Lee Jeong Hwan, Park Soo Hyun, Lee Jong Seob, Ahn Ji Hoon
Plant Signaling Network Research Center, School of Life Sciences and Biotechnology, Korea University, Seoul 136-701, South Korea.
Biochim Biophys Acta. 2007 Jul-Aug;1769(7-8):455-61. doi: 10.1016/j.bbaexp.2007.05.001. Epub 2007 May 21.
The control of flowering time in Brassica plants is an important approach for improving productivity, as vegetative tissues are not produced after the floral transition in Brassica plants. In order to determine the feasibility of modulating flowering time in Chinese cabbage plants, genes homologous to Arabidopsis SHORT VEGETATIVE PHASE (AtSVP) were isolated from spring-type and fall-type cultivars of Chinese cabbage plants, and their functions were determined. Their deduced amino acid sequences were 91-93% identical with that of AtSVP. The expression of BcSVP was ubiquitously detected, and was unaffected by vernalization. Constitutive BcSVP expression induced late flowering with additional floral defects. This delayed flowering was attributed to the repression of FLOWERING LOCUS T (FT) and SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1). BcSVP expression under the control of the AtSVP promoter also resulted in the complementation of the svp mutation in Arabidopsis. These results indicate that BcSVP is a functional equivalent of AtSVP and also suggest that BcSVP may prove useful for the genetic manipulation of flowering time in Brassica plants.
控制甘蓝型植物的开花时间是提高产量的重要途径,因为甘蓝型植物进入花期后不再产生营养组织。为了确定调控大白菜开花时间的可行性,从大白菜春型和秋型品种中分离出与拟南芥SHORT VEGETATIVE PHASE(AtSVP)同源的基因,并对其功能进行了鉴定。它们推导的氨基酸序列与AtSVP的序列有91%-93%的同一性。BcSVP的表达在各处都能检测到,且不受春化作用的影响。组成型BcSVP表达导致开花延迟,并伴有额外的花缺陷。这种开花延迟归因于对开花位点T(FT)和CONSTANS过表达抑制因子1(SOC1)的抑制。在AtSVP启动子控制下的BcSVP表达也导致了拟南芥svp突变体的互补。这些结果表明BcSVP是AtSVP的功能等同物,也表明BcSVP可能对甘蓝型植物开花时间的遗传操作有用。