Wei N, Deng X W
Department of Biology, Yale University, New Haven, Connecticut 06511.
Plant Cell. 1992 Dec;4(12):1507-18. doi: 10.1105/tpc.4.12.1507.
We report here the identification and characterization of a new Arabidopsis light-regulatory locus, COP9, mutation that leads to a constitutive photomorphogenic phenotype. Dark-grown cop9 seedlings exhibit many morphological characteristics of light-grown seedlings, including short hypocotyls and open and enlarged cotyledons with cell-type and chloroplast differentiation. Furthermore, the cop9 mutation leads to high-level expression of light-inducible genes in the absence of light, probably by altering the promoter activities of these genes. These properties imply that the mutation in the COP9 locus uncouples the light/dark signals from morphogenesis and light-regulated gene expression. In addition, light-grown cop9 mutants are severely dwarfed and are unable to reach maturation and flowering. This adult-lethal phenotype indicates that the COP9 locus also plays a critical role for normal development of the light-grown plant. Similar to cop1 mutants, but not det1, the cop9 mutants show (1) no effect on the phytochrome control of seed germination and (2) deficiency in the dark-adaptive change of expression of light-regulated genes. Our results suggest that the cop9 and cop1 mutations result in the same range of phenotypes and therefore COP9 and COP1 loci may encode closely related components in the same regulatory pathway.
我们在此报告一个新的拟南芥光调节基因座COP9的鉴定和特征,其突变导致组成型光形态建成表型。在黑暗中生长的cop9幼苗表现出许多在光照下生长的幼苗的形态特征,包括短的下胚轴以及开放且增大的子叶,伴有细胞类型和叶绿体分化。此外,cop9突变可能通过改变这些基因的启动子活性,导致在没有光照的情况下光诱导基因的高水平表达。这些特性表明,COP9基因座的突变使光/暗信号与形态发生和光调节基因表达解偶联。此外,在光照下生长的cop9突变体严重矮化,无法成熟和开花。这种成年致死表型表明,COP9基因座对光照下生长的植物的正常发育也起着关键作用。与cop1突变体相似,但与det1不同,cop9突变体表现出:(1)对种子萌发的光敏色素控制没有影响;(2)光调节基因表达的暗适应变化存在缺陷。我们的结果表明,cop9和cop1突变导致相同范围的表型,因此COP9和COP1基因座可能在同一调节途径中编码密切相关的成分。