short-term UV-C radiation (Philips 30W germicidal tubes) dramatically affects photosynthesis, dark respiration and transpiration. Plants irradiated with more than 10 μW cm?2 nm?1 at 254 nm did not recover completely within the week of the experiments. The immediate effects of UV-C on photosynthesis is caused by stomatal closure. However, most effects are transient, and electric are welding does not appear to have caused the investigated damage.
Keywords:Electric arc welding  nitric oxide  nitrogen dioxide  ozone  zink oxide
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