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A transposon-induced epigenetic change leads to sex determination in melon

机译:转座子诱导的表观遗传变化导致瓜果的性别决定

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摘要

Sex determination in plants leads to the development of unisexual flowers from an originally bisexual floral meristem. This mechanism results in the enhancement of outcrossing and promotes genetic variability, the consequences of which are advantageous to the evolution of a species. In melon, sexual forms are controlled by identity of the alleles at the andromonoecious (a) and gynoe-cious (g) loci. We previously showed that the a gene encodes an ethylene biosynthesis enzyme, CmACS-7, that represses stamen development in female flowers. Here we show that the transition from male to female flowers in gynoecious lines results from epigenetic changes in the promoter of a transcription factor, CmWIP1. This natural and heritable epigenetic change resulted from the insertion of a transposon, which is required for initiation and maintenance of the spreading of DNA methylation to the CmWIP1 promoter. Expression of CmWIP1 leads to carpel abortion, resulting in the development of unisexual male flowers. Moreover, we show that CmWIP1 indirectly represses the expression of the andromonoecious gene, CmACS-7, to allow stamen development. Together our data indicate a model in which CmACS-7 and CmWIP1 interact to control the development of male, female and hermaphrodite flowers in melon.
机译:植物中的性别决定导致原始双性恋花分生组织产生单性花。这种机制导致异型杂交的增强并促进了遗传变异性,其结果有利于物种的进化。在甜瓜中,有性形式受雄激素单性位点(a)和雌雄激素性位点(g)等位基因的身份控制。我们以前显示该基因编码乙烯生物合成酶CmACS-7,该酶抑制雌花中的雄蕊发育。在这里,我们显示雌雄同株系中从雄花到雌花的过渡是由转录因子CmWIP1启动子的表观遗传变化引起的。这种自然和可遗传的表观遗传变化是由转座子的插入引起的,这是启动和维持DNA甲基化向CmWIP1启动子扩散所必需的。 CmWIP1的表达导致心皮流产,导致单性雄花的发育。此外,我们显示CmWIP1间接抑制雄激素基因CmACS-7的表达,以使雄蕊发育。我们的数据一起表明了一个模型,其中CmACS-7和CmWIP1相互作用以控制瓜中雄性,雌性和雌雄同体花的发育。

著录项

  • 来源
    《Nature》 |2009年第7267期|1135-1138|共4页
  • 作者单位

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

    Plateforme de Cytologie et d'lmagerie Vegetale, Institut Jean Pierre Bourgin, INRA, 78026 Versailles Cedex, France;

    INRA, UR 1052, Unite de Genetique et d'Amelioration des Fruits et Legumes, BP 94, F-84143 Montfavet, France;

    INRA, UR 1052, Unite de Genetique et d'Amelioration des Fruits et Legumes, BP 94, F-84143 Montfavet, France;

    INRA-CNRS, UMR1165, Unite de Recherche en Genomique Vegetale, 2 rue Gaston Cremieux, F-91057 Evry, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:41

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