Dijkwel P. P., Kock PAM., Bezemer R., Weisbeek P. J., Smeekens SCM.
Department of Molecular Cell Biology, University of Utrecht, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Plant Physiol. 1996 Feb;110(2):455-463. doi: 10.1104/pp.110.2.455.
The plastocyanin (PC) gene of Arabidopsis thaliana is activated independently of light during early seedling development. In etiolated seedlings, PC mRNA levels increase transiently and a maximum dark level is reached after 2 d of growth in darkness. In etiolated transgenic seedlings carrying a chimeric PC-promoter: luciferase fusion gene, luciferase activity is similarly increased after 2 d of growth. The transient increase in PC mRNA and luciferase activity levels can be repressed by sucrose. Nonmetabolizable sugars and polyethylene glycol do not have a major effect on PC gene expression. Also, light-grown seedlings show a similar transient and sucrose-sensitive increase in PC mRNA levels and luciferase activity, as in dark-grown seedlings, but here expression levels are 15- fold higher. These findings suggest the presence of a sucrose-sensitive, developmentally controlled expression mechanism that operates independently of light.
拟南芥的质体蓝素(PC)基因在幼苗早期发育过程中可独立于光照被激活。在黄化幼苗中,PC mRNA水平短暂升高,黑暗中生长2天后达到最大暗水平。在携带嵌合PC启动子:荧光素酶融合基因的黄化转基因幼苗中,生长2天后荧光素酶活性同样增加。蔗糖可抑制PC mRNA和荧光素酶活性水平的短暂升高。不可代谢的糖和聚乙二醇对PC基因表达没有主要影响。此外,与黑暗生长的幼苗一样,光照生长的幼苗在PC mRNA水平和荧光素酶活性上也表现出类似的短暂且对蔗糖敏感的增加,但这里的表达水平要高15倍。这些发现表明存在一种独立于光照运作的、对蔗糖敏感且受发育调控的表达机制。