Literature DB >> 18280987

Water-deficit stress-induced anatomical changes in higher plants.

Hong-Bo Shao1, Li-Ye Chu, Cheruth Abdul Jaleel, Chang-Xing Zhao.   

Abstract

Water is vital for plant growth and development. Water-deficit stress, permanent or temporary, limits the growth and the distribution of natural vegetation and the performance of cultivated plants more than any other environmental factors do. Although research and practices aimed at improving water-stress resistance and water-use efficiency have been carried out for many years, the mechanism involved is still not clear. Further understanding and manipulating plant-water relations and water-stress tolerance at the scale of physiology and molecular biology can significantly improve plant productivity and environmental quality. Currently, post-genomics and metabolomics are very important to explore anti-drought gene resource in different life forms, but modern agricultural sustainable development must be combined with plant physiological measures in the field, on the basis of which post-genomics and metabolomics will have further a practical prospect. In this review, we discussed the anatomical changes and drought-tolerance strategies under drought condition in higher plants.

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Year:  2008        PMID: 18280987     DOI: 10.1016/j.crvi.2008.01.002

Source DB:  PubMed          Journal:  C R Biol        ISSN: 1631-0691            Impact factor:   1.583


  63 in total

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8.  Involvement of Arabidopsis thaliana phospholipase Dzeta2 in root hydrotropism through the suppression of root gravitropism.

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9.  Multidimensional patterns of metabolic response in abiotic stress-induced growth of Arabidopsis thaliana.

Authors:  Brijesh S Yadav; Tamar Lahav; Eli Reuveni; Daniel A Chamovitz; Shiri Freilich
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10.  Gene expression and regulation of higher plants under soil water stress.

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Journal:  Curr Genomics       Date:  2009-06       Impact factor: 2.236

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