DENNISON D S
J Gen Physiol. 1961 Sep;45(1):23-38. doi: 10.1085/jgp.45.1.23.
A low-speed centrifuge was used to study the tropic responses of Phycomyces sporangiophores in darkness to the stimulus of combined gravitational and centrifugal forces. If this stimulus is constant the response is a relatively slow tropic reaction, which persists for up to 12 hours. The response is accelerated by increasing the magnitude of the gravitational-centrifugal force. A wholly different tropic response, the transient response, is elicited by an abrupt change in the gravitational-centrifugal stimulus. The transient response has a duration of only about 6 min. but is characterized by a high bending speed (about 5 degrees /min.). An analysis of the distribution of the transient response along the growing zone shows that the active phase of the response has a distribution similar to that of the light sensitivity for the light-growth and phototropic responses. Experiments in which sporangiophores are centrifuged in an inert dense fluid indicate that the sensory mechanism of the transient response is closely related to the physical deformation of the growing zone caused by the action of the gravitational-centrifugal force on the sporangiophore as a whole. However, the response to a steady gravitational-centrifugal force is most likely not connected with this deformation, but is probably triggered by the shifting of regions or particles of differing density relative to one another inside the cell.
使用低速离心机研究了黑暗中毛霉孢子囊柄对重力和离心力组合刺激的向性反应。如果这种刺激是恒定的,反应是一种相对缓慢的向性反应,可持续长达12小时。通过增加重力-离心力的大小,反应会加速。完全不同的向性反应,即瞬态反应,是由重力-离心刺激的突然变化引起的。瞬态反应的持续时间仅约6分钟,但其特征是弯曲速度高(约5度/分钟)。对瞬态反应沿生长区分布的分析表明,反应的活跃阶段的分布与光生长和向光反应的光敏感性分布相似。在惰性稠密流体中对孢子囊柄进行离心的实验表明,瞬态反应的感觉机制与重力-离心力对整个孢子囊柄的作用所引起的生长区物理变形密切相关。然而,对稳定重力-离心力的反应很可能与这种变形无关,而可能是由细胞内不同密度区域或颗粒的相对移动触发的。