Involvement of Cyclic AMP in ABA- and Ca^<2+> -Mediated Signal Transduction of Stomatal Regulation in Vicia faba
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概要
- 論文の詳細を見る
The focus of this study is to investigate possible involvement of cyclic AMP in regulation of Vicia stomatal movements. The presence of 0.1 mM 8-Br-cAMP, a membrane-permeable analogue of cAMP, alone in the incubation medium did not affect stomatal opening in the light in leaf epidermal peel experiments. However, addition of 0.1 mM 8-Br-cAMP completely reversed exogenous ABA-and Ca^<2+> -induced inhibition of stomatal opening. Consistent with these results, patch-clamping experiments showed that intracellular addition of 0.5 mM or 1 mM cAMP significantly reversed the inhibition of whole-cell inward K^+ currents by internally suppkied 13 μM Ca^<2+> or 10 μM ABA in stomatal guard cell protoplasts, respectively. Furthermore, intracellular addition of either 10 μM prostaglandin E_1 (PGE1, an adenylate cyclase activator) or 1 mM 3-iso-butyl-1-methylaxanthine (IBMX, a phosphodiesterase inhibitor) mimicked the effect of exogenous cAMP on the removal of ABA- or Ca^<2+> -induced inhibiton of inward K^+ -current. These results suggest that a cAMP signaling pathway is involved in signal transduction in stomatal regulation by interacting with ABA Ca^<2+> signaling cascades. A hypothetical mechanism by which cAMP may regulate K^+ -channels in stomatal guard cells is also discusse.
- 日本植物生理学会の論文
著者
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Wu W‐h
Department Of Plant Sciences College Of Biological Sciences China Agricultural University
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Jin Xiao-Chun
Department of Plant Sciences, College of Biological Sciences, China Agricultural University
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Wu Wei-Hua
Department of Plant Sciences, College of Biological Sciences, China Agricultural University
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Wu Wei-hua
Department Of Plant Sciences College Of Biological Sciences China Agricultural University
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Jin Xiao-chun
Department Of Plant Sciences College Of Biological Sciences China Agricultural University
関連論文
- Involvement of Cyclic AMP in ABA- and Ca^ -Mediated Signal Transduction of Stomatal Regulation in Vicia faba
- Identification and Characterization of the Inward K^+ Channel in the Plasma Membrane of Brassica Pollen Protoplasts