Ko K, Granell A, Bennett J, Cashmore A R
Department of Biology, University of Pennsylvania, Philadelphia 19104.
Plant Mol Biol. 1990 Feb;14(2):217-27. doi: 10.1007/BF00018562.
We have identified and isolated cDNA clones of the 33 kDa protein of the oxygen-evolving complex (OEE1) from Lycopersicon esculentum (tomato) and Arabidopsis thaliana and determined their nucleotide sequences. The cDNA clones and antibodies prepared against OEE1 were used as probes to examine the expression of the oee1 gene with respect to regulation by light, organ specificity, and ripening stage of tomato fruit. The steady-state mRNA level is regulated by light, being present in light-grown plants and absent in etiolated seedlings. The oee1 transcripts that accumulate during growth in the light were reduced to non-detectable or low levels by a 3-day dark treatment. The oee1 gene also exhibits differential expression in various organs of the tomato plant. Steady-state mRNA level was highest in immature leaves and absent in roots while the protein was most abundant in mature leaves and absent in roots. During tomato fruit ripening oee1 mRNA decreases to a low level in the pericarp while the protein level decreases below detection. The expression of oee1 appears to be under the control of a complex mechanism regulating both the amount of RNA and its translation.
我们已从番茄(Lycopersicon esculentum)和拟南芥(Arabidopsis thaliana)中鉴定并分离出了光合放氧复合体(OEE1)中33 kDa蛋白的cDNA克隆,并测定了它们的核苷酸序列。以这些cDNA克隆以及针对OEE1制备的抗体作为探针,来检测oee1基因在光照调控、器官特异性以及番茄果实成熟阶段方面的表达情况。稳态mRNA水平受光照调控,在光照生长的植株中存在,而在黄化苗中不存在。经3天黑暗处理后,在光照下生长过程中积累的oee1转录本减少到无法检测或低水平。oee1基因在番茄植株的各个器官中也表现出差异表达。稳态mRNA水平在未成熟叶片中最高,在根中不存在,而蛋白质在成熟叶片中最丰富,在根中不存在。在番茄果实成熟过程中,oee1 mRNA在果皮中降至低水平,而蛋白质水平降至检测不到的程度。oee1的表达似乎受一种复杂机制的控制,该机制同时调节RNA的量及其翻译。