Gaillard C, Dufaud A, Tommasini R, Kreuz K, Amrhein N, Martinoia E
Institut de Biologie de Beau Site Unité Associée CNRS 574, Université de Poitiers, France.
FEBS Lett. 1994 Sep 26;352(2):219-21. doi: 10.1016/0014-5793(94)00961-9.
In plants potentially toxic compounds are ultimately deposited in the large central vacuole. In this report we show that isolated barley mesophyll vacuoles take up the glucoside conjugate of the herbicide derivate [5-hydroxyphenyl]primisulfuron. Transport is stimulated by Mg-ATP and is distinct from that previously described for glutathione conjugates. Treatment of barley with different herbicide antidotes (safeners) revealed that the safener cloquintocet-mexyl doubles the vacuolar transport activities for both the glutathione and glucoside conjugates. Stimulation of the uptake of the metolachlor-glutathione conjugate was the result of an increased uptake velocity whereas the Km remained unaltered, suggesting that the higher activity was due to a higher expression of the transporter. These results indicate that modulation of vacuolar transport activities are an integral part of the detoxification mechanism of plants.
在植物中,潜在的有毒化合物最终会沉积在大型中央液泡中。在本报告中,我们表明,分离出的大麦叶肉细胞液泡能够摄取除草剂衍生物[5-羟基苯基]丙酯磺隆的葡糖苷共轭物。Mg-ATP可刺激这种转运,且该转运与先前描述的谷胱甘肽共轭物的转运不同。用不同的除草剂解毒剂(安全剂)处理大麦后发现,安全剂异恶唑草酮可使谷胱甘肽和葡糖苷共轭物的液泡转运活性提高一倍。甲草胺-谷胱甘肽共轭物摄取的刺激是摄取速度增加的结果,而Km保持不变,这表明较高的活性是由于转运蛋白的更高表达。这些结果表明,液泡转运活性的调节是植物解毒机制的一个组成部分。