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OsPIPK1, a Rice Phosphatidylinositol Monophosphate Kinase, Regulates Rice Heading by Modifying the Expression of Floral Induction Genes

机译:OsPIPK1,一种水稻磷脂酰肌醇单磷酸激酶,通过修饰花诱导基因的表达来调节水稻抽穗。

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摘要

A rice gene, OsPIPK1, encoding a 792-aa putative phosphatidylinositol 4-phosphate 5-kinase (PIPK), was identified and characterized. Comparison between the cDNA and genomic sequences revealed the presence of 10 exons (39–1050 bp) and 9 introns (88–745 bp) in OsPIPK1 gene. The deduced amino acid sequence of OsPIPK1 contains a lipid kinase domain that is highly homologous to those of previously isolated PIPKs, and structural analysis revealed the intriguing presence of multiple MORN motifs at the N-terminus. The MORN motifs have also been detected in PIPKs from Arabidopsis thaliana and Oryza sativa, but not in the well-characterized PIPKs from animal and yeast cells. RT-PCR analysis indicated that OsPIPK1 was expressed almost constitutively in roots, shoots, stems, leaves and flowers, and up-regulated following treatment with plant hormones or application of various stresses. An antisense transgenic strategy was used to suppress the expression of OsPIPK1, and homozygous transgenic plants showed earlier heading (7–14 days earlier) than control plants, suggesting that OsPIPK1 negatively regulates floral initiation. This was further confirmed by morphologic observation showing earlier floral development in antisense plants, as well as leaf emergence measurement indicating delayed leaf development under OsPIPK1 deficiency, a common phenotype observed with earlier flowering. RT-PCR analysis and cDNA chip technology were used to examine transcripts of various genes in the transgenic plants and the results showed altered transcriptions of several flowering-time or -identity related genes, suggesting that OsPIPK1 is involved in rice heading through regulation of floral induction genes, signaling and metabolic pathways.
机译:鉴定并鉴定了水稻基因OsPIPK1,该基因编码792-aa假定的磷脂酰肌醇4-磷酸5-激酶(PIPK)。 cDNA和基因组序列之间的比较表明,OsPIPK1基因中存在10个外显子(39–1050 bp)和9个内含子(88–745 bp)。推导的OsPIPK1氨基酸序列包含一个与以前分离的PIPKs高度同源的脂质激酶结构域,结构分析揭示了在N端存在多个MORN模体的有趣现象。在拟南芥和水稻中的PIPKs中也检测到了MORN的基序,但在动物和酵母细胞中表征良好的PIPKs中却未检测到。 RT-PCR分析表明,OsPIPK1在根,芽,茎,叶和花中几乎组成性表达,并在用植物激素处理或施加各种胁迫后上调。反义转基因策略被用于抑制OsPIPK1的表达,纯合子转基因植物的抽穗期比对照植物早(7-14天),这表明OsPIPK1负调控花序。形态学观察进一步证实了这一点,形态学观察显示了反义植物中较早的花发育,以及叶片出现的测量表明在OsPIPK1缺乏(较早开花时观察到的常见表型)下叶片发育延迟。 RT-PCR分析和cDNA芯片技术用于检查转基因植物中各种基因的转录本,结果表明几种开花时间或与身份相关的基因的转录发生了改变,这表明OsPIPK1通过调控花诱导而参与水稻抽穗基因,信号传导和代谢途径。

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  • 来源
    《Plant Molecular Biology》 |2004年第2期|295-310|共16页
  • 作者单位

    National Laboratory of Plant Molecular Genetics Institute of Plant Physiology and Ecology Shanghai Institutes for Biological Sciences (SiBS) Chinese Academy of SciencesPartner Group of Max-Planck-Institute of Molecular Plant Physiology (MPI-MP) on “Plant Molecular Physiology and Signal Transduction”;

    National Laboratory of Plant Molecular Genetics Institute of Plant Physiology and Ecology Shanghai Institutes for Biological Sciences (SiBS) Chinese Academy of SciencesPartner Group of Max-Planck-Institute of Molecular Plant Physiology (MPI-MP) on “Plant Molecular Physiology and Signal Transduction”;

    National Laboratory of Plant Molecular Genetics Institute of Plant Physiology and Ecology Shanghai Institutes for Biological Sciences (SiBS) Chinese Academy of SciencesPartner Group of Max-Planck-Institute of Molecular Plant Physiology (MPI-MP) on “Plant Molecular Physiology and Signal Transduction”;

    National Laboratory of Plant Molecular Genetics Institute of Plant Physiology and Ecology Shanghai Institutes for Biological Sciences (SiBS) Chinese Academy of SciencesPartner Group of Max-Planck-Institute of Molecular Plant Physiology (MPI-MP) on “Plant Molecular Physiology and Signal Transduction”;

    National Laboratory of Plant Molecular Genetics Institute of Plant Physiology and Ecology Shanghai Institutes for Biological Sciences (SiBS) Chinese Academy of SciencesPartner Group of Max-Planck-Institute of Molecular Plant Physiology (MPI-MP) on “Plant Molecular Physiology and Signal Transduction”;

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  • 正文语种 eng
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  • 关键词

    floral induction genes; heading; Oryza sativa; phosphatidylinositol monophosphate kinase (PIPK);

    机译:花诱导基因;抽穗;水稻;磷脂酰肌醇单磷酸激酶(PIPK);

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