Title : Abscisic acid-independent and abscisic acid-dependent regulation of proline biosynthesis following cold and osmotic stresses in Arabidopsis thaliana.

Pub. Date : 1997 Mar 18

PMID : 9108297






6 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 Thus, ABA-treated abi1-1 mutant plants accumulated less proline than the ABA-treated wild type. Abscisic Acid Protein phosphatase 2C family protein Arabidopsis thaliana
2 Thus, ABA-treated abi1-1 mutant plants accumulated less proline than the ABA-treated wild type. Proline Protein phosphatase 2C family protein Arabidopsis thaliana
3 Thus, ABA-treated abi1-1 mutant plants accumulated less proline than the ABA-treated wild type. Abscisic Acid Protein phosphatase 2C family protein Arabidopsis thaliana
4 Upon salt stress, proline accumulated to a lesser extent in aba1-1 and abi1-1 mutant plants, suggesting an indirect role of ABA on proline accumulation during salt adaptation of the plant. Proline Protein phosphatase 2C family protein Arabidopsis thaliana
5 Upon salt stress, proline accumulated to a lesser extent in aba1-1 and abi1-1 mutant plants, suggesting an indirect role of ABA on proline accumulation during salt adaptation of the plant. Abscisic Acid Protein phosphatase 2C family protein Arabidopsis thaliana
6 Upon salt stress, proline accumulated to a lesser extent in aba1-1 and abi1-1 mutant plants, suggesting an indirect role of ABA on proline accumulation during salt adaptation of the plant. Proline Protein phosphatase 2C family protein Arabidopsis thaliana