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能够控制钾离子稳态和钾离子依赖的木质部形成的杨树钾转运体。

Poplar potassium transporters capable of controlling K+ homeostasis and K+-dependent xylogenesis.

作者信息

Langer Katharina, Ache Peter, Geiger Dietmar, Stinzing Andrea, Arend Matthias, Wind Christa, Regan Sharon, Fromm Jörg, Hedrich Rainer

机构信息

Julius-von-Sachs-Institut, Molekulare Pflanzenphysiologie und Biophysik, Universität Würzburg, Julius-von-Sachs-Platz 2, 97082 Würzburg, Germany.

出版信息

Plant J. 2002 Dec;32(6):997-1009. doi: 10.1046/j.1365-313x.2002.01487.x.

Abstract

The cambial K+ content of poplar increases during the growth period in a K+ supply dependent manner. Upon K+ starvation or application of tetraethylammoniumchloride (TEA+), a K+ channel blocker, the average vessel lumen and expansion zone area were significantly reduced. In search for the molecular basis of potassium-dependent xylogenesis in poplar, K+ transporters homologous to those of known function in Arabidopis phloem- and xylem-physiology were isolated from a poplar wood EST library. The expression profile of three distinct K+ channel types and one K+ transporter, Populus tremula K+ uptake transporter 1 (PtKUP1), was analysed by quantitative RT-PCR. Thereby, we found P. tremula outward rectifying K+ channel (PTORK) and P. tremula K+ channel 2 (PTK2) correlated with the seasonal wood production. K+ transporter P. tremula 1 (KPT1) was predominantly found in guard cells. Following the heterologous expression in Xenopus oocytes the biophysical properties of the different channels were determined. PTORK, upon membrane de-polarization mediates potassium release. PTK2 is almost voltage independent, carrying inward K+ flux at hyperpolarized potential and K+ release upon de-polarization. PtKUP1 was expressed in a K+ uptake-deficient Escherichia coli strain, where this K+ transporter rescued K+-dependent growth. In order to link the different K+ transporters to the cambial activity and wood production, we compared the expression profiles to seasonal changes in the K+ content of the bark as well as xylem vessel diameter. Thereby, we found PTORK and PTK2 transcripts to follow the annual K+ variations in poplar branches. PtKUP1 was expressed at a low level throughout the year, suggesting a housekeeping function. From these data, we conclude that K+ channels are involved in the regulation of K+-dependent wood production.

摘要

杨树形成层的钾含量在生长期间以依赖钾供应的方式增加。在钾饥饿或应用钾通道阻滞剂四乙铵氯化物(TEA+)时,平均导管腔和扩展区面积显著减小。为了探寻杨树中钾依赖型木质部形成的分子基础,从杨树木材EST文库中分离出了与拟南芥韧皮部和木质部生理学中已知功能的钾转运体同源的钾转运体。通过定量RT-PCR分析了三种不同类型钾通道和一种钾转运体——欧洲山杨钾吸收转运体1(PtKUP1)的表达谱。由此,我们发现欧洲山杨外向整流钾通道(PTORK)和欧洲山杨钾通道2(PTK2)与季节性木材生成相关。钾转运体欧洲山杨1(KPT1)主要存在于保卫细胞中。在非洲爪蟾卵母细胞中进行异源表达后,测定了不同通道的生物物理特性。膜去极化时,PTORK介导钾释放。PTK2几乎不依赖电压,在超极化电位下携带内向钾流,去极化时钾释放。PtKUP1在钾吸收缺陷型大肠杆菌菌株中表达,该钾转运体挽救了该菌株依赖钾的生长。为了将不同的钾转运体与形成层活性和木材生成联系起来,我们将表达谱与树皮钾含量以及木质部导管直径的季节性变化进行了比较。由此,我们发现PTORK和PTK2转录本遵循杨树树枝中钾的年度变化。PtKUP1全年低水平表达,表明其具有持家功能。从这些数据中,我们得出结论,钾通道参与了钾依赖型木材生成的调控。

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