Department of Botany, University of Texas, Austin, Texas 78712.
Plant Physiol. 1973 Jan;51(1):26-30. doi: 10.1104/pp.51.1.26.
The ultrastructure of inner membrane-matrix mitochondria isolated from bean (Phaseolus vulgaris) shoots was examined in different metabolic states. Gross ultrastructural transformations analogous to the condensed-to-orthodox configurational changes reported in mammalian mitochondria are observed on transistion from nonrespiring to respiring metabolism. With the induction of oxidative phosphorylation, the particles remain in the orthodox configurational state. The reverse orthodox-to-condensed configurational changes observed in mammalian preparations does not occur. Optically monitored absorbancy studies with bean particles show a substrate-supported P(i)-induced swelling under the same conditions that induce the condensed-to-orthodox ultrastructural transformation. The swelling is associated with the net uptake of K(+) and P(i) as well as a small P(i)-induced respiratory stimulation. When phosphorylation is initiated with these swollen particles, the optically monitored volume remains unchanged. Thus a positive correlation exists between the ultrastructural configuration and the osmotic volume changes, which supports the conclusion that configurational changes reflect internal osmotic adjustments.
从菜豆(Phaseolus vulgaris)芽中分离出的内膜-基质线粒体的超微结构在不同代谢状态下进行了检查。从非呼吸代谢向呼吸代谢转变时,观察到与哺乳动物线粒体报告的浓缩到正统构象变化类似的大体超微结构转变。随着氧化磷酸化的诱导,颗粒仍保持在正统构象状态。在哺乳动物制剂中观察到的相反的正统到浓缩构象变化不会发生。用菜豆颗粒进行的光学监测吸收研究表明,在诱导浓缩到正统超微结构转变的相同条件下,颗粒在底物支持的 P(i)诱导下发生肿胀。肿胀与净摄取 K(+)和 P(i)以及小的 P(i)诱导的呼吸刺激有关。当用这些肿胀的颗粒启动磷酸化时,光学监测的体积保持不变。因此,超微结构构象与渗透体积变化之间存在正相关,这支持了构象变化反映内部渗透调节的结论。