Kim Soo-Yun, Park Beom-Seok, Kwon Soo-Jin, Kim Jungsun, Lim Myung-Ho, Park Young-Doo, Kim Dool Yi, Suh Seok-Chul, Jin Yong-Moon, Ahn Ji Hoon, Lee Yeon-Hee
National Institute of Agricultural Biotechnology, RDA, Suwon 441-707, Korea.
Plant Cell Rep. 2007 Mar;26(3):327-36. doi: 10.1007/s00299-006-0243-1. Epub 2006 Oct 6.
Chinese cabbage plants remain in the vegetative growth phase until they have experienced prolonged exposure to cold temperature, known as vernalization. This inhibition of flowering is caused by the high levels of FLOWERING LOCUS C (FLC) expression. To increase the product value of Chinese cabbage by inhibiting the floral transition, three genes (BrFLC1, BrFLC2, and BrFLC3) homologous to the AtFLC gene, which encodes a floral repressor, were isolated from the Chinese cabbage 'Chiifu'. These genes showed high similarity to AtFLC, although the putative BrFLC1 protein contained ten more residues than AtFLC. The BrFLC genes were expressed ubiquitously, except that BrFLC3 was not expressed in roots. BrFLC1 and BrFLC2 showed stronger expression than BrFLC3 in unvernalized and vernalized Chinese cabbage. The expression levels of the three BrFLC genes were lower in an early-flowering Chinese cabbage, suggesting that the BrFLC transcript level was associated with flowering time. Constitutive expression of the BrFLC genes in Arabidopsis significantly delayed flowering, which was also observed in transgenic Chinese cabbage overexpressing BrFLC3. These results suggest that the BrFLC genes act similarly to AtFLC. Our results provide a technique for controlling flowering time in Chinese cabbage and other crops to produce high yields of vegetative tissues.
大白菜植株在经历长时间低温(即春化作用)之前一直处于营养生长阶段。这种对开花的抑制是由高水平的开花位点C(FLC)表达引起的。为了通过抑制花期转变来提高大白菜的产品价值,从大白菜‘Chiifu’中分离出了三个与AtFLC基因同源的基因(BrFLC1、BrFLC2和BrFLC3),AtFLC基因编码一种开花抑制因子。这些基因与AtFLC具有高度相似性,尽管推测的BrFLC1蛋白比AtFLC多十个残基。BrFLC基因在各处均有表达,只是BrFLC3在根中不表达。在未春化和春化的大白菜中,BrFLC1和BrFLC2的表达比BrFLC3更强。在早花大白菜中,三个BrFLC基因的表达水平较低,这表明BrFLC转录水平与开花时间相关。BrFLC基因在拟南芥中的组成型表达显著延迟了开花,在过表达BrFLC3的转基因大白菜中也观察到了这种现象。这些结果表明,BrFLC基因的作用与AtFLC相似。我们的结果提供了一种控制大白菜和其他作物开花时间以高产营养组织的技术。