首页> 美国卫生研究院文献>Plant Physiology >Genetic Interaction of OsMADS3 DROOPING LEAF and OsMADS13 in Specifying Rice Floral Organ Identities and Meristem Determinacy
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Genetic Interaction of OsMADS3 DROOPING LEAF and OsMADS13 in Specifying Rice Floral Organ Identities and Meristem Determinacy

机译:OsMADS3下垂叶和OsMADS13的遗传相互作用在确定水稻花器官的身份和分生组织的确定性

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摘要

Grass plants develop unique floral patterns that determine grain production. However, the molecular mechanism underlying the specification of floral organ identities and meristem determinacy, including the interaction among floral homeotic genes, remains largely unknown in grasses. Here, we report the interactions of rice (Oryza sativa) floral homeotic genes, OsMADS3 (a C-class gene), OsMADS13 (a D-class gene), and DROOPING LEAF (DL), in specifying floral organ identities and floral meristem determinacy. The interaction among these genes was revealed through the analysis of double mutants. osmads13-3 osmads3-4 displayed a loss of floral meristem determinacy and generated abundant carpelloid structures containing severe defective ovules in the flower center, which were not detectable in the single mutant. In addition, in situ hybridization and yeast two-hybrid analyses revealed that OsMADS13 and OsMADS3 did not regulate each other’s transcription or interact at the protein level. This indicates that OsMADS3 plays a synergistic role with OsMADS13 in both ovule development and floral meristem termination. Strikingly, osmads3-4 dl-sup6 displayed a severe loss of floral meristem determinacy and produced supernumerary whorls of lodicule-like organs at the forth whorl, suggesting that OsMADS3 and DL synergistically terminate the floral meristem. Furthermore, the defects of osmads13-3 dl-sup6 flowers appeared identical to those of dl-sup6, and the OsMADS13 expression was undetectable in dl-sup6 flowers. These observations suggest that DL and OsMADS13 may function in the same pathway specifying the identity of carpel/ovule and floral meristem. Collectively, we propose a model to illustrate the role of OsMADS3, DL, and OsMADS13 in the specification of flower organ identity and meristem determinacy in rice.
机译:草类植物会形成决定谷物产量的独特花卉图案。然而,在草丛中,花器官特征和分生组织确定性的分子机制尚不清楚,包括花同源基因之间的相互作用。在这里,我们报告了水稻(Oryza sativa)花卉同源基因,OsMADS3(C类基因),OsMADS13(D类基因)和DROOPING LEAF(DL)的相互作用,从而确定了花器官的身份和花分生组织的确定性。通过双重突变体的分析揭示了这些基因之间的相互作用。 osmads13-3 osmads3-4显示出花分生组织确定性的丧失,并生成了丰富的类胡萝卜素结构,在花中心中含有严重的缺陷胚珠,在单个突变体中无法检测到。另外,原位杂交和酵母双杂交分析表明,OsMADS13和OsMADS3不能调节彼此的转录或在蛋白质水平上相互作用。这表明OsMADS3在胚珠发育和花分生组织终止中均与OsMADS13发挥协同作用。令人惊讶的是,osmads3-4 dl-sup6严重丧失了花分生组织的确定性,并在第四个轮生了多余的of状器官轮,表明OsMADS3和DL协同终止了花分生组织。此外,osmads13-3 dl-sup6花朵的缺陷与dl-sup6相同,并且在 dl-sup6 花朵中检测不到OsMADS13表达。这些观察结果表明, DL OsMADS13 可能在指定心皮/胚珠和花分生组织身份的同一途径中发挥作用。我们共同提出了一个模型来说明 OsMADS3 DL OsMADS13 在水稻花器官同一性和分生组织确定性规范中的作用。 。

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