Murphy D J, Stumpf P K
Department of Biochemistry and Biophysics, University of California, Davis, California 95616.
Plant Physiol. 1979 Feb;63(2):328-35. doi: 10.1104/pp.63.2.328.
Greening cucumber (Cucumis sativus L.) cotyledons exhibited dramatic increases in the ability to desaturate exogenously added [1-(14)C]oleic acid and [1-(14)C]linoleic acid within 2 to 3 hours of illumination. These increases were effectively inhibited by 10 micrograms per milliliter cycloheximide. Oleate desaturation remained at a high level in constant light for 5 to 6 days after induction and then declined by about 50%; when returned to the dark, the tissue showed a sharp decrease in conversion of [(14)C]oleate to [(14)C]linoleate. Linoleate desaturation reached a maximum about 15 hours after induction and declined immediately thereafter while the tissue still was in the light; after induction had peaked return of the tissue to the dark showed a dramatic fall of linoleate desaturation. The changes in desaturation were correlated with the conversion of the principal fatty acid in the etiolated cotyledons, linoleate, to alpha-linolenate, and with the assembly of the chlorophyll-containing photosynthetic membranes. The incorporation of [1-(14)C]acetate into lipids showed no significant light stimulation. The role of light in the regulation of certain aspects of plant metabolism during development is discussed.
绿化黄瓜(Cucumis sativus L.)子叶在光照2至3小时内,对外源添加的[1-(14)C]油酸和[1-(14)C]亚油酸的去饱和能力显著增加。这些增加被每毫升10微克的环己酰亚胺有效抑制。诱导后,油酸去饱和在持续光照下保持高水平5至6天,然后下降约50%;当回到黑暗中时,组织中[(14)C]油酸向[(14)C]亚油酸的转化急剧下降。亚油酸去饱和在诱导后约15小时达到最大值,此后立即下降,而此时组织仍处于光照下;诱导达到峰值后,组织回到黑暗中,亚油酸去饱和急剧下降。去饱和的变化与黄化子叶中主要脂肪酸亚油酸向α-亚麻酸的转化以及含叶绿素的光合膜的组装相关。[1-(14)C]乙酸掺入脂质中未显示出明显的光刺激。讨论了光在植物发育过程中某些代谢方面调节中的作用。