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Interactions between FLORAL ORGAN NUMBER₄ and floral homeotic genes in regulating rice flower development

机译:FLORaL ORGaN NUmBER 4与花同源基因在调控水稻花发育中的相互作用

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摘要

The floral meristem (FM) is self-maintaining at the early stages of flower development, but it is terminated when a fixed number of floral organs are produced. The FLORAL ORGAN NUMBER4 (FON4; also known as FON2) gene, an ortholog of Arabidopsis CLAVATA3 (CLV3), is required for regulating FM size and determinacy in rice. However, its interactions with floral homeotic genes remain unknown. Here, we report the genetic interactions between FON4 and floral homeotic genes OsMADS15 (an A-class gene), OsMADS16 (also called SUPERWOMAN1, SPW1, a B-class gene), OsMADS3 and OsMADS58 (C-class genes), OsMADS13 (a D-class gene), and OsMADS1 (an E-class gene) during flower development. We observed an additive phenotype in the fon4 double mutant with the OsMADS15 mutant allele dep (degenerative palea). The effect on the organ number of whorl 2 was enhanced in fon4 spw1. Double mutant combinations of fon4 with osmads3, osmads58, osmads13, and osmads1 displayed enhanced defects in FM determinacy and identity, respectively, indicating that FON4 and these genes synergistically control FM activity. In addition, the expression patterns of all the genes besides OsMADS13 had no obvious change in the fon4 mutant. This work reveals how the meristem maintenance gene FON4 genetically interacts with C, D, and E floral homeotic genes in specifying FM activity in monocot rice.
机译:花分生组织(FM)在花发育的早期阶段是自我维持的,但是当产生一定数量的花器官时终止。拟南芥CLAVATA3(CLV3)的直系同源基因FLORAL ORGAN NUMBER4(FON4;也称为FON2)基因是调节水稻FM大小和确定性的必需物质。然而,其与花卉同源基因的相互作用仍然未知。在这里,我们报告FON4和花卉同源基因OsMADS15(A类基因),OsMADS16(也称为SUPERWOMAN1,SPW1,B类基因),OsMADS3和OsMADS58(C类基因),OsMADS13(a D级基因)和OsMADS1(E级基因)在花朵发育过程中。我们观察到fon4双突变体与OsMADS15突变体等位基因dep(退化性谷)的加性表型。在fon4 spw1中,增强了对螺纹2器官数量的影响。 fon4与osmads3,osmads58,osmads13和osmads1的双重突变组合分别显示出增强的FM确定性和同一性缺陷,表明FON4和这些基因协同控制FM活性。另外,除了OsMADS13外,所有基因的表达方式在fon4突变体中均无明显变化。这项工作揭示了分生组织维持基因FON4在指定单子叶植物水稻FM活性中如何与C,D和E花卉同源基因发生基因相互作用。

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