Plant dehydrins and stress tolerance: versatile proteins for complex mechanisms

Dehydrins (DHNs), or group 2 LEA (Late Embryogenesis Abundant) proteins, play a fundamental role in plant response and adaptation to abiotic stresses. They accumulate typically in maturing seeds or are induced in vegetative tissues following salinity, dehydration, cold, and freezing stress. The gene...

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Veröffentlicht in:Plant signaling & behavior 2011-10, Vol.6 (10), p.1503-1509
Hauptverfasser: Hanin, Moez, Brini, Faïçal, Ebel, Chantal, Toda, Yosuke, Takeda, Shin, Masmoudi, Khaled
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Sprache:eng
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Zusammenfassung:Dehydrins (DHNs), or group 2 LEA (Late Embryogenesis Abundant) proteins, play a fundamental role in plant response and adaptation to abiotic stresses. They accumulate typically in maturing seeds or are induced in vegetative tissues following salinity, dehydration, cold, and freezing stress. The generally accepted classification of dehydrins is based on their structural features, such as the presence of conserved sequences, designated as Y, S, and K segments. The K segment representing a highly conserved 15 amino acid motif forming amphiphilic α-helix is especially important since it has been found in all dehydrins. Since more than 20 years, they are thought to play an important protective role during cellular dehydration but their precise function remains unclear. This review outlines the current status of the progress made towards the structural, physico-chemical and functional characterization of plant dehydrins and how these features could be exploited in improving stress tolerance in plants. 
ISSN:1559-2316
1559-2324
1559-2324
DOI:10.4161/psb.6.10.17088