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FON1 an Arabidopsis gene that terminates floral meristem activity and controls flower organ number.

机译:FON1是一种拟南芥基因可终止花分生组织的活动并控制花器官的数量。

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摘要

A novel gene that regulates floral meristem activity and controls floral organ number was identified in Arabidopsis and is designated FON1 (for FLORAL ORGAN NUMBER1). The fon1 mutants exhibit normal vegetative development and produce normal inflorescence meristems and immature flowers before stage 6. fon1 flowers become visibly different from wild-type flowers at stage 6, when the third-whorl stamen primordia have formed. The fon1 floral meristem functions longer than does that of the wild type: after the outer three-whorl organ primordia have initiated, the remaining central floral meristem continues to produce additional stamen primordia interior to the third whorl. Prolonged fon1 floral meristem activity also results in an increased number of carpels. The clavata (clv) mutations are known to affect floral meristem activity. We have analyzed the clv1 fon1, clv2 fon1, and clv3 fon1 double mutants. These double mutants all have similar phenotypes, with more stamens and carpels than either fon1 or clv single mutants. This indicates that FON1 and CLV genes function in different pathways to control the number of third- and fourth-whorl floral organs. In addition, to test for possible interactions between FON1 and other floral regulatory genes, we have constructed and analyzed the relevant double mutants. Our results suggest that FON1 does not interact with TERMINAL FLOWER1, APETALA1, APETALA2, or UNUSUAL FLORAL ORGAN. In contrast, normal LEAFY function is required for the expression of fon1 phenotypes. In addition, FON1 and AGAMOUS both seem to affect the domain of APETALA3 function, which also affects the formation of stamen-carpel chimera due to fon1 mutations. Finally, genetic analysis suggests that FON1 interacts with SUPERMAN, which also regulates floral meristem activity.
机译:在拟南芥中鉴定到了一种调节花分生组织活性并控制花器官编号的新基因,并将其命名为FON1(对于FLORAL ORGAN NUMBER1)。 fon1突变体表现出正常的营养发育,并在第6阶段之前产生正常的花序分生组织和未成熟花。当第3层雄蕊原基形成时,fon1花在第6阶段与野生型花明显不同。 fon1花分生组织的功能比野生型更长:在外部三​​重器官原基启动后,剩余的中央花分生组织继续在第三轮中产生额外的雄蕊原基内部。长时间的花状分生组织活性也导致心皮数量增加。已知Clavata(clv)突变会影响花分生组织的活动。我们已经分析了clv1 fon1,clv2 fon1和clv3 fon1双突变体。这些双突变体都具有相似的表型,比fon1或clv单突变体具有更多的雄蕊和心皮。这表明FON1和CLV基因以不同的途径起作用,以控制第三和第四轮花器官的数量。另外,为了测试FON1和其他花卉调控基因之间可能的相互作用,我们构建并分析了相关的双突变体。我们的结果表明FON1不会与TERLOWAL FLOWER1,APETALA1,APETALA2或不寻常的花器官发生相互作用。相反,表达fon1表型需要正常的LEAFY功能。此外,FON1和AGAMOUS似乎都影响APETALA3功能的结构域,由于fon1突变,这也影响了雄蕊-卡默嵌合体的形成。最后,遗传分析表明FON1与SUPERMAN相互作用,SUPERMAN也调节花分生组织的活性。

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