Waksman Institute of Microbiology, Rutgers University, P.O. Box 759, Piscataway, New Jersey 08854.
Plant Physiol. 1978 Apr;61(4):624-5. doi: 10.1104/pp.61.4.624.
The relationships among Mg, growth, chlorophyll synthesis, and cytoplasmic polysome content were studied in Euglena gracilis grown in different levels of the metal. At all levels of magnesium from 20 to 1,600 mumolar, both protein and chlorophyll are formed with exponential kinetics. The apparent rates of synthesis and final yields of both components are greater at higher levels of Mg, but the rate of chlorophyll synthesis always exceeds the rate of protein formation; i.e. the most severely deficient cells contain proportionally more chlorophyll than the sufficient cells. Cytoplasmic polysomes isolated from Mg-deficient Euglena are indistinguishable from those isolated from control cells. We conclude that decreased rates of protein synthesis occur prior to and possibly are causal to decreased rates of chlorophyll synthesis, but that the mechanism of this inhibition remains unclear.
在不同镁水平下培养的绿色眼虫中,研究了镁、生长、叶绿素合成和细胞质多核糖体含量之间的关系。在 20 至 1600 微摩尔的所有镁水平下,蛋白质和叶绿素都是以指数动力学形成的。在较高的镁水平下,两种成分的合成的表观速率和最终产量都较大,但叶绿素合成的速率始终超过蛋白质形成的速率;也就是说,最严重缺乏镁的细胞比充足的细胞含有更多比例的叶绿素。从镁缺乏的眼虫中分离出的细胞质多核糖体与从对照细胞中分离出的多核糖体没有区别。我们的结论是,蛋白质合成速率的降低先于并可能是导致叶绿素合成速率降低的原因,但这种抑制的机制尚不清楚。