Tu S I, Cavanaugh J R, Boswell R T
U.S. Department of Agriculture, Agricultural Research Service, Eastern Regional Research Center, 600 East Mermaid Lane, Philadelphia, Pennsylvania 19118.
Plant Physiol. 1990 Jun;93(2):778-84. doi: 10.1104/pp.93.2.778.
The extent of phosphate uptake measured by the relative changes in cytoplasmic Pi, vacuolar Pi, ATP, glucose-6-phosphate, and UDPG was determined using in vivo(31)P nuclear magnetic resonance spectroscopy. Maize (Zea mays) root tips were perfused with a solution containing 0.5 or 1.0 millimolar phosphate at pH approximately 6.5 under different conditions. In the aerated state, phosphate uptake resulted in a significant increase (>80%) in vacuolar Pi, but cytoplasmic Pi only transiently increased by 10%. Under N(2), the cytoplasmic Pi increased approximately 150% which could be attributed to a large extent to the breakdown of ATP, sugar phosphates and UDPG. Vacuolar Pi increased but only to the extent of approximately 10% of that seen under aerobic conditions. 2-deoxyglucose pretreatment was utilized to decrease the level of cytoplasmic Pi. When pretreated with the 2-deoxyglucose, the excised maize roots absorbed phosphate from the perfusate with a significant increase in the cytoplasmic Pi. The increase could only be traced to external phosphate since the concentrations of other phosphorus containing species remained constant during the uptake period. With 2-deoxyglucose pretreatment, phosphate uptake under anaerobic conditions was substantially inhibited with only the vacuolar phosphate showing a slight increase. When roots were treated with carbonyl cyanide m-chlorophenyl hydrazone, no detectable Pi uptake was found. These results were used to propose a H(+)-ATPase related transport mechanism for phosphate uptake and compartmentation in corn root cells.
通过细胞质Pi、液泡Pi、ATP、葡萄糖-6-磷酸和UDPG的相对变化来测量磷酸盐摄取程度,采用体内³¹P核磁共振波谱法进行测定。在不同条件下,用pH约为6.5、含有0.5或1.0毫摩尔磷酸盐的溶液灌注玉米(Zea mays)根尖。在通气状态下,磷酸盐摄取导致液泡Pi显著增加(>80%),但细胞质Pi仅短暂增加10%。在N₂环境下,细胞质Pi增加约150%,这在很大程度上可归因于ATP、糖磷酸盐和UDPG的分解。液泡Pi增加,但仅达到有氧条件下所见增加量的约10%。利用2-脱氧葡萄糖预处理来降低细胞质Pi水平。用2-脱氧葡萄糖预处理后,切除的玉米根从灌注液中吸收磷酸盐,细胞质Pi显著增加。这种增加只能追溯到外部磷酸盐,因为在摄取期间其他含磷物质的浓度保持不变。经过2-脱氧葡萄糖预处理后,厌氧条件下的磷酸盐摄取受到显著抑制,只有液泡磷酸盐略有增加。当用羰基氰化物间氯苯腙处理根时,未发现可检测到的Pi摄取。这些结果被用于提出一种与H⁺-ATP酶相关的玉米根细胞中磷酸盐摄取和区室化的转运机制。