Rodermel S R, Abbott M S, Bogorad L
Biological Laboratories, Harvard University, Cambridge, Massachusetts 02138.
Cell. 1988 Nov 18;55(4):673-81. doi: 10.1016/0092-8674(88)90226-7.
The biosynthesis of ribulose bisphosphate carboxylase (RUBISCO) provides a model system for studying the coordination of nuclear and organelle gene expression, since this abundantly transcribed and expressed chloroplast enzyme is composed of small (SS) and large subunits (LS) encoded by a nuclear multigene family and a single chloroplast gene, respectively. We have tested the possibility that SS mRNA or protein levels affect LS mRNA amounts or LS protein production and accumulation. We find that expression of antisense DNA sequences for the SS in transgenic tobacco plants drastically reduces the accumulation of SS mRNA and SS protein. These changes are accompanied by corresponding reductions of LS protein but not LS mRNA amounts; accumulation of the LS protein appears to be regulated by translational and posttranslational factors. We also find that the transgenic plants display striking variations in growth that are correlated with antisense gene dosage.
核酮糖二磷酸羧化酶(RUBISCO)的生物合成提供了一个研究核基因与细胞器基因表达协调作用的模型系统,因为这种大量转录和表达的叶绿体酶由分别由一个核多基因家族和一个叶绿体基因编码的小亚基(SS)和大亚基(LS)组成。我们测试了SS mRNA或蛋白质水平是否会影响LS mRNA的量或LS蛋白质的产生和积累。我们发现,转基因烟草植株中针对SS的反义DNA序列的表达大幅降低了SS mRNA和SS蛋白质的积累。这些变化伴随着LS蛋白质相应减少,但LS mRNA的量并未减少;LS蛋白质的积累似乎受翻译和翻译后因子调控。我们还发现,转基因植株在生长方面表现出显著差异,且这些差异与反义基因剂量相关。