Barrieu F, Chaumont F, Chrispeels MJ
Department of Biology, University of California-San Diego, La Jolla, California 92093-0116, USA.
Plant Physiol. 1998 Aug;117(4):1153-63. doi: 10.1104/pp.117.4.1153.
Aquaporins are integral membrane proteins of the tonoplast and the plasma membrane that facilitate the passage of water through these membranes. Because of their potentially important role in regulating water flow in plants, studies documenting aquaporin gene expression in specialized tissues involved in water and solute transport are important. We used in situ hybridization to examine the expression pattern of the tonoplast aquaporin ZmTIP1 in different organs of maize (Zea mays L.). This tonoplast water channel is highly expressed in the root epidermis, the root endodermis, the small parenchyma cells surrounding mature xylem vessels in the root and the stem, phloem companion cells and a ring of cells around the phloem strand in the stem and the leaf sheath, and the basal endosperm transfer cells in developing kernels. We postulate that the high level of expression of ZmTIP1 in these tissues facilitates rapid flow of water through the tonoplast to permit osmotic equilibration between the cytosol and the vacuolar content, and to permit rapid transcellular water flow through living cells when required.
水通道蛋白是液泡膜和质膜的整合膜蛋白,可促进水通过这些膜。由于它们在调节植物水分流动中可能发挥重要作用,记录水通道蛋白基因在参与水分和溶质运输的特殊组织中的表达情况的研究很重要。我们利用原位杂交技术研究了液泡膜水通道蛋白ZmTIP1在玉米(Zea mays L.)不同器官中的表达模式。这种液泡膜水通道在根表皮、根内皮层、根和茎中围绕成熟木质部导管的小薄壁细胞、韧皮部伴胞以及茎和叶鞘中韧皮部束周围的一圈细胞,以及发育中的籽粒中的胚乳基部转移细胞中高度表达。我们推测,ZmTIP1在这些组织中的高水平表达有助于水快速通过液泡膜,以实现细胞质和液泡内容物之间的渗透平衡,并在需要时允许水快速通过活细胞进行跨细胞流动。