...
首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The ULTRAPETALA1 Gene Functions Early in Arabidopsis Development to Restrict Shoot Apical Meristem Activity and Acts Through WUSCHEL to Regulate Floral Meristem Determinacy
【24h】

The ULTRAPETALA1 Gene Functions Early in Arabidopsis Development to Restrict Shoot Apical Meristem Activity and Acts Through WUSCHEL to Regulate Floral Meristem Determinacy

机译:ULTRAPETALA1基因在拟南芥发育的早期起作用,以限制芽顶分生组织的活动,并通过WUSCHEL来调节花生组织的确定性

获取原文
           

摘要

Shoot and floral meristem activity in higher plants is controlled by complex signaling networks consisting of positive and negative regulators. The Arabidopsis ULTRAPETALA1 ( ULT1 ) gene has been shown to act as a negative regulator of meristem cell accumulation in inflorescence and floral meristems, as loss-of-function ult1 mutations cause inflorescence meristem enlargement, the production of extra flowers and floral organs, and a decrease in floral meristem determinacy. To investigate whether ULT1 functions in known meristem regulatory pathways, we generated double mutants between ult1 alleles and null alleles of the meristem-promoting genes SHOOTMERISTEMLESS ( STM ) and WUSCHEL ( WUS ). We found that, although the ult1 alleles have no detectable embryonic or vegetative phenotypes, ult1 mutations restored extensive organ-forming capability to stm null mutants after germination and increased leaf and floral organ production in stm partial loss-of-function mutants. Mutations in ULT1 also partially suppressed the wus shoot and floral meristem phenotypes. However, wus was epistatic to ult1 in the center of the flower, and WUS transcriptional repression was delayed in ult1 floral meristems. Our results show that during the majority of the Arabidopsis life cycle, ULT1 acts oppositely to STM and WUS in maintaining meristem activity and functions in a separate genetic pathway. However, ULT1 negatively regulates WUS to establish floral meristem determinacy, acting through the WUS-AG temporal feedback loop.
机译:高等植物的枝条和花分生组织活性受由正负调节剂组成的复杂信号网络控制。拟南芥ULTRAPETALA1(ULT1)基因已被证明是花序和花分生组织中分生组织细胞积累的负调节剂,因为功能丧失ult1突变会导致花序分生组织扩大,多余花和花器官的产生,以及花分生组织确定性降低。若要调查ULT1是否在已知的分生组织调控途径中起作用,我们在分生组织促进基因SHOOTMERISTEMLESS(STM)和WUSCHEL(WUS)的ult1等位基因和无效等位基因之间生成了双突变体。我们发现,尽管ult1等位基因没有可检测的胚胎或营养表型,但ult1突变在发芽后恢复了对stm null突变体的广泛器官形成能力,并增加了stm部分功能丧失突变体的叶和花器官产量。 ULT1中的突变也部分抑制了wus芽和花分生组织表型。但是,wus在花的中央对ult1具有上位性,而在ult1的花分生组织中WUS的转录抑制被延迟。我们的结果表明,在拟南芥的大部分生命周期中,ULT1与STM和WUS的作用相反,在单独的遗传途径中维持分生组织的活性和功能。但是,ULT1通过WUS-AG时间反馈回路对WUS产生负调控,从而确定花分生组织的确定性。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号