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杨树钾离子通道KPT1与气孔开放和芽发育过程中的钾离子吸收有关。

The poplar K+ channel KPT1 is associated with K+ uptake during stomatal opening and bud development.

作者信息

Langer Katharina, Levchenko Victor, Fromm Jörg, Geiger Dietmar, Steinmeyer Ralf, Lautner Silke, Ache Peter, Hedrich Rainer

机构信息

Julius-von-Sachs-Institut for Bioscience, Molecular Plant Physiology and Biophysics, University of Würzburg, Julius-von-Sachs-Platz 2, 97082 Würzburg, Germany.

出版信息

Plant J. 2004 Mar;37(6):828-38. doi: 10.1111/j.0960-7412.2003.02008.x.

Abstract

To gain insights into the performance of poplar guard cells, we have measured stomatal conductance and aperture, guard cell K+ content and K+-channel activity of the guard cell plasma membrane in intact poplar leaves. In contrast to Arabidopsis, broad bean and tobacco grown under same conditions, poplar stomata operated just in the dynamic range - any change in conductance altered the rate of photosynthesis. In response to light, CO2 and abscisic acid (ABA), the stomatal opening velocity was two to five times faster than that measured for Arabidopsis thaliana, Nicotiana tabacum and Vicia faba. When stomata opened, the K+ content of guard cells increased almost twofold, indicating that the very fast stomatal opening in this species is mediated via potassium uptake. Following impalement of single guard cells embedded in their natural environment of intact leaves with triple-barrelled microelectrodes, time-dependent inward and outward-rectifying K+-channel-mediated currents of large amplitude were recorded. To analyse the molecular nature of genes encoding guard cell K+-uptake channels, we cloned K+-transporter Populustremula (KPT)1 and functionally expressed this potassium channel in a K+-uptake-deficient Escherichia coli mutant. In addition to guard cells, this K+-transporter gene was expressed in buds, where the KPT1 gene activity strongly correlated with bud break. Thus, KPT1 represents one of only few poplar genes associated with bud flush.

摘要

为深入了解杨树保卫细胞的性能,我们测量了完整杨树叶片中气孔导度和孔径、保卫细胞钾离子含量以及保卫细胞质膜上的钾离子通道活性。与在相同条件下生长的拟南芥、蚕豆和烟草不同,杨树气孔仅在动态范围内起作用——导度的任何变化都会改变光合作用速率。响应光照、二氧化碳和脱落酸(ABA)时,气孔开放速度比拟南芥、烟草和蚕豆快两到五倍。气孔开放时,保卫细胞的钾离子含量几乎增加了一倍,这表明该物种极快的气孔开放是通过钾离子吸收介导的。在用三管微电极刺入完整叶片自然环境中单个保卫细胞后,记录到了时间依赖性的、由钾离子通道介导的大幅度内向和外向整流电流。为分析编码保卫细胞钾离子吸收通道的基因的分子性质,我们克隆了钾离子转运体杨树(KPT)1,并在钾离子吸收缺陷型大肠杆菌突变体中对该钾离子通道进行了功能表达。除保卫细胞外,该钾离子转运体基因还在芽中表达,其中KPT1基因活性与芽萌发密切相关。因此,KPT1是仅有的几个与芽萌动相关的杨树基因之一。

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