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OsMADS16 genetically interacts with OsMADS3 and OsMADS58 in specifying floral patterning in rice.

机译:OsMADS16与OsMADS3和OsMADS58基因相互作用,从而确定水稻的花型。

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Rice (Oryza sativa) has unique floral patterns that contribute to grain yield. However, the molecular mechanism underlying the specification of floral organ identities in rice, particularly the interaction among floral homeotic genes, remains poorly understood. Here, we show that the floral homeotic gene OsMADS16 (also called SUPERWOMAN1, SPW1, a B-class gene) acts together with the rice C-class genes OsMADS3 and OsMADS58 in specifying floral organ patterning. OsMADS16 and the two C-class genes have an overlapping expression pattern in the third whorl founder cells. Compared with the single mutants, both spw1-1 osmads3-4 and spw1-1 osmads58 double mutants exhibit additional whorls of glume-like organs within the flower, particularly an extra whorl of six glume-like structures formed at the position of the wild-type stamens. These ectopic glume-like structures were shown to have palea identity through cellular observation and in situ hybridization analysis using marker genes. Our results suggest that B- and C-class genes play a key role in suppressing indeterminate growth within the floral meristem, particularly whorl-3 primordia. We also hypothesize that, in contrast to previous assumptions, the specialized spikelet organ in rice, the palea, is the counterpart of the sepal in eudicots, and the lemma is homologous to the bract.
机译:水稻(Oryza sativa)具有独特的花卉图案,有助于提高谷物产量。然而,水稻中花器官身份的分子机制,特别是花同源基因之间的相互作用,仍知之甚少。在这里,我们显示了花卉同源基因OsMADS16(也称为SUPERWOMAN1,SPW1,B类基因)与水稻C类基因OsMADS3和OsMADS58一起作用于指定花卉器官的模式。 OsMADS16和两个C类基因在第三代螺旋基础细胞中有重叠的表达模式。与单一突变体相比,spw1-1 osmads3-4和spw1-1 osmads58双重突变体在花中都显示出额外的轮状颖状器官,特别是在野生位置处形成了六个轮状颖状结构。型雄蕊。这些异位颖片样结构通过细胞观察和使用标记基因的原位杂交分析显示具有古籍身份。我们的结果表明,B级和C级基因在抑制花分生组织(尤其是whor-3原基)内不确定的生长中起关键作用。我们还假设,与以前的假设相反,稻米中的特殊小穗器官,即古印度芥,与双子叶植物中的萼片相对应,并且外与the片同源。

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