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Citrate Transporters Play a Critical Role in Aluminium-stimulated Citrate Efflux in Rice Bean (Vigna umbellata) Roots

机译:柠檬酸盐转运蛋白在稻米(Vigna umbellata)根中铝刺激的柠檬酸盐流出中起关键作用。

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摘要

• Background and Aims Aluminium (Al) stimulates the efflux of citrate from apices of rice bean (Vigna umbellata) roots. This response is delayed at least 3 h when roots are exposed to 50 µm Al, indicating that some inducible processes leading to citrate efflux are involved. The physiological bases responsible for the delayed response were examined here.• Methods The effects of several antagonists of anion channels and citrate carriers, and of the protein synthesis inhibitor, cycloheximide (CHM) on Al-stimulated citrate efflux and/or citrate content were examined by high-pressure liquid chromatography (HPLC) or an enzymatic method.• Key Results Both anion channel inhibitors and citrate carrier inhibitors can inhibit Al-stimulated citrate efflux, with anthracene-9-carboxylic acid (A-9-C, an anion channel inhibitor) and phenylisothiocyanate (PI, a citrate carrier inhibitor) the most effective inhibitors. A 6 h pulse of 50 µm Al induced a significant increase of citrate content in root apices and release of citrate. However, the increase in citrate content preceded the efflux. Furthermore, the release of citrate stimulated by the pulse treatment was inhibited by both A-9-C and PI, indicating the importance of the citrate carrier on the mitochondrial membrane and the anion channel on the plasma membrane for the Al-stimulated citrate efflux. CHM (20 µm) also significantly inhibited Al-stimulated citrate efflux, confirming that de novo protein synthesis is required for Al-stimulated citrate efflux.• Conclusions These results indicate that the activation of genes possibly encoding citrate transporters plays a critical role in Al-stimulated citrate efflux.
机译:•背景和目的铝(Al)刺激稻豆(Vigna umbellata)根尖的柠檬酸盐外流。当根暴露于50μmAl时,该响应至少延迟3 h,这表明涉及导致柠檬酸盐外流的某些诱导过程。在这里检查了造成延迟反应的生理基础。•方法检查了阴离子通道和柠檬酸盐载体的几种拮抗剂以及蛋白质合成抑制剂环己酰亚胺(CHM)对Al刺激的柠檬酸盐外排和/或柠檬酸盐含量的影响。 •关键结果阴离子通道抑制剂和柠檬酸盐载体抑制剂均可通过蒽9-羧酸(A-9-C,阴离子通道)抑制Al刺激的柠檬酸盐外流。抑制剂)和苯基异硫氰酸酯(PI,柠檬酸盐载体抑制剂)是最有效的抑制剂。 6μh脉冲的50μmAl引起根尖中柠檬酸盐含量的显着增加和柠檬酸盐的释放。但是,柠檬酸盐含量的增加先于流出。此外,A-9-C和PI均抑制了脉冲处理刺激的柠檬酸盐的释放,这表明线粒体膜上的柠檬酸盐载体和质膜上的阴离子通道对于Al刺激的柠檬酸盐外排很重要。 CHM(20μm)还显着抑制Al刺激的柠檬酸盐外排,这证实了Al刺激的柠檬酸盐外排需要从头合成蛋白质。•结论这些结果表明,可能编码柠檬酸盐转运蛋白的基因的激活在Al-刺激的柠檬酸中起关键作用。刺激柠檬酸盐外流。

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