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膜电位、膜电阻和生长速率对周期性温度变化的响应中的滞后现象。

Hysteresis in the responses of membrane potential, membrane resistance, and growth rate to cyclic temperature change.

机构信息

Department of Botany, Hebrew University of Jerusalem, Israel.

出版信息

Plant Physiol. 1979 Jun;63(6):1089-94. doi: 10.1104/pp.63.6.1089.

Abstract

Measurements of electrical potential, membrane resistance, and elongation rate have been carried out on the developing pollen tube of Oenothera drummondii.The plasmalemma potential was observed to be -138 millivolts +/- 19 (sd). Approximately 70% of this potential was apparently due to the operation of an electrogenic pump(s). KCN rapidly and reversibly depolarized the potential to about -40 millivolts. Lowering the temperature from 20 to 4 C brought about similar rapid depolarization. The effects of KCN and of temperature were in no degree additive. KCN had only a small effect on membrane resistance. In contrast, the latter was markedly increased by lowering the temperature.When the pollen tubes were submitted to cyclic temperature changes striking hysteresis effects were observed in the response of all three parameters, membrane potential, resistance, and growth rate. The hysteresis pattern for potential differed from that for resistance but resembled that for growth rate (measured simultaneously on the same pollen tube). The correlation coefficient between potential and growth rate was very high.The probable relevance to our results of the hysteresis phenomena associated with "clustering" and phase transition in lipids is pointed out. Attention is also drawn to the possible significance of the large difference between the electric potentials at the start of the cooling and heating paths, respectively.

摘要

已经对奥恩瑟拉·德拉蒙德氏花粉管的发育进行了电势能、膜电阻和伸长率的测量。观察到质膜电势为-138 毫伏±19(标准差)。大约 70%的这种电势显然是由于电生成泵(s)的作用。KCN 迅速且可逆地将电势去极化至约-40 毫伏。将温度从 20 降低至 4°C 会引起类似的快速去极化。KCN 和温度的作用在任何程度上都不是相加的。KCN 对膜电阻的影响很小。相比之下,降低温度会显著增加后者。当花粉管受到周期性温度变化的影响时,所有三个参数(膜电位、电阻和生长速率)的响应都观察到了明显的滞后效应。电势的滞后模式与电阻的滞后模式不同,但与生长速率的滞后模式相似(同时在同一花粉管上测量)。电势与生长速率之间的相关系数非常高。指出了与脂质“聚类”和相变相关的滞后现象与我们的结果相关的可能相关性。还提请注意冷却和加热路径开始时电势之间的巨大差异的可能意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7398/542975/569354d9ac52/plntphys00127-0112-a.jpg

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