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REGULATION OF H+ EXTRUSION AND CYTOPLASMIC PH IN MAIZE ROOT TIPS ACCLIMATED TO A LOW-OXYGEN ENVIRONMENT

机译:低氧环境下玉米根尖中H +的表达和细胞质PH的调节

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摘要

We tested the hypothesis that H+ extrusion contributes to cytoplasmic pH regulation and tolerance of anoxia in maize (Zea mays) root tips. We studied root tips of whole seedlings that were acclimated to a low-oxygen environment by pretreatment in 3% (v/v) O-2. Acclimated root tips characteristically regulate cytoplasmic pH near neutrality and survive prolonged anoxia, whereas nonacclimated tips undergo severe cytoplasmic acidosis and die much more quickly. We show that the plasma membrane H+-ATPase can operate under anoxia and that net H+ extrusion increases when cytoplasmic pH falls. However, at an external pH near 6.0, H+ extrusion contributes little to cytoplasmic pH regulation. At more acidic external pH values, net H+ flux into root tips increases dramatically, leading to a decrease in cytoplasmic pH and reduced tolerance of anoxia. We present evidence that, under these conditions, H+ pumps are activated to partly offset acidosis due to H+ influx and, thereby, contribute to cytoplasmic pH regulation and tolerance of anoxia. The regulation of H+ extrusion under anoxia is discussed with respect to the acclimation response and mechanisms of intracellular pH regulation in aerobic plant cells. [References: 35]
机译:我们测试了H +挤出有助于玉米(Zea mays)根尖细胞质pH调节和耐缺氧性的假设。我们研究了通过在3%(v / v)O-2中进行预处理使低氧环境适应的整个幼苗的根尖。适应的根尖通常将细胞质的pH调节到接近中性,并在长时间的缺氧条件下存活,而未适应的根尖则经历严重的胞质酸中毒,死亡更快。我们显示,质膜H + -ATPase可以在缺氧下运行,并且当细胞质pH下降时净H +挤出量增加。但是,在接近6.0的外部pH值下,H +挤出对细胞质pH调节的贡献很小。在更酸性的外部pH值下,进入根尖的净H +通量急剧增加,导致细胞质pH降低和对缺氧的耐受性降低。我们提供的证据表明,在这些条件下,H +泵被激活以部分抵消由于H +涌入引起的酸中毒,从而有助于细胞质的pH调节和耐缺氧性。讨论了在缺氧条件下H +挤压的调节过程,以及需氧植物细胞内pH调节的适应性反应和机制。 [参考:35]

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