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首页> 外文期刊>Plant Physiology >Specificity and Similarity of Functions of the Aux/IAA Genes in Auxin Signaling of Arabidopsis Revealed by Promoter-Exchange Experiments among MSG2/IAA19, AXR2/IAA7, and SLR/IAA14
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Specificity and Similarity of Functions of the Aux/IAA Genes in Auxin Signaling of Arabidopsis Revealed by Promoter-Exchange Experiments among MSG2/IAA19, AXR2/IAA7, and SLR/IAA14

机译:MSG2 / IAA19,AXR2 / IAA7和SLR / IAA14之间的启动子交换实验揭示了拟南芥Auxin信号中Aux / IAA基因功能的特异性和相似性

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摘要

As indicated by various and some overlapped phenotypes of the dominant mutants, the Aux/IAA genes of Arabidopsis (Arabidopsis thaliana) concomitantly exhibit a functional similarity and differentiation. To evaluate the contributions of their expression patterns determined by promoter activity and molecular properties of their gene products to Aux/IAA function, we examined phenotypes of transgenic plants expressing the green fluorescent protein (GFP)-tagged msg2-1/iaa19, axr2-1/iaa7, or slr-1/iaa14 cDNA by the MSG2 or AXR2 promoter. When driven by the MSG2 promoter (pMSG2), each GFP-tagged cDNA caused the msg2-1 phenotype, that is, the wild-type stature in the mature-plant stage, long and straight hypocotyls in the dark, reduced lateral root formation, relatively mild agravitropic traits in hypocotyls, and a normal gravitropic response in roots. However, development of one or two cotyledonary primordia was often arrested in embryogenesis of the pMSG2::axr2-1::GFP and pMSG2::slr-1::GFP plants, resulting in monocotyledonary or no cotyledonary seedlings. Such defects in embryogenesis were never seen in pMSG2::msg2-1::GFP or the msg2-1, axr2-1, or slr-1 mutant. The MSG2 promoter-GUS staining showed that expression of MSG2 started specifically in cotyledonary primordia of the triangular-stage embryos. When driven by the AXR2 promoter (pAXR2), each GFP-tagged mutant cDNA caused, in principle, aberrant aboveground phenotypes of the corresponding dominant mutant. However, either the axr2-1::GFP or slr-1::GFP cDNA brought about dwarf, agravitropic stems almost identical to those of axr2-1, and the pAXR2::msg2-1::GFP and pAXR2::slr-1::GFP hypocotyls exhibited complete loss of gravitropism as did axr2-1. These results showed functional differences among the msg2-1, axr2-1, and slr-1 proteins, though some phenotypes were determined by the promoter activity.
机译:如显性突变体的各种和某些重叠表型所示,拟南芥(Arabidopsis thaliana)的Aux / IAA基因同时显示出功能相似性和分化性。为了评估由启动子活性和基因产物的分子特性对Aux / IAA功能决定的表达模式的贡献,我们检查了表达绿色荧光蛋白(GFP)标签的msg2-1 / iaa19,axr2-1的转基因植物的表型。 MSG2或AXR2启动子启动/ iaa7或slr-1 / iaa14 cDNA。当由MSG2启动子(pMSG2)驱动时,每个带有GFP标签的cDNA都会导致msg2-1表型,即成熟植物阶段的野生型身材,黑暗中长而直的下胚轴,减少侧根形成,下胚轴具有较温和的引力特性,根部具有正常的重力响应。但是,在pMSG2 :: axr2-1 :: GFP和pMSG2 :: slr-1 :: GFP植物的胚胎发生过程中,通常会阻止一到两个子叶原基的发育,从而导致单子叶或没有子叶的幼苗。在pMSG2 :: msg2-1 :: GFP或msg2-1,axr2-1或slr-1突变体中从未观察到这种胚胎发生缺陷。 MSG2启动子-GUS染色表明,MSG2的表达开始于三角阶段胚胎的子叶原基。当由AXR2启动子(pAXR2)驱动时,每个带有GFP标签的突变体cDNA原则上都会引起相应的显性突变体的异常地上表型。但是,axr2-1 :: GFP或slr-1 :: GFP cDNA产生矮化,引力茎几乎与axr2-1相同,而pAXR2 :: msg2-1 :: GFP和pAXR2 :: slr- 1 :: GFP下胚轴与axr2-1一样表现出完全失去了重力。这些结果显示了msg2-1,axr2-1和slr-1蛋白之间的功能差异,尽管某些表型由启动子活性决定。

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  • 来源
    《Plant Physiology》 |2007年第1期|p.187-196|共10页
  • 作者单位

    Department of Biological Sciences, Faculty of Science (H.M., M.K.W., K.T.Y.), and Division of Biological Sciences, Graduate School of Science (M.K.W., D.N., K.T.Y.), Hokkaido University, Sapporo 060–0810, Japan;

    and Laboratory of Supramolecular Biophysics, Research Institute for Electronic Science, Hokkaido University, Sapporo 060–0812, Japan (M.K.);

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