Kim B C, Soh M C, Kang B J, Furuya M, Nam H G
Department of Life Science, Pohang University of Science and Technology, Kyungbuk, South Korea.
Plant J. 1996 Apr;9(4):441-56. doi: 10.1046/j.1365-313x.1996.09040441.x.
By screening suppressor mutants of the hy2 mutation of Arabidopsis thaliana, two dominant photomorphogenic mutants, shy1-1D and shy2-1D, for two genetic loci designated as SHY1 and SHY2 (suppressor of hy2 mutation) have been isolated. Both of these non-allelic, extragenic suppressor mutations of hy2 are located on chromosome 1 of the Arabidopsis genome. Both mutations suppress the elongated hypocotyl phenotype of hy2 by light-independent inhibition of hypocotyl growth as well as by increasing the effectiveness of light inhibition of hypocotyl elongation. The shy1-1D mutation is partially photomorphogenic in darkness with apical hook opening and reduced hypocotyl elongation. The shy2-1D mutant displays highly photomorphogenic characteristics in darkness such as true leaf development, cotyledon expansion and extremely reduced hypocotyl growth. In regard to hypocotyl elongation, however, the shy2-1D mutation is still light sensitive. Examination of red-far-red light responses shows that the shy1-1D mutation suppresses the hypocotyl elongation of the hy2 mutation effectively in red light but not effectively in far-red light. The shy2-1D suppresses hypocotyl elongation of the hy2 mutation effectively in both red and far-red light. Both mutations can also suppress the early-flowering phenotype of hy2 and have a distinct pleiotropic effect on leaf development such as upward leaf rolling. The data obtained suggest that SHY1 and SHY2 represent a novel class of components involved in the photomorphogenic pathways of Arabidopsis. This is the first report on the identification of dominant mutations in the light signal transduction pathway of plants.
通过筛选拟南芥hy2突变的抑制子突变体,分离出了两个位于SHY1和SHY2(hy2突变的抑制子)这两个基因座上的显性光形态建成突变体,即shy1-1D和shy2-1D。这两个hy2的非等位基因、基因外抑制子突变均位于拟南芥基因组的第1号染色体上。这两个突变通过非光依赖的下胚轴生长抑制以及增强光对下胚轴伸长的抑制作用,来抑制hy2下胚轴伸长的表型。shy1-1D突变在黑暗中具有部分光形态建成特征,如顶端弯钩打开和下胚轴伸长减少。shy2-1D突变体在黑暗中表现出高度光形态建成特征,如真叶发育、子叶扩展和下胚轴生长极度减少。然而,就下胚轴伸长而言,shy2-1D突变仍然对光敏感。对红光-远红光反应的检测表明,shy1-1D突变在红光下能有效抑制hy2的下胚轴伸长,但在远红光下效果不佳。shy2-1D在红光和远红光下均能有效抑制hy2的下胚轴伸长。这两个突变还能抑制hy2的早花表型,并对叶片发育有明显的多效性影响,如叶片向上卷曲。所获得的数据表明,SHY1和SHY2代表了拟南芥光形态建成途径中一类新的组分。这是关于植物光信号转导途径中显性突变鉴定的首次报道。