Hoecker U, Vasil I K, McCarty D R
Department of Horticultural Sciences, University of Florida, Gainesville 32611, USA.
Genes Dev. 1995 Oct 15;9(20):2459-69. doi: 10.1101/gad.9.20.2459.
The Viviparous-1 (VP1) transcriptional activator of maize is required for abscisic acid induction of maturation-specific genes late in seed development leading to acquisition of desiccation tolerance and arrest in embryo growth. Here, we show that VP1 also inhibits induction of the germination-specific alpha-amylase genes in aleurone cells of the developing seed and thereby appears to be involved in preventing precocious hydrolyzation of storage compounds accumulating in the endosperm. In developing seeds of the somatically instable vp1-m2 mutant, hydrolase activity was derepressed specifically in endosperm sectors underlying vp1 mutant aleurone. A barley alpha-amylase promoter-GUS reporter construct (Amy-GUS) was induced in developing vp1 mutant aleurone cells but not in wild-type aleurone cells. Moreover, transient expression of recombinant VP1 and vp1 mutant aleurone cells strongly inhibited expression of Amy-GUS and thus effectively complemented this aspect of the mutant phenotype. VP1 specifically repressed induction of Amy-GUS by the hormone gibberellic acid in aleurone of germinating barley seeds. Deletion of the acidic transcriptional activation domain of VP1 did not affect the inhibitory activity, indicating that VP1 has a discrete repressor function. Hence, physically combining activator and repressor functions in one protein may provide a mechanism to integrate the control of two normally consecutive developmental programs, seed maturation and seed germination.
玉米的胎生-1(VP1)转录激活因子是种子发育后期脱落酸诱导成熟特异性基因所必需的,这些基因导致种子获得耐脱水能力并使胚胎生长停滞。在此,我们表明VP1还抑制发育中种子糊粉层细胞中萌发特异性α-淀粉酶基因的诱导,因此似乎参与防止胚乳中积累的贮藏化合物过早水解。在体细胞不稳定的vp1 - m2突变体的发育种子中,水解酶活性在vp1突变体糊粉层下方的胚乳区域中特异性地去抑制。一个大麦α-淀粉酶启动子-GUS报告构建体(Amy-GUS)在发育中的vp1突变体糊粉层细胞中被诱导,但在野生型糊粉层细胞中未被诱导。此外,重组VP1在vp1突变体糊粉层细胞中的瞬时表达强烈抑制了Amy-GUS的表达,从而有效地补充了突变体表型的这一方面。VP1特异性抑制萌发大麦种子糊粉层中激素赤霉素对Amy-GUS的诱导。VP1酸性转录激活结构域的缺失不影响抑制活性,表明VP1具有独立的阻遏功能。因此,在一种蛋白质中物理结合激活因子和阻遏因子功能可能提供一种机制,以整合对两个通常连续的发育程序——种子成熟和种子萌发的控制。