ARC Research Group on Photosynthesis, Department of Botany, University of Sheffield, S10 2TN, Sheffield, UK.
Planta. 1984 Nov;161(6):525-30. doi: 10.1007/BF00407084.
An analysis of the compartmentation and fluxes of inorganic phosphate in isolated cladophyll cells from Asparagus officinalis was made in parallel with an ultrastructural study. The elution pattern of labelled inorganic phosphate (which indicates that the asparagus cells are behaving as a system of three compartments in series) was used to quantify the fluxes between the vacuole, cytoplasm and free space. A relaxation time of 198 min was calculated for inorganic phosphate exchange between the vacuole and cytoplasm. It is, therefore, suggested that the vacuole serves to buffer the cytoplasmic inorganic phosphate concentration in the long term. However, in the short term, exchange with the vacuole will not appreciably affect the cytoplasmic inorganic phosphate concentration and thus the partitioning of photosynthetically fixed carbon.
对芦笋离体卷曲叶细胞的无机磷酸盐区室化和流动进行了分析,并结合超微结构研究进行了分析。标记的无机磷酸盐洗脱模式(表明芦笋细胞作为串联的三个区室系统在运作)被用来量化液泡、细胞质和自由空间之间的流动。计算出无机磷酸盐在液泡和细胞质之间交换的弛豫时间为 198 分钟。因此,建议液泡在长期内缓冲细胞质中的无机磷酸盐浓度。然而,在短期内,与液泡的交换不会显著影响细胞质中的无机磷酸盐浓度,从而影响光合作用固定碳的分配。