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水稻无叶舌基因的突变导致叶耳、叶舌和叶片关节完全缺失。

Mutations in the rice liguleless gene result in a complete loss of the auricle, ligule, and laminar joint.

作者信息

Lee Jinwon, Park Jong-Jin, Kim Song Lim, Yim Jieun, An Gynheung

机构信息

National Research Laboratory of Plant Functional Genomics, Division of Molecular and Life Sciences, Pohang University of Science and Technology, Hyo-ja dong, Pohang, Kyungbuk 790-784, Korea.

出版信息

Plant Mol Biol. 2007 Nov;65(4):487-99. doi: 10.1007/s11103-007-9196-1. Epub 2007 Jun 27.

Abstract

The area between the upper part of the leaf sheath and the basal portion of the leaf blade contains several specialized organs, such as the laminar joint, auricle and ligule. Here we report the identification of T-DNA insertional mutant lines that lack all of these organs. The gene knocked out in the mutant lines encodes a protein that contains a SBP (SQUAMOSA promoter Binding Protein)-domain and is highly homologous to the maize LIGULELESS1 (LG1) gene. At the amino acid sequence level, the OsLG1 protein is 69% identical to maize LG1 and 78% identical to barley LG1. We named the rice gene OsLIGULELESS1 (OsLG1). Transient expression of an OsLG1:RFP (Red Fluorescent Protein) fusion protein indicated that the protein is localized to the nucleus. Transgenic plants harboring the OsLG1 promoter:GUS (beta-glucuronidase) reporter gene construct display preferential expression in developing laminar joint regions and meristemic regions. The gene is also weakly expressed in the ligule, auricles, and leaf sheaths at the basal region. These results indicate that OsLG1 is a transcriptional factor that plays an important role in building the laminar joint between leaf blade and leaf sheath boundary, thereby controlling ligule and auricle development.

摘要

叶鞘上部与叶片基部之间的区域包含几个特化器官,如叶身关节、叶耳和叶舌。在此,我们报告了缺乏所有这些器官的T-DNA插入突变体系的鉴定情况。突变体系中被敲除的基因编码一种含有SBP(SQUAMOSA启动子结合蛋白)结构域的蛋白质,并且与玉米的LIGULELESS1(LG1)基因高度同源。在氨基酸序列水平上,OsLG1蛋白与玉米LG1的一致性为69%,与大麦LG1的一致性为78%。我们将水稻基因命名为OsLIGULELESS1(OsLG1)。OsLG1:RFP(红色荧光蛋白)融合蛋白的瞬时表达表明该蛋白定位于细胞核。携带OsLG1启动子:GUS(β-葡萄糖醛酸酶)报告基因构建体的转基因植物在发育中的叶身关节区域和分生组织区域表现出优先表达。该基因在基部区域的叶舌、叶耳和叶鞘中也有微弱表达。这些结果表明,OsLG1是一种转录因子,在叶片与叶鞘边界处叶身关节的构建中起重要作用,从而控制叶舌和叶耳的发育。

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