The Osmyb4 rice gene encodes a Myb transcription factor involved in cold acclimation. Its constitutive expression in Arabidopsis thaliana results in improved cold and freezing tolerance. Osmyb4 up-regulated 254 genes, 22% of which encode proteins involved in gene expression regulation and signal transduction, suggesting an upstream role of Myb4 in stress response. Most of the up-regulated genes are known to be involved in tolerance not only to cold but also to other abiotic and environmental stresses (drought, salt, oxidative stresses). Moreover, a high proportion has known functions in resistance to pathogen attacks.Therefore, we analyzed the biochemical and physiological differences between Osmyb4-expressing and wild-type plants and found increased levels of several amino acids that are involved in stress adaptation, acting as osmolytes, scavengers and/or metabolite precursors.When exposed to different adverse conditions, namely drought, salt, u.v. irradiation, ozone fumigation, viruses, bacteria and fungi, transgenic plants effectively demonstrated improved tolerance/resistance to all these stress conditions, suggesting that Osmyb4 represents a crucial knot in the cross-talk of stress signalling cascades through the activation of multiple components.

The ectopic expression of the rice Osmyb4 gene in Arabidopsis increases tolerance to abiotic, environmental and biotic stresses

Locatelli F;Pirona R;Coraggio I;Genga A
2006

Abstract

The Osmyb4 rice gene encodes a Myb transcription factor involved in cold acclimation. Its constitutive expression in Arabidopsis thaliana results in improved cold and freezing tolerance. Osmyb4 up-regulated 254 genes, 22% of which encode proteins involved in gene expression regulation and signal transduction, suggesting an upstream role of Myb4 in stress response. Most of the up-regulated genes are known to be involved in tolerance not only to cold but also to other abiotic and environmental stresses (drought, salt, oxidative stresses). Moreover, a high proportion has known functions in resistance to pathogen attacks.Therefore, we analyzed the biochemical and physiological differences between Osmyb4-expressing and wild-type plants and found increased levels of several amino acids that are involved in stress adaptation, acting as osmolytes, scavengers and/or metabolite precursors.When exposed to different adverse conditions, namely drought, salt, u.v. irradiation, ozone fumigation, viruses, bacteria and fungi, transgenic plants effectively demonstrated improved tolerance/resistance to all these stress conditions, suggesting that Osmyb4 represents a crucial knot in the cross-talk of stress signalling cascades through the activation of multiple components.
2006
BIOLOGIA E BIOTECNOLOGIA AGRARIA
VIROLOGIA VEGETALE
Inglese
69
26
42
Sì, ma tipo non specificato
A. thaliana
biotic and abiotic stresses
cDNA microarray
Osmyb4
stress tolerance
Le conoscenze acquisite con tale studio costituiscono la base per l'utilizzo di tale gene anche in piante di interesse agronomico al fine di migliorarne la tolleranza a stress ambientali
10
info:eu-repo/semantics/article
262
Vannini, C; Iriti, M; Bracale, M; Locatelli, F; Faoro, F; Croce, P; Pirona, R; Di Maro, A; Coraggio, I; Genga, A
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/160300
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