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Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance.

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Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance. / Perera, L. K. R. R.; Robinson, M. F.; Mansfield, T. A.
In: Journal of Experimental Botany, Vol. 46, No. 6, 1995, p. 623-629.

Research output: Contribution to Journal/MagazineJournal article

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Perera LKRR, Robinson MF, Mansfield TA. Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance. Journal of Experimental Botany. 1995;46(6):623-629. doi: 10.1093/jxb/46.6.623

Author

Perera, L. K. R. R. ; Robinson, M. F. ; Mansfield, T. A. / Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance. In: Journal of Experimental Botany. 1995 ; Vol. 46, No. 6. pp. 623-629.

Bibtex

@article{333d257d95244e8497a54d17a7d6daf0,
title = "Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance.",
abstract = "In previous work, the stomata of the maritime halophyte Aster tripolium L. were shown to close when NaCl concentrations rise in the vicinity of the guard cells. Further studies have now revealed important effects of calcium on the ionic responses of the stomata. When the guard cells were presented with KCl, Ca2+ suppressed opening in a manner similar to that which has become familiar in other species such as Commelina communis L. However, in the presence of NaCl, Ca2+ had the opposite effect, reducing the closing response to NaCl. This pattern of behaviour is discussed in relation to known salt effects on membranes, but the underlying physiological basis remains obscure. A previous study led to the hypothesis that the closing response of the stomata to Na+ ions may make an important contribution to the salinity tolerance of this species. Here we report that increasing supplies of Ca2+ ions reduce the effect of salinity on stomatal conductance in the whole plant as well as in the isolated epidermis. This finding is consistent with the well established role of calcium in increasing resistance to salinity: in the presence of high calcium the plant can tolerate a greater salt intake, and hence there is a reduced need for transpiration to be restricted by partial stomatal closure.",
keywords = "Sodium, calcium, Aster tripolium, stomata, salinity tolerance",
author = "Perera, {L. K. R. R.} and Robinson, {M. F.} and Mansfield, {T. A.}",
year = "1995",
doi = "10.1093/jxb/46.6.623",
language = "English",
volume = "46",
pages = "623--629",
journal = "Journal of Experimental Botany",
issn = "1460-2431",
publisher = "OXFORD UNIV PRESS",
number = "6",

}

RIS

TY - JOUR

T1 - Responses of the stomata of Aster tripolium to calcium and sodium ions in relation to salinity tolerance.

AU - Perera, L. K. R. R.

AU - Robinson, M. F.

AU - Mansfield, T. A.

PY - 1995

Y1 - 1995

N2 - In previous work, the stomata of the maritime halophyte Aster tripolium L. were shown to close when NaCl concentrations rise in the vicinity of the guard cells. Further studies have now revealed important effects of calcium on the ionic responses of the stomata. When the guard cells were presented with KCl, Ca2+ suppressed opening in a manner similar to that which has become familiar in other species such as Commelina communis L. However, in the presence of NaCl, Ca2+ had the opposite effect, reducing the closing response to NaCl. This pattern of behaviour is discussed in relation to known salt effects on membranes, but the underlying physiological basis remains obscure. A previous study led to the hypothesis that the closing response of the stomata to Na+ ions may make an important contribution to the salinity tolerance of this species. Here we report that increasing supplies of Ca2+ ions reduce the effect of salinity on stomatal conductance in the whole plant as well as in the isolated epidermis. This finding is consistent with the well established role of calcium in increasing resistance to salinity: in the presence of high calcium the plant can tolerate a greater salt intake, and hence there is a reduced need for transpiration to be restricted by partial stomatal closure.

AB - In previous work, the stomata of the maritime halophyte Aster tripolium L. were shown to close when NaCl concentrations rise in the vicinity of the guard cells. Further studies have now revealed important effects of calcium on the ionic responses of the stomata. When the guard cells were presented with KCl, Ca2+ suppressed opening in a manner similar to that which has become familiar in other species such as Commelina communis L. However, in the presence of NaCl, Ca2+ had the opposite effect, reducing the closing response to NaCl. This pattern of behaviour is discussed in relation to known salt effects on membranes, but the underlying physiological basis remains obscure. A previous study led to the hypothesis that the closing response of the stomata to Na+ ions may make an important contribution to the salinity tolerance of this species. Here we report that increasing supplies of Ca2+ ions reduce the effect of salinity on stomatal conductance in the whole plant as well as in the isolated epidermis. This finding is consistent with the well established role of calcium in increasing resistance to salinity: in the presence of high calcium the plant can tolerate a greater salt intake, and hence there is a reduced need for transpiration to be restricted by partial stomatal closure.

KW - Sodium

KW - calcium

KW - Aster tripolium

KW - stomata

KW - salinity tolerance

U2 - 10.1093/jxb/46.6.623

DO - 10.1093/jxb/46.6.623

M3 - Journal article

VL - 46

SP - 623

EP - 629

JO - Journal of Experimental Botany

JF - Journal of Experimental Botany

SN - 1460-2431

IS - 6

ER -