Xu D, Lei M, Wu R
Field of Plant Biology, Cornell University, Ithaca, NY 14853, USA.
Plant Mol Biol. 1995 Jun;28(3):455-71. doi: 10.1007/BF00020394.
To study the expression and regulation of a rice glycine-rich cell wall protein gene, Osgrp1, transgenic rice plants were regenerated that contain the Osgrp1 promoter or its 5' deletions fused with the bacterial beta-glucuronidase (GUS) reporter gene. We report here a detailed histochemical analysis of the Osgrp1-Gus expression patterns in transgenic rice plants. In roots of transgenic rice plants, GUS expression was specifically located in cell elongation and differentiation regions, and no GUS expression was detectable in the apical meristem and the mature region. In shoots, GUS activity was expressed only in young leaves or in the growing basal parts of developing leaves, and little GUS activity was expressed in mature leaves or mature parts of developing leaves. In shoot apices, GUS activity was detected only in those leaf cells which were starting to expand and differentiate, and GUS expression was not detected in the apical meristem and the young meristematic leaf primordia. GUS activity was highly expressed in the young stem tissue, particularly in the developing vascular bundles and epidermis. Thus, the expression of the Osgrp1 gene is closely associated with cell elongation/expansion during the post-mitotic cell differentiation process. The Osgrp1-Gus gene was also expressed in response to wounding and down-regulated by water-stress conditions in the elongation region of roots. Promoter deletion analysis indicates that both positive and negative mechanisms are involved in regulating the specific expression patterns. We propose a simple model for the developmental regulation of the Osgrp1 gene expression.
为了研究水稻富含甘氨酸的细胞壁蛋白基因Osgrp1的表达与调控,我们培育了转基因水稻植株,这些植株含有与细菌β-葡萄糖醛酸酶(GUS)报告基因融合的Osgrp1启动子或其5'端缺失片段。我们在此报告对转基因水稻植株中Osgrp1-Gus表达模式的详细组织化学分析。在转基因水稻植株的根中,GUS表达特异性地定位于细胞伸长和分化区域,在顶端分生组织和成熟区域未检测到GUS表达。在地上部分,GUS活性仅在幼叶或发育中叶片的生长基部表达,在成熟叶或发育中叶片的成熟部分几乎没有GUS活性表达。在茎尖,仅在那些开始扩展和分化的叶细胞中检测到GUS活性,在顶端分生组织和幼嫩的分生叶原基中未检测到GUS表达。GUS活性在幼嫩茎组织中高度表达,特别是在发育中的维管束和表皮中。因此,Osgrp1基因的表达与有丝分裂后细胞分化过程中的细胞伸长/扩展密切相关。Osgrp1-Gus基因在根的伸长区域也对伤口有反应并在水分胁迫条件下被下调表达。启动子缺失分析表明,正负机制都参与调控特定的表达模式。我们提出了一个Osgrp1基因表达发育调控的简单模型。