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Titlebook: Air Pollution and Plant Biotechnology; Prospects for Phytom Kenji Omasa (Professor),Hiharu Saji (Head),Noriaki Book 2002 Springer-Verlag To

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Effects of Air Pollutants on Gene Expression in Plants Among the effects and responses, those at the level of gene expression are rapidly becoming one of the best understood. For instance, several reviews on the effects of ozone (O.) on gene expression in plants (Kangasjärvi et al. 1994; Pell et al. 1994, 1997; Schraudner et al. 1996, 1997; Sandermann
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Biotechnology for Phytomonitoringy used to detect and monitor these pollutants in the natural environment (see the chapters by I. Nouchi, this volume). The use of plants for such monitoring (phytomonitoring) has both advantages and disadvantages over methods based on physicochemical analyses (see the chapters by I. Nouchi and by M.
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Absorption of Organic and Inorganic Air Pollutants by Plantse et al. 1987; Yunus and Iqbal 1996; Sandermann et al. 1997; De Kok and Stulen 1998), thereby allowing the leaves to continuously absorb the gases without being saturated with them. Therefore, plants are thought to play key roles in determining the fate of atmospheric pollutants of both man-made and
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Uptake, Metabolism, and Detoxification of Sulfur Dioxideloped and developing countries, and also results from volcanic emission, biogenic emissions, etc. SO. can also form aerosols, sulfate particles, in the atmosphere by photochemical reactions. Aerosols can then be incorporated into clouds and/or transported over long distances, thus causing severe aci
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Elevated Levels of Hydrogen Sulfide in the Plant Environment: Nutrient or Toxinsical properties of H.S, see the review of Beauchamp et al. 1984). Normally H.S is only present in trace concentrations in the plant environment, but under specific conditions plants may have to cope with elevated levels of H.S in either the pedosphere or atmosphere in both natural vegetation and ag
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Metabolism and Detoxification of Nitrogen Dioxide and Ammonia in Plantsnd most of the results were published by 1980. After about 17 years, we have been asked to write a review on NO. metabolism in plants. The task has become considerably easier with the joining of the coauthors (H.M., H.S.S.), who have been actively engaged in the study of plant responses to NO. durin
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