Biological Sciences Group U-42, University of Connecticut, Storrs, Connecticut 06268.
Plant Physiol. 1983 Jun;72(2):564-9. doi: 10.1104/pp.72.2.564.
Previous investigators revealed that white light-promoted leaflet opening in Samanea saman (Jacq) Merrill depends upon K(+) uptake by extensor cells and efflux from flexor cells of the pulvinus, while dark-promoted closure depends upon K(+) fluxes in the opposite directions. We now monitored H(+) fluxes during pulvinar movement to test a model proposing coupled H(+)/K(+) fluxes. H(+) fluxes were monitored by measuring changes in the pH of a weakly buffered solution (initial pH = 5.5) bathing excised strips of extensor or flexor tissue. White light at hour 3 of the usual dark period promoted pulvinar opening, H(+) efflux from extensor cells and uptake by flexor cells, while darkness at hours 2 to 4 of the usual light period promoted pulvinar closure, H(+) uptake by extensor cells and efflux from flexor cells. The following conditions altered H(+) fluxes during dark-promoted closure. (a) Light reversed the directions of the fluxes in both extensor and flexor cells. (b) Anoxia increased the rate of H(+) uptake by extensor cells and promoted H(+) uptake (rather than efflux) by flexor cells, consistent with an outwardly directed H(+) pump. KCN showed similar effects initially, but they were transient. (c) Increase in external pH from 5.5 to 6.7 promoted H(+) efflux (rather than uptake) by extensor cells and increased the rate of H(+) efflux from flexor cells, presumably by decreasing the rate of inward diffusion. (d) Change in external K(+) did not alter H(+) fluxes by extensor cells, but removal of external K(+) decreased the rate of H(+) efflux from flexor cells by 70%. These observations support a model for coupled H(+)/K(+) fluxes in pulvinar cells during light-and dark-promoted leaflet movements.
先前的研究人员揭示,在金合欢(Jacq)Merrill 中,白光促进的小叶瓣张开依赖于叶枕延伸细胞中 K+的摄取和弯曲细胞中 K+的外排,而黑暗促进的闭合则依赖于相反方向的 K+流。现在,我们监测了叶枕运动过程中的 H+流,以检验一个提出耦合 H+/K+流的模型。通过测量浸泡在弱缓冲溶液(初始 pH=5.5)中的延伸或弯曲组织的 pH 值变化来监测 H+流。在通常的黑暗期的第 3 小时,白光促进叶枕张开,H+从延伸细胞中流出并被弯曲细胞吸收,而在通常的光照期的第 2 至 4 小时,黑暗促进叶枕闭合,H+被延伸细胞吸收并从弯曲细胞中流出。以下条件改变了黑暗促进闭合过程中的 H+流。(a)光逆转了延伸和弯曲细胞中流的方向。(b)缺氧增加了延伸细胞中 H+吸收的速度,并促进了弯曲细胞中 H+的吸收(而不是流出),这与外向的 H+泵一致。KCN 最初也表现出类似的效果,但它们是短暂的。(c)将外部 pH 从 5.5 增加到 6.7 促进了延伸细胞中 H+的流出(而不是吸收),并增加了弯曲细胞中 H+流出的速度,可能是通过降低内向扩散的速度。(d)改变外部 K+不会改变延伸细胞中的 H+流,但去除外部 K+会使弯曲细胞中 H+的流出速度降低 70%。这些观察结果支持在光和暗促进小叶瓣运动过程中,叶枕细胞中耦合 H+/K+流的模型。