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An Analysis of the Relationship between Respiration and the Transmembrane Potential in Corn Roots

机译:玉米根系呼吸作用与跨膜电位的关系分析

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摘要

The effects of cyanide, anoxia, and temperatures varying from 2 to 42 C on the cell membrane electropotential difference (PD) of washed and freshly excised corn roots have been determined. Respiration rates of freshly excised root segments in response to cyanide and to varying temperatures were also measured. The cell membrane PD of roots which had been washed for 12 to 15 hours was almost insensitive to cyanide and anoxia but sensitive to low temperature. In contrast, the cell membrane PD of freshly excised roots was reversibly depolarized by all three treatments, cyanide depolarized from −117 to −86 millivolts and the sequential imposition of anoxia further lowered the PD to −69 millivolts. Anoxia applied first depolarized maximally and the PD was not further lowered by sequential cyanide treatment. Arrhenius plot analysis of the temperature response of respiration showed an apparent transition at 13 C with an activation energy of 20.0 kilocalories per mole below and 8.8 kilocalories per mole above the transition temperatures. The energy of activation for repolarization of PD is much higher; 53.4 kilocalories per mole below 7 to 8 C and 25.4 kilocalories per mole above this apparent transition. The energy requirement for polarization of the cell membrane PD was calculated based on the temperature responses of the cell membrane PD and respiration. It was estimated that 3.5% of the energy output from respiration at 22 C is required for cell polarization. It is unlikely that ion transport is limited by energy availability below the 8 C transition in this chill sensitive species.
机译:已经确定了氰化物,缺氧和温度在2到42 C之间变化对洗涤和新鲜切下的玉米根的细胞膜电势差(PD)的影响。还测量了响应于氰化物和变化的温度的新鲜切除的根段的呼吸速率。洗涤12至15小时的根的细胞膜PD对氰化物和缺氧几乎不敏感,但对低温敏感。相比之下,新切下的根的细胞膜PD通过所有三种处理可逆地去极化,氰化物从-117降低到-86毫伏,连续施加缺氧使PD进一步降低到-69毫伏。先将缺氧首先最大程度地去极化,并且连续的氰化物处理不会进一步降低PD。呼吸温度响应的阿雷尼乌斯图分析显示,在13°C时有明显的转变,活化能低于转变温度20.0千卡/摩尔,高于转变温度8.8卡/摩尔。 PD复极化的激活能量要高得多。在7-8 C以下,每摩尔53.4千卡,在此明显转变以上,每摩尔25.4千卡。基于细胞膜PD的温度响应和呼吸来计算细胞膜PD的极化所需的能量。据估计,细胞极化需要在22 C下呼吸的能量输出的3.5%。在这种对寒冷敏感的物种中,离子传输不太可能受到低于8 C转变的能量可用性的限制。

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