Kellmann J W, Pichersky E, Piechulla B
Institut für Biochemie der Pflanze, Göttingen, W. Germany.
Photochem Photobiol. 1990 Jul;52(1):35-41. doi: 10.1111/j.1751-1097.1990.tb01752.x.
Steady-state mRNA levels of the chlorophyll a/b binding (cab) proteins oscillate substantially during a diurnal cycle in tomato leaves. This accumulation pattern is also observed in complete darkness, supporting the hypothesis that the expression of cab genes is at least partially regulated by an endogenous rhythm ("biological clock"). The amplitude of the cab mRNA accumulation is dependent on the duration of illumination and the circadian phase in which light was applied to the tomato plants. These results at the molecular level correlate well with the photoperiodic phenomenon. The characterization of the expression pattern of individual members of the cab gene family was attempted. Distinct primer extension products were detected using specific oligonucleotides homologous to the cab 1, cab 4, cab 5 and cab 8 genes. Based on this analysis the transcription start sites of these genes were determined to be between position -70 and -9 upstream of the ATG codon. During the diurnal cycle the cab 1 and cab 4 genes exhibit the same expression pattern; no transcripts detected at 3 and 6 a.m., maximum mRNA levels were measured at noon and decreasing levels in the afternoon.
在番茄叶片的昼夜周期中,叶绿素a/b结合(cab)蛋白的稳态mRNA水平会大幅波动。在完全黑暗的环境中也观察到这种积累模式,这支持了cab基因的表达至少部分受内源性节律(“生物钟”)调控的假说。cab mRNA积累的幅度取决于光照时长以及向番茄植株施加光照时的昼夜节律阶段。这些分子水平的结果与光周期现象密切相关。研究人员试图对cab基因家族单个成员的表达模式进行表征。使用与cab 1、cab 4、cab 5和cab 8基因同源的特异性寡核苷酸检测到了不同的引物延伸产物。基于此分析,确定这些基因的转录起始位点位于ATG密码子上游-70至-9位之间。在昼夜周期中,cab 1和cab 4基因表现出相同的表达模式;凌晨3点和6点未检测到转录本,中午测得mRNA水平最高,下午水平下降。