首页> 美国卫生研究院文献>Plant Physiology >Hypoxic and Anoxic Induction of Alcohol Dehydrogenase in Roots and Shoots of Seedlings of Zea mays (Adh Transcripts and Enzyme Activity).
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Hypoxic and Anoxic Induction of Alcohol Dehydrogenase in Roots and Shoots of Seedlings of Zea mays (Adh Transcripts and Enzyme Activity).

机译:玉米根和幼苗嫩芽中缺氧和缺氧诱导乙醇脱氢酶(Adh转录本和酶活性)。

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摘要

Alcohol dehydrogenase (ADH) is one of a number of enzymes of glycolysis and fermentation known to be synthesized preferentially under low O2 conditions. We examined levels of Adh1 transcripts and of ADH activity in 5-mm root tips, root axes (the remainder of the seminal root), and shoots of maize (Zea mays L. cv TX 5855) seedlings. Seedlings with roots averaging about 60-mm long were transferred from fully aerobic conditions (solutions sparged with 40% [v/v] O2) to anaerobic (O2-free) conditions, or to an intermediate O2 concentration. There was no prior acclimation to low O2. In root tips, anoxia induced Adh1 transcripts and enzyme activity at 6 h, but this was followed by a rapid decline so that at 12 to 18 h neither were detectable and the root tips were dead. In contrast, higher levels of Adh1 transcripts and enzyme activity were maintained for at least 48 h in root axes and shoots. When induction at 6 h was measured over a wide range of O2 concentrations, a peak in ADH activity occurred in all tissues at 4% (v/v) O2. Maximum levels of transcripts, however, were in the range of 0 to 4% O2, depending on the tissue. The time course of hypoxic induction (at 4% O2) in root tips showed a peak in transcript levels at 6 h, whereas ADH activity continued to rise throughout the 24-h experiment. These results show that in root tips, ADH induction by anoxia was small and transient relative to induction by hypoxia.
机译:乙醇脱氢酶(ADH)是已知在低氧条件下优先合成的多种糖酵解和发酵酶之一。我们检查了5毫米根尖,根轴(精根的其余部分)和玉米(Zea mays L. cv TX 5855)幼苗的芽中Adh1转录本和ADH活性的水平。将根平均长约60毫米的幼苗从完全有氧条件(充满40%[v / v] O2的溶液中)转移到厌氧(无O2)条件下,或转移到中等O2浓度。没有事先适应低氧。在根尖,缺氧在6 h诱导了Adh1转录和酶活性,但随后迅速下降,因此在12至18 h均未检测到,并且根尖已死亡。相反,在根轴和芽中,Adh1转录本和酶活性的水平至少维持48小时。当在很宽的O2浓度范围内测量6 h的诱导时,所有组织中在4%(v / v)O2下都出现了ADH活性峰值。但是,根据组织的不同,转录本的最大水平在0至4%O2的范围内。根尖缺氧诱导的时间过程(在4%O2下)在6 h时显示出转录水平的峰值,而在整个24 h实验中ADH活性持续升高。这些结果表明,在根尖中,相对于低氧诱导的缺氧,ADH的诱导作用较小且短暂。

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