Croxdale J G
Department of Botany, University of Wisconsin, Madison, Wisconsin 53706.
Plant Physiol. 1983 Sep;73(1):66-70. doi: 10.1104/pp.73.1.66.
Phosphofructokinase (EC 2.7.1.11) activity in the apical meristem, leaf primordia, and leaf tissues (epidermis, mesophyll, xylem, phloem) of Dianthus chinensis L. was determined. These data show that activity on a dry weight per hour basis was about 1000 millimoles in the apical meristem and two youngest primordia, and declined to 150 millimoles in the mesophyll of the sixth leaf pair and to 80 millimoles in older leaves just expanded out of the bud. On a cell per hour basis, the activity increased from 75 femtomoles in cells of the apical meristem and leaf primordia to 1.5 picomoles in the mesophyll of the sixth leaf pair. However, on a cell volume (cubic micrometers) per hour basis, the opposite was true. The results indicate that (a) on a dry weight or unit cell volume basis the capacity for glycolysis declines during leaf development and that (b) within the apical meristem, incipient primordia are not associated with phosphofructokinase activity greater than adjacent areas of the meristem. In comparison to glucose-6-phosphate dehydrogenase activity previously measured in equivalent samples (Croxdale, Outlaw 1983 Planta 157: 289-297), the capacity of the glycolytic pathway is greater than the pentose phosphate pathway in the apical meristem and two youngest pair of primordia. By the time leaves are six plastochrons old, the capacity for carbohydrate oxidation by the hexose monophosphate shunt exceeds that by glycolysis.
测定了石竹顶端分生组织、叶原基和叶片组织(表皮、叶肉、木质部、韧皮部)中的磷酸果糖激酶(EC 2.7.1.11)活性。这些数据表明,以每小时干重计,顶端分生组织和两个最幼嫩叶原基中的活性约为1000微摩尔,在第六对叶片的叶肉中降至150微摩尔,在刚从芽中展开的较老叶片中降至80微摩尔。以每小时每个细胞计,活性从顶端分生组织和叶原基细胞中的75飞摩尔增加到第六对叶片叶肉中的1.5皮摩尔。然而,以每小时每个细胞体积(立方微米)计,情况则相反。结果表明:(a)以干重或单位细胞体积计,糖酵解能力在叶片发育过程中下降;(b)在顶端分生组织内,初期叶原基的磷酸果糖激酶活性并不高于分生组织的相邻区域。与先前在等效样品中测得的葡萄糖-6-磷酸脱氢酶活性(Croxdale,Outlaw 1983 Planta 157:289 - 297)相比,在顶端分生组织和最幼嫩的两对叶原基中,糖酵解途径的能力大于戊糖磷酸途径。到叶片有六个叶龄时,通过己糖单磷酸分流进行的碳水化合物氧化能力超过了通过糖酵解的能力。