Adamczyk Benjamin J, Lehti-Shiu Melissa D, Fernandez Donna E
Department of Botany, University of Wisconsin-Madison, 430 Lincoln Drive, Madison, WI 53706-1381, USA.
Plant J. 2007 Jun;50(6):1007-19. doi: 10.1111/j.1365-313X.2007.03105.x. Epub 2007 May 23.
The developmental roles of AGL15 and AGL18, members of the AGL15-like clade of MADS domain regulatory factors, have not been defined previously. Analysis of transgenic Arabidopsis plants showed that overexpression of AGL18 produces the same phenotypic changes as overexpression of AGL15, and the two genes have partially overlapping expression patterns. Functional redundancy was confirmed through analysis of loss-of-function mutants. agl15 agl18 double mutants, but not single mutants, flower early under non-inductive conditions, indicating that AGL15 and AGL18 act in a redundant fashion as repressors of the floral transition. Further genetic analyses and expression studies were used to examine the relationship between AGL15 and AGL18 activity and other regulators of the floral transition. AGL15 and AGL18 act upstream of the floral integrator FT, and a combination of agl15 and agl18 mutations partially suppresses defects in the photoperiod pathway. agl15 agl18 mutations show an additive relationship with mutations in genes encoding other MADS domain floral repressors, and further acceleration of flowering is seen in triple and quadruple mutants under both inductive and non-inductive conditions. Thus, flowering time is determined by the additive effect of multiple MADS domain floral repressors, with important contributions from AGL15 and AGL18.
MADS结构域调控因子中AGL15类进化枝成员AGL15和AGL18的发育作用此前尚未明确。对转基因拟南芥植株的分析表明,AGL18的过表达产生了与AGL15过表达相同的表型变化,并且这两个基因具有部分重叠的表达模式。通过对功能缺失突变体的分析证实了功能冗余。agl15 agl18双突变体而非单突变体在非诱导条件下开花提前,这表明AGL15和AGL18作为开花转变的抑制因子以冗余方式起作用。进一步的遗传分析和表达研究用于检验AGL15和AGL18活性与开花转变的其他调控因子之间的关系。AGL15和AGL18在开花整合因子FT的上游起作用,并且agl15和agl18突变的组合部分抑制了光周期途径中的缺陷。agl15 agl18突变与编码其他MADS结构域开花抑制因子的基因突变呈现累加关系,并且在诱导和非诱导条件下,三重和四重突变体中开花进一步加速。因此,开花时间由多个MADS结构域开花抑制因子的累加效应决定,其中AGL15和AGL18起重要作用。