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Dependence of Ethanolic Fermentation Cytoplasmic pH Regulation and Viability on the Activity of Alcohol Dehydrogenase in Hypoxic Maize Root Tips

机译:低氧玉米根尖乙醇酸发酵细胞质pH调节和生存能力对酒精脱氢酶活性的依赖性。

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摘要

We examined the role of alcohol dehydrogenase (ADH) in the metabolism and survival of hypoxic maize (Zea mays L.) root tips. The dependence of the rate of ethanolic fermentation, cytoplasmic pH, and viability on the activity of ADH in maize root tips during extreme hypoxia was determined. Maize lines with ADH activities differing over about a 200-fold range were studied. Effects of genetic background were controlled by comparing pairs of F4 progeny of crosses between mutant (low ADH activity) and reference inbred lines. The capacity of hypoxic root tips to perform ethanolic fermentation exhibited a dependence on ADH activity only at activities found in Adh 1 nulls. The ability of maize root tips to withstand prolonged and extreme hypoxia was like-wise independent of ADH activity, except at the lowest activities. Root tips that exhibited lower tolerance of hypoxia had more acidic cytoplasm during extreme hypoxia. We conclude that the activity of ADH in normal maize root tips does not limit the capacity for energy production via fermentation, and does not determine viability under extreme hypoxia. The significance of the induction of ADH activity in plants by hypoxia is discussed.
机译:我们研究了乙醇脱氢酶(ADH)在低氧玉米(Zea mays L.)根尖的代谢和存活中的作用。确定了极端低氧条件下乙醇发酵速率,细胞质pH和活力对玉米根尖中ADH活性的依赖性。研究了具有ADH活性差异超过200倍的玉米品系。遗传背景的影响通过比较突变体(ADH活性低)和参考自交系之间的杂交后代F4后代来控制。低氧根尖进行乙醇发酵的能力仅在Adh 1无效位点中发现了对ADH活性的依赖性。玉米根尖承受长期和极端缺氧的能力同样与ADH活性无关,除了最低的活性。表现出较低的低氧耐性的根尖在极端低氧时具有更多的酸性细胞质。我们得出的结论是,正常玉米根尖中ADH的活性不会限制通过发酵产生能量的能力,也无法确定极端缺氧条件下的生存能力。讨论了缺氧诱导植物ADH活性的意义。

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