Department of Crop Science, Guelph, Ontario N1G 2W1 Canada.
Plant Physiol. 1984 Nov;76(3):759-62. doi: 10.1104/pp.76.3.759.
Axes of soybean seeds are tolerant to dehydration at 6 hours of imbibition, but susceptible to dehydration injury if dried at 36 hours of imbibition. Smooth microsomal membranes were isolated from axes imbibed for 6 hours (dehydration tolerant state) and 36 hours (dehydration susceptible state) before and after dehydration treatment. The phase properties and the lipid composition of the membrane fraction were investigated. Wide angle x-ray diffraction patterns of microsomal membranes from axes imbibed for 6 or 36 hours indicated a liquid-crystalline to gel phase transition at approximately 7 degrees C. Membranes from axes dehydrated at 6 or 36 hours of imbibition and rehydrated for 2 hours exhibited a phase transition at 7 degrees C and 47 degrees C, respectively. Changes in fatty acid saturation did not account for the changes in phase properties. However, the increased phase transition temperature of the membranes from dehydration injured axes was associated with an increase in free fatty acid:phospholipid molar ratio and a decrease in phospholipid:sterol ratio. These results suggests that dehydration prompted a deesterification of the linkage between glycerol and fatty acid side chains of the phospholipid molecules in the membrane. The resultant increase in free fatty acid content in the membrane is thought to alter the fluidity and phase properties of the membrane and contribute to dehydration injury.
大豆种子的胚轴在吸水 6 小时后对脱水有耐受性,但在吸水 36 小时后如果干燥则容易受到脱水伤害。在脱水处理前后,从吸水 6 小时(脱水耐受状态)和 36 小时(脱水敏感状态)的胚轴中分离出光滑的微粒体膜。研究了膜部分的相性质和脂质组成。吸水 6 或 36 小时的胚轴的微粒体膜的广角 X 射线衍射图谱表明,在大约 7°C 时,液晶相到凝胶相发生转变。在吸水 6 或 36 小时后脱水并再水合 2 小时的胚轴的膜在 7°C 和 47°C 处分别表现出相转变。脂肪酸饱和度的变化不能解释相性质的变化。然而,脱水损伤胚轴的膜的相变温度升高与游离脂肪酸:磷脂摩尔比的增加和磷脂:固醇比的降低有关。这些结果表明,脱水促使磷脂分子中甘油和脂肪酸侧链之间的酯键去酯化。膜中游离脂肪酸含量的增加被认为会改变膜的流动性和相性质,并导致脱水伤害。