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The MADS-domain protein MPF1 of Physalis floridana controls plant architecture seed development and flowering time

机译:酸浆的MADS结构域蛋白MPF1控制植物的结构种子发育和开花时间

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摘要

Floral and vegetative development of plants is dependent on the combinatorial action of MADS-domain transcription factors. Members of the STMADS11 subclade, such as MPF1 of Physalis, are abundantly expressed in leaves as well as in floral organs, but their function is not yet clear. Our studies with transgenic Arabidopsis that over-express MPF1 suggest that MPF1 interacts with SOC1 to determine flowering time. However, MPF1 RNAi-mediated knockdown Physalis plants revealed a complex phenotype with changes in flowering time, plant architecture and seed size. Flowering of these plants was delayed by about 20% as compared to wild type. Expression of PFLFY is upregulated in the MPF1 RNAi lines, while PFFT and MPF3 genes are strongly repressed. MPF1 interacts with a subset of MADS-domain factors, namely with PFSOC1 in planta, and with PFSEP3 and PFFUL in yeast, supporting a regulatory role for this protein in flowering. The average size of seeds produced by the transgenic MPF1 RNAi plants is increased almost twofold. The height of these plants is also increased about twofold, but most axillary buds are stunted when compared to controls. Taken together, this suggests that members of the STMADS11 subclade act as positive regulators of flowering but have diverse functions in plant growth.Electronic supplementary materialThe online version of this article (doi:10.1007/s00425-009-1087-z) contains supplementary material, which is available to authorized users.
机译:植物的花和营养发育取决于MADS结构域转录因子的组合作用。 STMADS11子小节的成员,例如酸浆的MPF1,在叶子和花器官中都大量表达,但其功能尚不清楚。我们对过表达MPF1的转基因拟南芥的研究表明,MPF1与SOC1相互作用以确定开花时间。然而,MPF1 RNAi介导的击倒酸浆植物表现出复杂的表型,开花时间,植物结构和种子大小均发生变化。与野生型相比,这些植物的开花延迟了约20%。 PFLFY的表达在MPF1 RNAi系中被上调,而PFFT和MPF3基因被强烈抑制。 MPF1与MADS域因子的子集相互作用,即与植物中的PFSOC1相互作用,并与酵母中的PFSEP3和PFFUL相互作用,从而支持该蛋白在开花中的调控作用。转基因MPF1 RNAi植物产生的种子的平均大小几乎增加了两倍。这些植物的高度也增加了约两倍,但是与对照相比,大多数腋芽都发育不良。综上所述,这表明STMADS11子小节可作为开花的正向调节剂,但在植物生长中具有多种功能。电子补充材料本文的在线版本(doi:10.1007 / s00425-009-1087-z)包含补充材料,可供授权用户使用。

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