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Titlebook: Cash Crop Halophytes: Recent Studies; 10 Years after Al Ai Helmut Lieth,Marina Mochtchenko Conference proceedings 20031st edition Springer

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Salinity tolerance of , ssp. ,. Part II. Physiological and biochemical regulation). To be able to survive in these habitats, the sea beet has developed mechanisms, which enable it to overcome saline stress. Tolerance to salinity is determined by a number of separate but interrelated mechanisms which operate at different levels of tissue structure to control the distribution of s
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Salt-avoidance mechanisms in the halophyte , as a promising source for improved salt resistance in co replace fresh water in agriculture contributes, among other factors, to the aggravation of salinity problems. Most crop plants are sensitive to salinity and poorly equipped to cope with salt stress without suffering from impaired growth and development, and even injury (Läuchli and Epstein, 1990;
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Chemical composition variation during root decomposition in Tagus estuary salt marshess becomes detritus (Caçador et al., unpublished data). Vascular plant-derived detritus have been considered the major source material from which carbon and energy flow (Odum and de la Cruz, 1967; Moran et al., 1989).
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Metal partition in Tagus estuary salt marshes: a case study of salt marshes in estuaries and coastal lagoons. In these cases, tidal flooding transports large quantities of contaminants in both dissolved and suspended particulate forms to the salt marshes. Salt marsh vegetation influences the dynamics of the estuarine ecosystem and retains efficiently anthro
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Potential of halophytes as animal fodder in Egyptthe fodder supply of desert grazing livestock (sheep, camels and goats), particularly during the prolonged dry seasons, would increase the average annual animal production by approximately 27% (FAO, 1995). Attention has been directed towards the necessity to utilize marginal resources, that is, sali
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