Title : Sugar/osmoticum levels modulate differential abscisic acid-independent expression of two stress-responsive sucrose synthase genes in Arabidopsis.

Pub. Date : 1999 Dec 1

PMID : 10567234






4 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 By using various sucrose/mannitol solutions, we demonstrated that Sus1 was up-regulated by a decrease in leaf osmotic potential rather than an increase in sucrose concentration itself. Sucrose sucrose synthase 1 Arabidopsis thaliana
2 By using various sucrose/mannitol solutions, we demonstrated that Sus1 was up-regulated by a decrease in leaf osmotic potential rather than an increase in sucrose concentration itself. Mannitol sucrose synthase 1 Arabidopsis thaliana
3 By using various sucrose/mannitol solutions, we demonstrated that Sus1 was up-regulated by a decrease in leaf osmotic potential rather than an increase in sucrose concentration itself. Sucrose sucrose synthase 1 Arabidopsis thaliana
4 We suggest that Sus1 expression is regulated via an ABA-independent signal transduction pathway that is related to the perception of a decrease in leaf osmotic potential during stresses. Abscisic Acid sucrose synthase 1 Arabidopsis thaliana