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      Salt Marsh Halophyte Services to Metal–Metalloid Remediation: Assessment of the Processes and Underlying Mechanisms

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          Most cited references221

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          Roles of glycine betaine and proline in improving plant abiotic stress resistance

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            Salt tolerance and salinity effects on plants: a review.

            Plants exposed to salt stress undergo changes in their environment. The ability of plants to tolerate salt is determined by multiple biochemical pathways that facilitate retention and/or acquisition of water, protect chloroplast functions, and maintain ion homeostasis. Essential pathways include those that lead to synthesis of osmotically active metabolites, specific proteins, and certain free radical scavenging enzymes that control ion and water flux and support scavenging of oxygen radicals or chaperones. The ability of plants to detoxify radicals under conditions of salt stress is probably the most critical requirement. Many salt-tolerant species accumulate methylated metabolites, which play crucial dual roles as osmoprotectants and as radical scavengers. Their synthesis is correlated with stress-induced enhancement of photorespiration. In this paper, plant responses to salinity stress are reviewed with emphasis on physiological, biochemical, and molecular mechanisms of salt tolerance. This review may help in interdisciplinary studies to assess the ecological significance of salt stress.
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              Genes and salt tolerance: bringing them together.

              Rana Munns (2005)
              Salinity tolerance comes from genes that limit the rate of salt uptake from the soil and the transport of salt throughout the plant, adjust the ionic and osmotic balance of cells in roots and shoots, and regulate leaf development and the onset of senescence. This review lists some candidate genes for salinity tolerance, and draws together hypotheses about the functions of these genes and the specific tissues in which they might operate. Little has been revealed by gene expression studies so far, perhaps because the studies are not tissue-specific, and because the treatments are often traumatic and unnatural. Suggestions are made to increase the value of molecular studies in identifying genes that are important for salinity tolerance.

                Author and article information

                Journal
                Critical Reviews in Environmental Science and Technology
                Critical Reviews in Environmental Science and Technology
                Informa UK Limited
                1064-3389
                1547-6537
                July 28 2014
                September 17 2014
                July 28 2014
                September 17 2014
                : 44
                : 18
                : 2038-2106
                Article
                10.1080/10643389.2013.828271
                1e04ac7b-1648-4f56-9c6b-ecd6a5584b82
                © 2014
                History

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