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Growth and Mitochondrial Respiration of Mungbeans (Phaseolus aureus Roxb.) Germinated at Low Pressure

机译:低压发芽的绿豆(Phaseolus aureus Roxb。)的生长和线粒体呼吸

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摘要

Mungbean (Phaseolus aureus Roxb.) seedlings were grown hypobarically to assess the effects of low pressure (21-24 kilopascals) on growth and mitochondrial respiration. Control seedlings grown at ambient pressure (101 kilopascals) were provided amounts of O2 equivalent to those provided experimental seedlings at reduced pressure to factor out responses to O2 concentration and to total pressure. Respiration was assayed using washed mitochondria, and was found to respond only to O2 concentration. Regardless of total pressure, seedlings grown at 2 millimoles O2 per liter had higher state 3 respiration rates and decreased percentages of alternative respiration compared to ambient (8.4 millimoles O2 per liter) controls. In contrast, seedling growth responded to total pressure but not to O2 concentration. Seedlings were significantly larger when grown under low pressure. While low O2 (2 millimoles O2 per liter) diminished growth at ambient pressure, growth at low pressure in the same oxygen concentration was enhanced. Respiratory development and growth of mungbean seedlings under low pressure is unimpaired whether oxygen or air is used as the chamber gas, and further, low pressure can improve growth under conditions of poor aeration.
机译:绿豆(Phaseolus aureus Roxb。)幼苗在低压下生长,以评估低压(21-24千帕斯卡)对生长和线粒体呼吸的影响。提供在环境压力(101千帕斯卡)下生长的对照幼苗的氧气量与在减压下提供的实验幼苗的氧气量相等,以排除对氧气浓度和总压力的响应。使用洗涤过的线粒体分析呼吸,发现仅对O2浓度有反应。无论总压力如何,与周围环境(每升8.4毫摩尔O2)相比,以每升2毫摩尔O2增长的幼苗具有较高的状态3呼吸速率,并且替代呼吸的百分比降低。相反,幼苗生长对总压力有反应,但对氧气浓度无响应。在低压下生长时,幼苗明显更大。虽然低氧气含量(每升2毫摩尔氧气)降低了在环境压力下的生长,但是在相同氧气浓度下,低压下的生长得到了增强。无论是使用氧气还是空气作为室内气体,绿豆幼苗在低压下的呼吸发育和生长都不会受到影响,此外,低压可以改善通气不良条件下的生长。

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