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ABA-regulated promoter activity in stomatal guard cells.

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ABA-regulated promoter activity in stomatal guard cells. / Taylor, Jane E.; Renwick, Kirstie F.; Webb, Alex A. R. et al.
In: The Plant Journal, Vol. 7, No. 1, 1995, p. 129-134.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Taylor, JE, Renwick, KF, Webb, AAR, McAinsh, MR, Furini, A, Bartels, D, Quatrano, RS, Marcotte, WR & Hetherington, DM 1995, 'ABA-regulated promoter activity in stomatal guard cells.', The Plant Journal, vol. 7, no. 1, pp. 129-134. https://doi.org/10.1046/j.1365-313X.1995.07010129.x

APA

Taylor, J. E., Renwick, K. F., Webb, A. A. R., McAinsh, M. R., Furini, A., Bartels, D., Quatrano, R. S., Marcotte, W. R., & Hetherington, D. M. (1995). ABA-regulated promoter activity in stomatal guard cells. The Plant Journal, 7(1), 129-134. https://doi.org/10.1046/j.1365-313X.1995.07010129.x

Vancouver

Taylor JE, Renwick KF, Webb AAR, McAinsh MR, Furini A, Bartels D et al. ABA-regulated promoter activity in stomatal guard cells. The Plant Journal. 1995;7(1):129-134. doi: 10.1046/j.1365-313X.1995.07010129.x

Author

Taylor, Jane E. ; Renwick, Kirstie F. ; Webb, Alex A. R. et al. / ABA-regulated promoter activity in stomatal guard cells. In: The Plant Journal. 1995 ; Vol. 7, No. 1. pp. 129-134.

Bibtex

@article{d778387e8554471d8d6241aa86ec04e6,
title = "ABA-regulated promoter activity in stomatal guard cells.",
abstract = "CDeT6-19 is an ABA-regulated gene which has been isolated from Craterostigma plantagineum. The CDeT6-19 gene promoter has been fused to the β-glucuronidase reporter gene (GUS) and used to stably transform Arabidopsis thaliana and Nicotiana tabacum. This construct has been shown to be expressed in stomatal guard cells and often in the adjacent epidermal cells of both species in response to both exogenous ABA and drought stress. These results indicate that the stomatal guard cell is competent to relay an ABA signal to the nucleus. In contrast GUS expression directed by the promoter from a predominantly seed-specific, ABA-regulated gene, Em, or the promoter from the ABA-regulated CDeT27-45 gene is not detectable in the epidermal or guard cells of tobacco or Arabidopsis in response to ABA. The fact that not all ABA-regulated gene promoters are active in stomatal guard cells suggests that effective transduction of the signal is dependent upon particular regions within the gene promoter or that guard cells lack all or part of the specific transduction apparatus required to couple the ABA signal to these promoters. This suggests that there are multiple ABA stimulus response coupling pathways. The identification of a regulatory sequence from an ABA-induced gene which is expressed in stomatal guard cells creates the possibility of examining the role of Ca2+ and other second messengers in ABA-induced gene expression.",
author = "Taylor, {Jane E.} and Renwick, {Kirstie F.} and Webb, {Alex A. R.} and McAinsh, {Martin R.} and Antonella Furini and Dorothea Bartels and Quatrano, {Ralph S.} and Marcotte, {William R.} and Hetherington, {Dorothea M.}",
year = "1995",
doi = "10.1046/j.1365-313X.1995.07010129.x",
language = "English",
volume = "7",
pages = "129--134",
journal = "The Plant Journal",
publisher = "Blackwell Publishing Ltd",
number = "1",

}

RIS

TY - JOUR

T1 - ABA-regulated promoter activity in stomatal guard cells.

AU - Taylor, Jane E.

AU - Renwick, Kirstie F.

AU - Webb, Alex A. R.

AU - McAinsh, Martin R.

AU - Furini, Antonella

AU - Bartels, Dorothea

AU - Quatrano, Ralph S.

AU - Marcotte, William R.

AU - Hetherington, Dorothea M.

PY - 1995

Y1 - 1995

N2 - CDeT6-19 is an ABA-regulated gene which has been isolated from Craterostigma plantagineum. The CDeT6-19 gene promoter has been fused to the β-glucuronidase reporter gene (GUS) and used to stably transform Arabidopsis thaliana and Nicotiana tabacum. This construct has been shown to be expressed in stomatal guard cells and often in the adjacent epidermal cells of both species in response to both exogenous ABA and drought stress. These results indicate that the stomatal guard cell is competent to relay an ABA signal to the nucleus. In contrast GUS expression directed by the promoter from a predominantly seed-specific, ABA-regulated gene, Em, or the promoter from the ABA-regulated CDeT27-45 gene is not detectable in the epidermal or guard cells of tobacco or Arabidopsis in response to ABA. The fact that not all ABA-regulated gene promoters are active in stomatal guard cells suggests that effective transduction of the signal is dependent upon particular regions within the gene promoter or that guard cells lack all or part of the specific transduction apparatus required to couple the ABA signal to these promoters. This suggests that there are multiple ABA stimulus response coupling pathways. The identification of a regulatory sequence from an ABA-induced gene which is expressed in stomatal guard cells creates the possibility of examining the role of Ca2+ and other second messengers in ABA-induced gene expression.

AB - CDeT6-19 is an ABA-regulated gene which has been isolated from Craterostigma plantagineum. The CDeT6-19 gene promoter has been fused to the β-glucuronidase reporter gene (GUS) and used to stably transform Arabidopsis thaliana and Nicotiana tabacum. This construct has been shown to be expressed in stomatal guard cells and often in the adjacent epidermal cells of both species in response to both exogenous ABA and drought stress. These results indicate that the stomatal guard cell is competent to relay an ABA signal to the nucleus. In contrast GUS expression directed by the promoter from a predominantly seed-specific, ABA-regulated gene, Em, or the promoter from the ABA-regulated CDeT27-45 gene is not detectable in the epidermal or guard cells of tobacco or Arabidopsis in response to ABA. The fact that not all ABA-regulated gene promoters are active in stomatal guard cells suggests that effective transduction of the signal is dependent upon particular regions within the gene promoter or that guard cells lack all or part of the specific transduction apparatus required to couple the ABA signal to these promoters. This suggests that there are multiple ABA stimulus response coupling pathways. The identification of a regulatory sequence from an ABA-induced gene which is expressed in stomatal guard cells creates the possibility of examining the role of Ca2+ and other second messengers in ABA-induced gene expression.

U2 - 10.1046/j.1365-313X.1995.07010129.x

DO - 10.1046/j.1365-313X.1995.07010129.x

M3 - Journal article

VL - 7

SP - 129

EP - 134

JO - The Plant Journal

JF - The Plant Journal

IS - 1

ER -