Department of Biology, Ben Gurion University of the Negev, Beer Sheva, Israel.
Plant Physiol. 1977 Feb;59(2):173-7. doi: 10.1104/pp.59.2.173.
Plants of the wilty tomato (Lycopersicum esculentum) mutant, flacca, and of the normal cultivar Rheinlands Ruhm growing under either "normal" or high humidity were used in this research. Under normal humidity, RNase activity was much higher in mutant plants in which abscisic acid (ABA) and water content were lower than in the normal plant. The mutant also contained less RNA and protein per cell and less soluble RNA relative to ribosomal RNA as compared with the normal genotype. In ABA-treated mutant plants, RNase activity decreased while RNA, protein, the ratio of soluble to ribosomal RNA and water content increased.Under high humidity, RNase activity in mutant plants was decreased, but was still somewhat higher than that in the normal plant, although water saturation deficit was equal in both plant types. Abscisic acid increased RNase activity in the mutant plants. The content of RNA and protein per cell was similar in both types, but the ratio of soluble to ribosomal RNA remained lower in the mutant. In ABA-treated mutant plants, although the content of DNA and RNA per fresh weight was similar to that of control mutant plants, the ratio of RNA to DNA decreased significantly. In addition, ABA caused an increase of the soluble to ribosomal RNA ratio toward the normal value in mutant plants.Contrary to ABA, kinetin increased RNase activity in the mutant under normal humidity and decreased it under high humidity.A similar incorporation of labeled uridine into RNA in normal, mutant, and ABA-treated mutant plants under normal humidity suggests that the difference between mutant and normal plants in respect to total, soluble, and ribosomal RNA results not from a different rate of RNA synthesis but from a different rate of RNA degradation, i.e. RNase activity.
本研究使用萎蔫番茄(Lycopersicum esculentum)突变体 flacca 和正常栽培品种 Rheinlands Ruhm 在正常或高湿度下生长的植株。在正常湿度下,ABA 和含水量较低的突变体植物中的 RNase 活性远高于正常植物。与正常基因型相比,突变体植物的每个细胞中 RNA 和蛋白质含量以及相对于核糖体 RNA 的可溶性 RNA 含量也较低。用 ABA 处理突变体植物后,RNase 活性降低,而 RNA、蛋白质、可溶性 RNA 与核糖体 RNA 的比值和含水量增加。在高湿度下,突变体植物中的 RNase 活性降低,但仍高于正常植物,尽管两种植物类型的水饱和亏缺相等。ABA 增加了突变体植物中的 RNase 活性。两种类型的细胞中 RNA 和蛋白质的含量相似,但突变体中的可溶性 RNA 与核糖体 RNA 的比值仍然较低。用 ABA 处理突变体植物后,尽管新鲜重量的 DNA 和 RNA 含量与对照突变体植物相似,但 RNA 与 DNA 的比值显著降低。此外,ABA 导致突变体植物中可溶性 RNA 与核糖体 RNA 的比值向正常水平增加。与 ABA 相反,在正常湿度下,细胞分裂素增加了突变体中的 RNase 活性,而在高湿度下则降低了活性。在正常湿度下,正常、突变和用 ABA 处理的突变体植物中标记尿嘧啶掺入 RNA 的情况相似,这表明突变体植物与正常植物之间在总 RNA、可溶性 RNA 和核糖体 RNA 方面的差异不是由于 RNA 合成速率不同,而是由于 RNA 降解速率不同,即 RNase 活性不同。