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低氧对玉米转化酶的快速抑制作用。转化酶/蔗糖合酶平衡、糖信号传导潜力与幼苗存活

Rapid repression of maize invertases by low oxygen. Invertase/sucrose synthase balance, sugar signaling potential, and seedling survival.

作者信息

Zeng Y, Wu Y, Avigne W T, Koch K E

机构信息

Plant Molecular and Cellular Biology Program, Horticultural Sciences Department, 1143 Fifield Hall, University of Florida, Gainesville, Florida 32611, USA.

出版信息

Plant Physiol. 1999 Oct;121(2):599-608. doi: 10.1104/pp.121.2.599.

Abstract

We show here that invertase gene expression and the invertase-sucrose (Suc) synthase ratio decrease abruptly in response to low oxygen in maize root tips. In addition to aiding in the conservation of carbon and possibly ATP, this response has the potential to directly affect sugar signaling relative to carbon flux. Experiments were motivated by the potential for a reduced invertase/Suc synthase balance to alter the impact of respiratory and/or membrane carbon flux on sugar signaling. Maize (Zea mays L.) seedlings with 5-cm primary roots were exposed to anoxic (0% [v/v] O2), hypoxic (3% [v/v] O2), and aerobic conditions. Rapid repression of the Ivr1 and Ivr2 maize invertases by low oxygen was evident in root tips within 3 h at both the transcript and activity levels. The speed and extent of this response increased with the degree of oxygen deprivation and differed with genotypes. This decrease in expression also contrasted markedly to that of other genes for respiratory Suc metabolism, such as Suc synthases, which typically increased or remained constant. Although previous work showed that the contrasting effects of sugars on Suc synthase genes were reflected in their regulation by hypoxia and anoxia, the same was not observed for the differentially sugar-responsive invertases. Theoretically advantageous reductions in the invertase/Suc synthase balance thus resulted. However, where this response was extreme (an Oh43 inbred), total sucrolytic capacity dropped below an apparent minimum and root tip viability was reduced. Paradoxically, only Oh43 seedlings showed survival levels >80% (versus <50%) after extreme, long-term stress, suggesting a possible advantage for multiple means of reducing sink activity. Overall, our results demonstrate a rapid change in the regulation and balance of invertases and Suc synthases that could have an immediate impact on limiting the extent of Suc cleavage and reducing the extent of concomitant, hexose-based sugar signaling under low oxygen.

摘要

我们在此表明,玉米根尖中转化酶基因表达以及转化酶 - 蔗糖(Suc)合酶比率会因低氧而急剧下降。除了有助于碳和可能的ATP的保存外,这种反应还可能直接影响与碳通量相关的糖信号传导。实验的动机是转化酶/蔗糖合酶平衡的降低可能改变呼吸和/或膜碳通量对糖信号传导的影响。将具有5厘米初生根的玉米(Zea mays L.)幼苗暴露于缺氧(0%[v/v] O2)、低氧(3%[v/v] O2)和好氧条件下。在转录水平和活性水平上,低氧在3小时内即可在根尖中明显快速抑制Ivr1和Ivr2玉米转化酶。这种反应的速度和程度随缺氧程度增加而增加,并且因基因型而异。这种表达的下降也与呼吸性蔗糖代谢的其他基因(如蔗糖合酶,其通常增加或保持不变)形成明显对比。尽管先前的研究表明糖对蔗糖合酶基因的不同影响反映在它们受缺氧和无氧的调节中,但对于差异糖响应的转化酶却未观察到同样情况。因此,理论上有利的转化酶/蔗糖合酶平衡降低得以实现。然而,在这种反应极端的情况下(Oh43自交系),总蔗糖分解能力降至明显的最小值以下,根尖活力降低。矛盾的是,只有Oh43幼苗在极端长期胁迫后显示出存活率>80%(而<50%),这表明多种降低库活性的方式可能具有优势。总体而言,我们的结果表明转化酶和蔗糖合酶的调节和平衡发生了快速变化,可以立即影响在低氧条件下限制蔗糖裂解程度并减少伴随的基于己糖的糖信号传导程度。

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