Büchsenschütz Kai, Marten Irene, Becker Dirk, Philippar Katrin, Ache Peter, Hedrich Rainer
Molecular Plant Physiology and Biophysics, Julius-von-Sachs Institute for Bioscience, University of Wuerzburg, Julius-von-Sachs-Platz 2, 97082, Wuerzburg, Germany.
Planta. 2005 Dec;222(6):968-76. doi: 10.1007/s00425-005-0038-6. Epub 2005 Jul 15.
Grass stomata are characterized by dumbbell-shaped guard cells forming a complex with a pair of specialized epidermal cells, the subsidiary cells. Stomatal movement is accomplished by a reversible exchange of potassium and chloride between these two cell types. To gain insight into the molecular machinery involved in K+ transport within the stomatal complex of Zea mays, we determined the spatial and temporal expression pattern of potassium channels in the maize leaf. KZM2 and ZORK were isolated and identified as new members of the plant Shaker K+ channel family. Northern blot analysis identified fully developed leaves as the predominant site of KZM2 expression. Following enzymatic digestion and separation of leaf tissue into epidermal, mesophyll, and vascular fractions, KZM2 and ZORK transcripts were localized in the epidermis. Using a collection of individually isolated guard cell or subsidiary cell protoplasts, ZORK transcripts were found in both cell types while KZM2 was exclusively expressed in the guard cell population. The previously identified K+ channel genes ZMK1 and KZM1 were expressed in subsidiary cells and guard cells, respectively, whereas ZMK2 transcripts were not detected. These data indicate that the interaction between subsidiary cells and guard cells is based on overlapping as well as differential expression of K+ channels in the two cell types of the maize stomatal complex.
禾本科植物的气孔具有哑铃形保卫细胞,其与一对特化的表皮细胞即副卫细胞形成复合体。气孔运动是通过这两种细胞类型之间钾离子和氯离子的可逆交换来实现的。为了深入了解玉米气孔复合体中钾离子运输所涉及的分子机制,我们测定了玉米叶片中钾离子通道的时空表达模式。KZM2和ZORK被分离并鉴定为植物Shaker钾离子通道家族的新成员。Northern杂交分析确定完全展开的叶片是KZM2表达的主要部位。在对叶片组织进行酶解并分离成表皮、叶肉和维管束部分后,KZM2和ZORK转录本定位于表皮。利用单独分离的保卫细胞或副卫细胞原生质体群体,发现ZORK转录本在两种细胞类型中均有存在,而KZM2仅在保卫细胞群体中表达。先前鉴定的钾离子通道基因ZMK1和KZM1分别在副卫细胞和保卫细胞中表达,而未检测到ZMK2转录本。这些数据表明,玉米气孔复合体两种细胞类型中钾离子通道的重叠表达以及差异表达是副卫细胞与保卫细胞之间相互作用的基础。