Physiology and Biochemistry of Metal Toxicity and Tolerance by E. Cseh (auth.), M. N. V. Prasad, Kazimierz Strzałka (eds.)

By E. Cseh (auth.), M. N. V. Prasad, Kazimierz Strzałka (eds.)

The objective of this e-book is to offer an outline of an important features of physiological and biochemical foundation for steel toxicity and tolerance in crops. The e-book is predicted to function a connection with collage and school lecturers, scholars of plant sciences, environmental biology, environmental biotechnology, agriculture, horticulture, forestry, plant molecular biology, and genetics.

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Additional info for Physiology and Biochemistry of Metal Toxicity and Tolerance in Plants

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Res. 19, 1-101. Aldington, S. C. (1994) Rharnnogalacturonan II - a biologically active fragment, J. Exp. Bot. 45, 287-293. , and Iqbal, M. (2000) Influence of cadmium and zinc on growth and photosynthesis of Bacopa monniera cultivated in vitro, Bioi. Plant. 43, 599-601. Andersoon, A. and Siman, G. (1991) Levels of Cd and some other trace elements in soils and crops as influenced by lime and fertilizer level, Acta Agric. Scand. 41, 3-11. , and Ishizuka, 1. (1997) Excretion and metabolism of malic acid produced by dark carbon fixation in roots in relation to aluminium tolerance of wheat, in T.

Since the different washing techniques are not able to totally remove the metal, a certain portion of Al must get into the cells. The cytosolic metal content can be directly measured only with large algae in which the cell wall and the cytosol can be separated. Al is transported through the plasmalemma of the alga, moreover some of the Al retained after desorption is taken up from the cell wall (Rengel and Reid, 1997). , 1997). 7 much more Al was adsorbed on the membranes from the sensitive line (Scout 66) compared to the tolerant line (Atlas 66).

K. (1999) A new class of proteins capable of binding transition metals. Plant Mol. BioI. 41, 139-150. J. (1998) The molecular biology of metal ion transport in Saccharomyces cerevisiae, Annu. Rev. Nutr. 18,441--469. L. (1996) A novel iron-regulated metal transporter from plants identified by functional expression in yeast, Proc. Natl. Acad. Sci. USA 93, 5624-5628. Epstein, E. (J 972) Mineral Nutrition ofPlants: Principles and Perspectives, Wiley, New York. L. (1999) Idenfication of a Ca2+/W antiport in the plant chloroplast thylakoid membrane, Plant Physiol.

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