Clack T, Mathews S, Sharrock R A
Department of Biology, Montana State University, Bozeman 59717.
Plant Mol Biol. 1994 Jun;25(3):413-27. doi: 10.1007/BF00043870.
Two novel Arabidopsis phytochrome genes, PHYD and PHYE, are described and evidence is presented that, together with the previously described PHYA, PHYB and PHYC genes, the primary structures of the complete phytochrome family of this plant are now known. The PHYD- and PHYE-encoded proteins are of similar size to the other phytochrome apoproteins and show sequence similarity along their entire lengths. Hence, red/far-red light sensing in higher plants is mediated by a diverse but structurally conserved group of soluble photoreceptors. The proteins encoded by the PHYD and PHYE genes are more closely related to phytochrome B than to phytochromes A or C, indicating that the evolution of the PHY gene family in Arabidopsis includes an expansion of a PHYB-related subgroup. The PHYB and PHYD phytochromes show greater than 80% amino acid sequence identity but the phenotypes of phyB null mutants demonstrate that these receptor forms are not functionally redundant. The five PHY mRNAs are, in general, expressed constitutively under varying light conditions, in different plant organs, and over the life cycle of the plant. These observations provide the first description of the structure and expression of a complete phytochrome family in a higher plant.
本文描述了两个新的拟南芥光敏色素基因PHYD和PHYE,并提供证据表明,连同先前描述的PHYA、PHYB和PHYC基因,现在已了解该植物完整光敏色素家族的一级结构。PHYD和PHYE编码的蛋白质与其他光敏色素脱辅基蛋白大小相似,并且在其全长范围内显示出序列相似性。因此,高等植物中红/远红光感知是由一组多样但结构保守的可溶性光感受器介导的。PHYD和PHYE基因编码的蛋白质与光敏色素B的关系比与光敏色素A或C的关系更密切,这表明拟南芥中PHY基因家族的进化包括一个与PHYB相关的亚组的扩展。PHYB和PHYD光敏色素显示出大于80%的氨基酸序列同一性,但phyB缺失突变体的表型表明这些受体形式在功能上并非冗余。这五个PHY mRNA通常在不同的光照条件下、在不同的植物器官中以及在植物的生命周期中组成性表达。这些观察结果首次描述了高等植物中完整光敏色素家族的结构和表达。