Involvement of cAMP signaling in elicitor-induced phytoalexin accumulation in Cupressus lusitanica cell cultures
- PMID: 33873708
- DOI: 10.1111/j.1469-8137.2004.00976.x
Involvement of cAMP signaling in elicitor-induced phytoalexin accumulation in Cupressus lusitanica cell cultures
Abstract
• An increasing body of evidence on plant electrophysiology, biochemistry, and molecular biology shows that cAMP exists in higher plants and plays a role in several physiological processes by affecting potassium (K+ ) or calcium (Ca2+ ) fluxes. Our study here reports that cAMP is involved in elicitor-induced accumulation of a phytoalexin, β-thujaplicin, in Cupressus lusitanica cell cultures. • Treatment of C. lusitanica cultured cells with cAMP or its analogues stimulated β-thujaplicin accumulation. Cholera toxin and forskolin, activators of adenylyl cyclase, also stimulated β-thujaplicin accumulation. Enzyme immunoassay showed that after elicitor treatment, cAMP level in the elicited cells quickly increased to about three- to five-fold over the control. Cholera toxin and forskolin also stimulated cAMP accumulation in the absence of elicitor. • However, K+ and Ca2+ channel blockers inhibited the β-thujaplicin accumulation induced by cAMP analogues, suggesting that the cAMP-stimulated β-thujaplicin accumulation may involve Ca2+ and K+ fluxes. Several ionophores mimicked cAMP induction of β-thujaplicin accumulation. • Cross-talk between cAMP treatment and the ethylene signaling pathway was also observed to work in the cell cultures via Ca2+ signaling. The study also indicates an involvement of protein kinase cascades in cAMP signaling processes, leading to both phytoalexin and ethylene production.
Keywords: Ca2+; Cupressus lusitanica; cAMP; elicitor; ethylene; ion flux; phytoalexin; β-thujaplicin.
References
-
- Adachi K, Hamer JE. 1998. Divergent cAMP signaling pathways regulate growth and pathogenesis in the rice blast fungus Magnaporthe grisea. Plant Cell 10: 1361-1374. - PubMed
-
- Aharon GS, Gelli A, Snedden WA, Blumwald E. 1998. Activation of a plant plasma membrane Ca2+ channel by TGalpha1, a heterotrimeric G protein alpha-subunit homologue. FEBS Letters 424: 17-12. - PubMed
-
- Assmann SM. 1995. Cyclic AMP as a second messenger in higher plants: status and future prospects. Plant Physiology 108: 885-888. - PubMed
-
- Barrero RA, Umeda M, Yamamura S, Uchimiya H. 2002. Arabidopsis CAP regulates actin cytoskeleton necessary for pla cell elongation and division. Plant Cell 14: 149-163. - PubMed
-
- Barrero RA, Umeda M, Yamamura S, Uchimiya H. 2003. Over-expression of Arabidopsis CAP causes decreased cell expansion leading to organ size reduction in transgenic tobacco plants. Annals of Botany 91: 599-560. - PubMed
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