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Phosphatidylglycerol Degradation is One Crucial Reason for the Decrease of its Concentration in Wheat Leaves under Phosphate Deprivation Stress

机译:磷脂剥夺胁迫下小麦叶片中磷脂酰甘油的降解是其浓度降低的重要原因之一

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Phosphatidylglycerol (PG) is of crucial importance for the organization and function of thylakoid membranes. The reason for a decrease of PG concentration in plants under phosphate deprivation stress still remains unclear. By comparing PG concentration and PG hydrolase activity of wheat leaves at different developmental stages, we show that when the first leaves are fully developed, the PG concentration and PG hydrolase activity in phosphate-deficient plants were similar to those of the controls. With age, there was a significant decrease in PG concentration combined with an increase in PG hydrolase activity for phosphate-deficient plants. The close correlation between the decrease in PG concentration and the increase in PG hydrolases activities suggests that PG hydrolysis was the most important factor responsible for the decrease in its concentration. The main hydrolysis products of PG are phosphatidic acid (PA), diacylglycerol (DAG) and free fatty acid (FFA). The application of an inhibitor, n-butanol, which blocks the formation of PA via the PLD pathway, to the in vitro enzyme reaction mixture may restrict PA and DAG production. Neomycin sulfate, a PLC inhibitor, was shown to exhibit significant inhibition in DAG generation. These results suggest that both PLD and PLC were responsible for PG degradation in the leaves of phosphate-deficient wheat. The possible role of PLA activity for PG degradation is also discussed.
机译:磷脂酰甘油(PG)对于类囊体膜的组织和功能至关重要。磷酸盐剥夺胁迫下植物中PG浓度降低的原因仍然不清楚。通过比较不同发育阶段小麦叶片的PG浓度和PG水解酶活性,我们发现当第一片叶片完全发育时,缺磷植物中的PG浓度和PG水解酶活性与对照相似。随着年龄的增长,缺磷植株的PG浓度显着下降,而PG水解酶活性增加。 PG浓度降低与PG水解酶活性增加之间密切相关,表明PG水解是导致其浓度降低的最重要因素。 PG的主要水解产物是磷脂酸(PA),二酰基甘油(DAG)和游离脂肪酸(FFA)。将抑制剂(通过PLD途径阻止PA形成)的正丁醇应用于体外酶反应混合物可能会限制PA和DAG的产生。 PLC抑制剂硫酸新霉素被证明在DAG产生中表现出显着的抑制作用。这些结果表明,PLD和PLC均与缺磷小麦叶片中的PG降解有关。还讨论了PLA活性对PG降解的可能作用。

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