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来自多花菜豆叶枕运动细胞的原生质体表现出昼夜节律性的体积振荡。

Protoplasts from Phaseolus coccineus L. pulvinar motor cells show circadian volume oscillations.

作者信息

Mayer W E, Fischer C

机构信息

Institut für Botanik, Universität Tübingen, Germany.

出版信息

Chronobiol Int. 1994 Jun;11(3):156-64. doi: 10.3109/07420529409057235.

Abstract

The circadian movement of the lamina of the primary leaf of Phaseolus coccineus is mediated by circadian volume changes of the extensor and flexor cells in the upper and lower half of the laminar pulvinus. Isolated protoplasts from the extensor, flexor, and flank cells of the pulvinus showed a circadian volume rhythm with a period longer than 24 h. In the case of the flexor protoplasts, we found a period length of 28 h, which is similar to that of the pulvinar cells in situ. In the extensor protoplasts, the volume rhythm was synchronized with 14-h light/10-h dark cycles. The larger volume was correlated with the early hours in the light period and the smaller volume with the dark period, as would be expected from the behavior of the extensor cells in situ.

摘要

菜豆初生叶叶片的昼夜节律运动是由叶片叶枕上下半部伸肌细胞和屈肌细胞的昼夜体积变化介导的。从叶枕的伸肌、屈肌和侧翼细胞分离出的原生质体表现出周期长于24小时的昼夜体积节律。就屈肌原生质体而言,我们发现其周期长度为28小时,这与原位叶枕细胞的周期长度相似。在伸肌原生质体中,体积节律与14小时光照/10小时黑暗周期同步。较大的体积与光照期的早期时段相关,较小的体积与黑暗期相关,这与原位伸肌细胞的行为预期一致。

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