Biotechnology Group, Chevron Chemical Company, Richmond, California 94804.
Plant Physiol. 1985 Apr;77(4):1013-5. doi: 10.1104/pp.77.4.1013.
The kinetics and inhibitor specificities of phosphate transport across the plasma membrane of wheat leaf mesophyll protoplasts have been examined. Studies were also carried out on the effects of light and pH on phosphate transport and the plasma membrane electropotential. At pH 5.8 (30 degrees C), protoplasts accumulated phosphate at the rate of 3.9 +/- 0.2 nanomoles per milligram protein per hour. Phosphate uptake rates and inhibitor specificities for the leaf cell plasma membrane phosphate transporter were qualitatively similar to those observed with root protoplasts. Neither picrylsulfonic acid, or p-chloromercuribenzene sulfonate affected phosphate uptake significantly at 0.1 millimolar. Of all compounds tested, carbonyl cyanide-p-trifluoromethoxy phenylhydrazone was the most effective inhibitor of phosphate uptake (60% at 0.1 millimolar). Tribenzylphosphate inhibited uptake by 34% while dibenzylphosphate had no effect. The plasma membrane electropotential was found to be -37 +/- 3 millivolts. Initiation of photosynthesis lowered the membrane potential to -39 +/- 3 millivolts. Inhibition of phosphate uptake by 34% with the substrate analog tribenzylphosphate resulted in a measured membrane potential of -33 +/- 3 millivolts. These changes in potential were not significant at the 5% probability level. Phosphate uptake rates remained constant under photosynthetic and nonphotosynthetic conditions. The utility of tribenzylphosphate as an inhibitor in plant systems is demonstrated.
已经研究了小麦叶片质体细胞原生质体质膜中磷酸盐的转运动力学和抑制剂特异性。还研究了光和 pH 值对磷酸盐转运和质膜电动势的影响。在 pH 值 5.8(30°C)下,原生质体以每毫克蛋白质每小时 3.9 ± 0.2 纳摩尔的速度积累磷酸盐。叶片细胞质膜磷酸盐转运体的磷酸盐摄取率和抑制剂特异性与根原生质体观察到的相似。在 0.1 毫摩尔时,对氯汞苯甲酸或 picrylsulfonic 酸均未显著影响磷酸盐摄取。在所测试的所有化合物中,羰基氰化物-p-三氟甲氧基苯腙是磷酸盐摄取的最有效抑制剂(0.1 毫摩尔时为 60%)。三苄基膦酸盐抑制摄取 34%,而二苄基膦酸盐则没有影响。发现质膜电动势为-37 ± 3 毫伏。光合作用的启动将膜电位降低至-39 ± 3 毫伏。用底物类似物三苄基膦酸盐抑制 34%的磷酸盐摄取导致测量的膜电位为-33 ± 3 毫伏。这些电位变化在 5%概率水平上并不显著。在光合和非光合条件下,磷酸盐摄取率保持不变。三苄基膦酸盐在植物系统中作为抑制剂的用途得到了证明。