Chemistry and Biology Research Institute, Research Branch, Agriculture Canada, Ottawa, Ontario, K1A 0C6, Canada.
Plant Physiol. 1975 Nov;56(5):703-6. doi: 10.1104/pp.56.5.703.
The effect of temperature on respiration of mitochondria and tissue segments from three wheat (Triticum aestivum L.) and one rye (Secale cereale L.) cultivar grown at 2 and 24 C has been examined. Discontinuities in Arrhenius plots of respiratory activity against temperature were observed for mitochondria and tissue segments from seedlings grown at both temperatures. The rates of respiration decreased abruptly below the transition temperatures, resulting in increased energy of activation values for respiration. Transition temperatures were observed from 6 to 10 C during tissue segment respiration, and from 10 to 14 C during respiration by isolated mitochondria. Respiratory control and efficiency of phosphorylation were not affected markedly by either reaction temperature or growth temperature of the seedlings. No correlation was observed between the cold hardiness of the cultivars and the temperature at which structural transitions occurred in the mitochondria. Dry matter content of the seedlings increased markedly during growth at 2 C, but no appreciable changes in the levels of mitochondrial protein were observed. The results support the view that changes other than fatty acid unsaturation are involved in the abrupt change in mitochondrial membrane properties at low temperature.
已研究了在 2 和 24°C 下生长的三种小麦(Triticum aestivum L.)和一种黑麦(Secale cereale L.)品种的线粒体和组织片段的呼吸作用对温度的影响。在两个温度下生长的幼苗的线粒体和组织片段的呼吸活性对温度的 Arrhenius 图中观察到不连续。在低于转变温度时,呼吸速率突然下降,导致呼吸的活化能值增加。在组织片段呼吸过程中,观察到转变温度为 6 至 10°C,在分离的线粒体呼吸过程中,转变温度为 10 至 14°C。呼吸控制和磷酸化效率均不受反应温度或幼苗生长温度的明显影响。品种的耐寒性与线粒体中结构转变发生的温度之间未观察到相关性。在 2°C 下生长时,幼苗的干物质含量明显增加,但线粒体蛋白水平没有观察到明显变化。结果支持这样一种观点,即在低温下线粒体膜性质的突然变化涉及除脂肪酸不饱和以外的其他变化。