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Spaceflight exposure effects on transcription, activity, and localization of alcohol dehydrogenase in the roots of Arabidopsis thaliana.

机译:航天暴露对拟南芥根中乙醇脱氢酶的转录,活性和定位的影响。

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摘要

Although considerable research and speculation have been directed toward understanding a plant's perception of gravity and the resulting gravitropic responses, little is known about the role of gravity-dependent physical processes in normal physiological function. These studies were conducted to determine whether the roots of plants exposed to spaceflight conditions may be experiencing hypoxia. Arabidopsis thaliana (L.) Heynh. plants were grown in agar medium during 6 or 11 d of spaceflight exposure on shuttle missions STS-54 (CHROMEX-03) and STS-68 (CHROMEX-05), respectively. The analysis included measurement of agar redox potential and root alcohol dehydrogenase (ADH) activity, localization, and expression. ADH activity increased by 89% as a result of spaceflight exposure for both CHROMEX-03 and -05 experiments, and ADH RNase protection assays revealed a 136% increase in ADH mRNA. The increase in ADH activity associated with the spaceflight roots was realized by a 28% decrease in oxygen availability in a ground-based study; however, no reduction in redox potential was observed in measurements of the spaceflight bulk agar. Spaceflight exposure appears to effect a hypoxic response in the roots of agar-grown plants that may be caused by changes in gravity-mediated fluid and/or gas behavior.
机译:尽管已经进行了大量的研究和推测,以了解植物对重力的认识以及由此产生的重力反应,但对于重力相关的物理过程在正常生理功能中的作用知之甚少。进行这些研究是为了确定暴露于航天条件下的植物的根是否正在经历缺氧。拟南芥(L.)Heynh。航天飞机分别在航天飞机任务STS-54(CHROMEX-03)和STS-68(CHROMEX-05)上暴露6或11天后,将植物在琼脂培养基中生长。分析包括琼脂氧化还原电势和根醇脱氢酶(ADH)活性,定位和表达的测量。由于CHROMEX-03和-05实验的航天飞行,ADH活性增加了89%,ADH RNase保护试验显示ADH mRNA增加了136%。一项基于地面的研究表明,与太空飞行根系相关的ADH活性增加是由于氧的有效利用减少了28%。然而,在航天散装琼脂的测量中未观察到氧化还原电位的降低。暴露于太空飞行似乎会对琼脂生长植物的根部产生缺氧反应,这可能是由于重力介导的流体和/或气体行为的变化所致。

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