Sacher J A
Department of Botany, California State College, Los Angeles, California.
Plant Physiol. 1966 Apr;41(4):701-8. doi: 10.1104/pp.41.4.701.
Changes in free space of banana tissue during ripening were measured using radioisotopes. Free space increased significantly about 44 hours before the onset of, and rose exponentially during the respiratory climacteric. The increase in free space indicates a progressive increase in the proportion of cells which becomes completely permeable to solutes in the ambient solution by simple diffusion. At the respiratory peak the tissue was essentially 100% free space to mannitol, sucrose, fructose and chloride.The capacity for active uptake of solutes declined about one day before the onset of the respiratory rise and fell to a very low level by the respiratory peak.There was no change in the level of protein or amino acids during ripening. Assays of tissue sections before and after washing indicated an increased rate of leakage of amino acids during ripening.Studies of incorporation of 3 concentrations of (14)C-labeled leucine and phenylalanine indicated marked changes in the size and specific activity of the amino acid pool at the site of protein synthesis just prior to and during the climacteric rise, due to a diffusive mixing of the labeled substrate with the previously sequestered endogenous, unlabeled pool of substrate. The use of a high concentration of exogenous substrate (above saturation for uptake) resulted in an apparent constant specific activity of the metabolic pool through the ripening period. Data from these studies indicated a decline in amino acid incorporation during the climacteric.It was concluded that the initiation of permeability changes marks the onset of senescence in banana. The causative relations between alterations in permeability, the respiratory rise and other chemical changes attending fruit ripening are discussed.
利用放射性同位素测定了香蕉组织在成熟过程中自由空间的变化。自由空间在呼吸跃变开始前约44小时显著增加,并在呼吸跃变期间呈指数上升。自由空间的增加表明,通过简单扩散,对环境溶液中溶质完全通透的细胞比例逐渐增加。在呼吸峰值时,组织对甘露醇、蔗糖、果糖和氯离子的自由空间基本上达到100%。溶质的主动吸收能力在呼吸上升开始前约一天下降,并在呼吸峰值时降至非常低的水平。成熟过程中蛋白质或氨基酸水平没有变化。对洗涤前后组织切片的分析表明,成熟过程中氨基酸的泄漏率增加。对3种浓度的(14)C标记亮氨酸和苯丙氨酸掺入情况的研究表明,在跃变前和跃变期间,蛋白质合成部位氨基酸库的大小和比活性发生了显著变化,这是由于标记底物与先前隔离的内源性未标记底物库的扩散混合所致。使用高浓度的外源底物(高于摄取饱和浓度)导致整个成熟期间代谢库的比活性明显恒定。这些研究的数据表明,跃变期间氨基酸掺入减少。得出的结论是,通透性变化的开始标志着香蕉衰老的开始。讨论了通透性改变、呼吸上升以及果实成熟伴随的其他化学变化之间的因果关系。