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Genetic and Molecular Interactions between BELL1 and MADS Box Factors Support Ovule Development in Arabidopsis

机译:BELL1和MADS框因子之间的遗传和分子相互作用支持拟南芥的胚珠发育。

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摘要

In Arabidopsis thaliana and many other plant species, ovules arise from carpel tissue as new meristematic formations. Cell fate in proliferating ovule primordia is specified by particular ovule identity factors, such as the homeodomain factor BELL1 (BEL1) and MADS box family members SEEDSTICK (STK), SHATTERPROOF1 (SHP1), SHP2, and AGAMOUS. Both in the bel1 mutant and the stk shp1 shp2 triple mutant, integuments are transformed into carpelloid structures. Combining these mutants in a bel1 stk shp1 shp2 quadruple mutant, we showed that the bel1 phenotype is significantly enhanced. We also demonstrate that ovule differentiation requires the regulation of the stem cell maintenance gene WUSCHEL, repression of which is predominantly maintained by BEL1 during ovule development. Based on yeast three-hybrid assays and genetic data, we show that BEL1 interacts with the ovule identity MADS box factors when they dimerize with SEPALLATA proteins. We propose a model for ovule development that explains how the balance between carpel identity activity and ovule identity activity is established by a MADS box homeodomain protein complex.
机译:在拟南芥和许多其他植物物种中,胚珠来自心皮组织,是新的分生组织。特定胚珠身份因子(例如同源域因子BELL1(BEL1)和MADS盒家族成员SEEDSTICK(STK),SHATTERPROOF1(SHP1),SHP2和AGAMOUS)指定了增殖胚珠原基中的细胞命运。在bel1突变体和stk shp1 shp2三重突变体中,外皮均转化为类胡萝卜素结构。在bel1 stk shp1 shp2四重突变体中组合这些突变体,我们显示bel1表型显着增强。我们还证明,胚珠分化需要调节干细胞维持基因WUSCHEL,其抑制主要由BEL1在胚珠发育过程中维持。基于酵母三杂交试验和遗传数据,我们显示当BEL1与SEPALLATA蛋白二聚时,BEL1与胚珠身份MADS盒因子相互作用。我们提出了胚珠发育的模型,该模型解释了如何通过MADS盒同源域蛋白复合物建立心皮身份活性和胚珠身份活性之间的平衡。

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