A dehydrin gene isolated from feral olive enhances drought tolerance in Arabidopsis transgenic plants

Dehydrins belong to a protein family whose expression may be induced or enhanced by developmental process and environmental stresses that lead to cell dehydration. A dehydrin gene named OesDHN was isolated and characterized from oleaster (Olea europaea L. subsp. europaea, var. sylvestris), the wild...

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Hauptverfasser: Chiappetta, Adriana, Muto, Antonella, Bruno, Leonardo, Woloszynska, Magdalena, Van Lijsebettens, Maria, Bitonti, Maria B
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Muto, Antonella
Bruno, Leonardo
Woloszynska, Magdalena
Van Lijsebettens, Maria
Bitonti, Maria B
description Dehydrins belong to a protein family whose expression may be induced or enhanced by developmental process and environmental stresses that lead to cell dehydration. A dehydrin gene named OesDHN was isolated and characterized from oleaster (Olea europaea L. subsp. europaea, var. sylvestris), the wild form of olive. To elucidate the contribution of OesDHN in the development of drought tolerance, its expression levels were investigated in oleaster plants during development and under drought stress condition. The involvement of OesDHN in plant stress response was also evaluated in Arabidopsis transgenic lines, engineered to overexpress this gene, and exposed to a controlled mild osmotic stress. OesDHN expression was found to be modulated during development and induced under mild drought stress in oleaster plants. In addition, the Arabidopsis transgenic plants showed a better tolerance to osmotic stress than wild-type plants. The results demonstrated that OesDHN expression is induced by drought stress and is able to confer osmotic stress tolerance. We suggest a role for OesDHN, as a putative functional marker of plant stress tolerance.
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A dehydrin gene named OesDHN was isolated and characterized from oleaster (Olea europaea L. subsp. europaea, var. sylvestris), the wild form of olive. To elucidate the contribution of OesDHN in the development of drought tolerance, its expression levels were investigated in oleaster plants during development and under drought stress condition. The involvement of OesDHN in plant stress response was also evaluated in Arabidopsis transgenic lines, engineered to overexpress this gene, and exposed to a controlled mild osmotic stress. OesDHN expression was found to be modulated during development and induced under mild drought stress in oleaster plants. In addition, the Arabidopsis transgenic plants showed a better tolerance to osmotic stress than wild-type plants. The results demonstrated that OesDHN expression is induced by drought stress and is able to confer osmotic stress tolerance. 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subjects ABSCISIC-ACID
Biology and Life Sciences
CITRUS DEHYDRIN
COLD-ACCLIMATION
dehydrins
DEVELOPMENTAL-STAGE
drought tolerance
gene expression
GENOME-WIDE IDENTIFICATION
green fluorescent protein
HORDEUM-VULGARE L
INTRINSICALLY UNSTRUCTURED PROTEINS
LEA GENES
oleaster
ORYZA-SATIVA L
WATER-STRESS
title A dehydrin gene isolated from feral olive enhances drought tolerance in Arabidopsis transgenic plants
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