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Differences in whole-cell and single-channel ion currents across the plasma membrane of mesophyll cells from two closely related Thlaspi species.两种近缘遏蓝菜属植物叶肉细胞质膜上全细胞离子电流和单通道离子电流的差异。
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本文引用的文献

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Potassium channel currents in intact stomatal guard cells: rapid enhancement by abscisic acid.质膜钾通道电流在完整的保卫细胞中的特性:脱落酸的快速增强作用。
Planta. 1990 Feb;180(3):445-55. doi: 10.1007/BF00198799.
2
Evidence for G-Protein Regulation of Inward K+ Channel Current in Guard Cells of Fava Bean.蚕豆保卫细胞内向钾离子通道电流的G蛋白调节证据
Plant Cell. 1991 Sep;3(9):1037-1044. doi: 10.1105/tpc.3.9.1037.
3
Stretch-activated chloride, potassium, and calcium channels coexisting in plasma membranes of guard cells of Vicia faba L.蚕豆保卫细胞质膜中共存的牵张激活氯离子、钾离子和钙离子通道
Planta. 1991 Dec;186(1):143-53. doi: 10.1007/BF00201510.
4
A tobacco syntaxin with a role in hormonal control of guard cell ion channels.一种在保卫细胞离子通道激素调控中起作用的烟草 syntaxin。
Science. 1999 Jan 22;283(5401):537-40. doi: 10.1126/science.283.5401.537.
5
Ca(2+)-permeable, outwardly-rectifying K+ channels in mesophyll cells of Arabidopsis thaliana.拟南芥叶肉细胞中Ca(2+)通透、外向整流钾离子通道
Plant Cell Physiol. 1998 Nov;39(11):1133-44. doi: 10.1093/oxfordjournals.pcp.a029314.
6
Identification and disruption of a plant shaker-like outward channel involved in K+ release into the xylem sap.鉴定并破坏一种参与钾离子释放到木质部汁液中的类植物摇床外向通道。
Cell. 1998 Sep 4;94(5):647-55. doi: 10.1016/s0092-8674(00)81606-2.
7
Identification of a K+ channel from potato leaves by functional expression in Xenopus oocytes.通过在非洲爪蟾卵母细胞中的功能表达鉴定马铃薯叶片中的一种钾离子通道。
Plant Cell Physiol. 1998 Jun;39(6):600-6. doi: 10.1093/oxfordjournals.pcp.a029410.
8
Functional expression and characterization of a plant K+ channel gene in a plant cell model.植物细胞模型中植物钾离子通道基因的功能表达与特性分析
Plant J. 1998 Mar;13(6):857-65. doi: 10.1046/j.1365-313x.1998.00084.x.
9
Guard cells possess a calcium-dependent protein kinase that phosphorylates the KAT1 potassium channel.保卫细胞拥有一种钙依赖性蛋白激酶,该激酶可使KAT1钾通道磷酸化。
Plant Physiol. 1998 Feb;116(2):785-95. doi: 10.1104/pp.116.2.785.
10
Roles of higher plant K+ channels.高等植物钾离子通道的作用。
Plant Physiol. 1997 Aug;114(4):1141-9. doi: 10.1104/pp.114.4.1141.

通过非洲爪蟾卵母细胞中的表达研究揭示了用于调节保卫细胞与叶肉细胞钾通道的不同脱落酸信号通路。

Distinct abscisic acid signaling pathways for modulation of guard cell versus mesophyll cell potassium channels revealed by expression studies in Xenopus laevis oocytes.

作者信息

Sutton F, Paul S S, Wang X Q, Assmann S M

机构信息

Plant Science Department, South Dakota State University, Box 2108, Brookings, South Dakota 57007, USA.

出版信息

Plant Physiol. 2000 Sep;124(1):223-30. doi: 10.1104/pp.124.1.223.

DOI:10.1104/pp.124.1.223
PMID:10982437
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC59137/
Abstract

Regulation of guard cell ion transport by abscisic acid (ABA) and in particular ABA inhibition of a guard cell inward K(+) current (I(Kin)) is well documented. However, little is known concerning ABA effects on ion transport in other plant cell types. Here we applied patch clamp techniques to mesophyll cell protoplasts of fava bean (Vicia faba cv Long Pod) plants and demonstrated ABA inhibition of an outward K(+) current (I(Kout)). When mesophyll cell protoplast mRNA (mesophyll mRNA) was expressed in Xenopus laevis oocytes, I(Kout) was generated that displayed similar properties to I(Kout) observed from direct analysis of mesophyll cell protoplasts. I(Kout) expressed by mesophyll mRNA-injected oocytes was inhibited by ABA, indicating that the ABA signal transduction pathway observed in mesophyll cells was preserved in the frog oocytes. Co-injection of oocytes with guard cell protoplast mRNA and cRNA for KAT1, an inward K(+) channel expressed in guard cells, resulted in I(Kin) that was similarly inhibited by ABA. However, oocytes co-injected with mesophyll mRNA and KAT1 cRNA produced I(Kin) that was not inhibited by ABA. These results demonstrate that the mesophyll-encoded signaling mechanism could not substitute for the guard cell pathway. These findings indicate that mesophyll cells and guard cells use distinct and different receptor types and/or signal transduction pathways in ABA regulation of K(+) channels.

摘要

脱落酸(ABA)对保卫细胞离子转运的调节,特别是ABA对保卫细胞内向K⁺电流(I(Kin))的抑制作用已有充分记载。然而,关于ABA对其他植物细胞类型离子转运的影响却知之甚少。在此,我们将膜片钳技术应用于蚕豆(Vicia faba cv Long Pod)植株的叶肉细胞原生质体,并证明了ABA对外向K⁺电流(I(Kout))的抑制作用。当叶肉细胞原生质体mRNA(叶肉mRNA)在非洲爪蟾卵母细胞中表达时,产生的I(Kout)与直接分析叶肉细胞原生质体时观察到的I(Kout)具有相似的特性。注射叶肉mRNA的卵母细胞所表达的I(Kout)受到ABA的抑制,这表明在叶肉细胞中观察到的ABA信号转导途径在蛙卵母细胞中得以保留。将保卫细胞原生质体mRNA与保卫细胞中表达的内向K⁺通道KAT1的cRNA共同注射到卵母细胞中,产生的I(Kin)同样受到ABA的抑制。然而,将叶肉mRNA与KAT1 cRNA共同注射的卵母细胞产生的I(Kin)不受ABA的抑制。这些结果表明,叶肉编码的信号传导机制不能替代保卫细胞途径。这些发现表明,在ABA对K⁺通道的调节中,叶肉细胞和保卫细胞使用不同的受体类型和/或信号转导途径。