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Expression and function of Populus homologs to TERMINAL FLOWER 1 genes: Roles in onset of flowering and shoot phenology.

机译:杨与TERMINAL FLOWER 1基因的同源物的表达和功能:在开花和芽物候发生中的作用。

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摘要

We isolated and characterized the expression of two genes from Populus trichocarpa that are homologous to the TERMINAL FLOWER 1 (TFL1) gene from the model annual plant Arabidopsis. In Arabidopsis, overexpression of the TFL1 gene extends the vegetative growth phase, and the homozygous mutant tfl1 allele causes early flowering and formation of a terminal flower. Overexpression of another TFL1 family member, FLOWERING LOCUS T (FT), inhibits the action of TFL1. The two homologs studied, poplar CENTRORADIALIS LIKE-1 (PtCENL-1) and poplar MOTHER OF FT AND TFL1 (PtMFT), encode proteins that are 52% identical to one another; and 72% and 50% identical to TFL1 , respectively.; Real-time RT-PCR studies revealed that PtCENL-1 was expressed in all stages of development studied, and was most strongly expressed in vegetative buds and shoot apices. PtMFT was expressed preferentially in inflorescence buds. Expression patterns suggest that PtCENL-1 promotes maintenance of the vegetative growth phase, and that PtMFT promotes the onset of flowering. We tested these hypotheses by overexpression of the PtCENL-1/PtMFT under the control of the CaMV 35S promoter (poplar and Arabidopsis), and via suppression of the endogenous genes via RNA interference (RNAi: poplar only).; Some PtCENL-1 RNAi trees flowered during the second growing season in the field, several years earlier than expected. Floral buds were detected in four independent gene insertion events; in two of the four events, floral buds expanded into mature-appearing female catkins and dehisced, though seeds were not formed. All four events had native PtCENL-1 transcript levels lower than in non-flowering events, and below 50% of the level detected in non-transgenic poplar. These early flowering events had normal budflush, however, 35S::PtCENL-1 transcript levels/were strongly and positively correlated with date of budflush. These results suggest that endogenous PtCENL-1 is a natural inhibitor of the onset of flowering, and may also retard release from vegetative dormancy. Correspondingly, ectopic expression of PtCENL-1 in Arabidopsis had delayed flowering. No phenotypic differences were observed in PtMFT overexpressing or RNAi transgenic trees. However, ectopic expression of PtMFT in Arabidopsis caused early flowering. Suppression of PtCENL-1 might be useful for inducing early flowering in Populus.
机译:我们分离并表征了来自毛果杨的两个基因的表达,它们与模型年生植物拟南芥中的TERLOWAL FLOWER 1(TFL1)基因同源。在拟南芥中,TFL1基因的过度表达延长了营养生长期,纯合突变体tfl1等位基因导致了早期开花和末端花的形成。另一个TFL1家族成员FLOWERING LOCUS T(FT)的过度表达抑制了TFL1的作用。研究的两个同源物,杨树CENTRORADIALIS LIKE-1(PtCENL-1)和杨树母亲FT和TFL1(PtMFT),编码的蛋白质彼此相同52%。分别与TFL1相同72%和50%。实时RT-PCR研究表明,PtCENL-1在所研究的所有发育阶段均表达,并且在营养芽和芽尖中表达最强。 PtMFT优先在花序芽中表达。表达模式表明PtCENL-1促进营养生长阶段的维持,而PtMFT促进开花的开始。我们通过在CaMV 35S启动子(杨树和拟南芥)的控制下过表达PtCENL-1 / PtMFT,以及通过RNA干扰抑制内源基因(RNAi:仅杨树)来测试这些假设。一些PtCENL-1 RNAi树在田间第二个生长季节开花,比预期的早了几年。在四个独立的基因插入事件中检测到花芽。在这四个事件中的两个中,虽然没有形成种子,但花蕾却长成成熟的雌性柔cat花,并且开裂了。所有四个事件的天然PtCENL-1转录水平均低于非开花事件,且低于非转基因杨树中检测到水平的50%。这些早期开花事件的花蕾正常,但是35S :: PtCENL-1转录水平/与花蕾的日期密切相关。这些结果表明,内源性PtCENL-1是开花开始的天然抑制剂,也可能延迟植物休眠的释放。相应地,PtCENL-1在拟南芥中的异位表达延迟了开花。在PtMFT过表达树或RNAi转基因树中未观察到表型差异。但是,PtMFT在拟南芥中的异位表达导致了早期开花。 PtCENL-1的抑制可能有助于诱导胡杨早花。

著录项

  • 作者

    Mohamed, Rozi.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Biology Molecular.; Agriculture Forestry and Wildlife.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;森林生物学;植物学;
  • 关键词

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