Roxrud Ingrid, Lid Stein Erik, Fletcher Jennifer C, Schmidt Ed D L, Opsahl-Sorteberg Hilde-Gunn
Genetwister Technologies BV, PO Box 193, NL-6700 AD Wageningen, The Netherlands.
Plant Cell Physiol. 2007 Mar;48(3):471-83. doi: 10.1093/pcp/pcm016. Epub 2007 Feb 6.
Members of the plant-specific gibberellic acid-stimulated Arabidopsis (GASA) gene family play roles in hormone response, defense and development. We have identified six new Arabidopsis GASA genes, bringing the total number of family members to 14. Here we show that these genes all encode small polypeptides that share the common structural features of an N-terminal putative signal sequence, a highly divergent intermediate region and a conserved 60 amino acid C-terminal domain containing 12 conserved cysteine residues. Analysis of promoter::GUS (beta-glucuronidase) transgenic plants representing six different GASA loci reveals that the promoters are activated in a variety of stage- and tissue-specific patterns during development, indicating that the GASA genes are involved in diverse processes. Characterization of GASA4 shows that the promoter is active in the shoot apex region, developing flowers and developing embryos. Phenotypic analyses of GASA4 loss-of-function and gain-of-function lines indicate that GASA4 regulates floral meristem identity and also positively affects both seed size and total seed yield.
植物特有的赤霉素刺激拟南芥(GASA)基因家族的成员在激素应答、防御和发育过程中发挥作用。我们鉴定出了6个新的拟南芥GASA基因,使该家族成员总数达到14个。在此我们表明,这些基因均编码小多肽,它们具有共同的结构特征:一个N端推定信号序列、一个高度可变的中间区域以及一个保守的60个氨基酸的C端结构域,该结构域含有12个保守的半胱氨酸残基。对代表6个不同GASA基因座的启动子::GUS(β-葡萄糖醛酸酶)转基因植物的分析表明,在发育过程中,这些启动子以多种阶段和组织特异性模式被激活,这表明GASA基因参与了多种过程。对GASA4的表征显示,其启动子在茎尖区域、发育中的花和发育中的胚中具有活性。对GASA4功能缺失和功能获得系的表型分析表明,GASA4调节花分生组织特性,并且对种子大小和种子总产量均产生正向影响。