Department of Molecular and Cell Biology, University of Connecticut, 06269-3125, Storrs, CT, USA.
Planta. 1989 Nov;179(4):421-7. doi: 10.1007/BF00397580.
The movement of Samanea saman (Jacq.) Merrill leaflets is a consequence of the re-distribution of K(+) and anions between motor cells on opposite sides of the pulvinus. We used a K(+)-sensitive microelectrode to study dynamic changes in K(+) transport through motor-cell membranes during and immediately after change in illumination. Potassium-ion-sensitive and reference microelectrodes were inserted into extensor or flexor tissue of a whole pulvinus in white light (WL). A brief pulse of red light (RL) followed by darkness (D) (a) increased K(+) activity in the extensor apoplast, indicating K(+) release by the protoplast; and (b) decreased K(+) activity in the flexor apoplast, indicating K(+) uptake by the protoplast. White light after 35-40 min D reversed K(+) activity in the extensor apoplast to approximately its original value. Blue light substituted partially for WL in this regard. Potassium-ion activity in the flexor apoplast reverted to approximately its original value after 2 h, with or without white illumination. Our data support the hypothesis that K(+) efflux from extensor cells and K(+) uptake by flexor cells following a WL→RL→D transition occurs by way of K(+) channels.
金合欢叶片运动是叶枕内动力细胞间钾离子和阴离子重新分布的结果。我们使用钾离子敏感微电极,在光照变化期间和之后即刻,研究了运动细胞细胞膜中钾离子转运的动态变化。钾离子敏感微电极和参照微电极被插入到完整叶枕的伸展组织或弯曲组织中,在白光(WL)下。短暂的红光(RL)脉冲后接着黑暗(D)(a)增加了伸展组织质外体中的钾离子活性,表明质体释放了钾离子;(b)降低了弯曲组织质外体中的钾离子活性,表明质体摄取了钾离子。D 后 35-40 分钟的白光使伸展组织质外体中的钾离子活性恢复到大约原始值。在这方面,蓝光部分替代了 WL。在有或没有白光照射的情况下,弯曲组织质外体中的钾离子活性在 2 小时后恢复到大约原始值。我们的数据支持这样的假设,即在 WL→RL→D 转变后,从伸展细胞中流出钾离子和从弯曲细胞中摄取钾离子是通过钾离子通道进行的。