Stinemetz C, Takahashi H, Suge H
Biology Department, Rhodes College, Memphis, Tennessee 38112, USA.
Plant Cell Physiol. 1996 Sep;37(6):800-5. doi: 10.1093/oxfordjournals.pcp.a029015.
In this study, ageotropum pea mutant was used to determine the threshold time for perception of an osmotic stimulation in the root cap and the time requirement for transduction and transmission of the hydrotropic signal from the root cap to the elongation region. The threshold time for the perception of an osmotic stimulation was compared to current estimates of threshold times for graviperception in roots. The time required for transduction and transmission in the hydrotropic response of ageotropum was compared to the time requirement in the gravity response of Alaska pea roots. We determined that threshold time for perception of an osmotic stimulation in the root cap is very rapid, occurring in less than 2 min following the application of sorbitol to the root cap. Furthermore, a single 5 min exposure of sorbitol to the root cap fully induced a hydrotropic response. We also found that transduction and transmission of an osmotic stimulus requires 90-120 min for movement from the root cap to more basal tissues involved in differential growth leading to root curvature. The very rapid threshold time for perception of root hydrotropism is similar to those times reported for root gravitropism. However, the time required for the transduction and transmission of an osmotic stimulation from the root cap is significantly longer than the time required in gravitropism. These results suggest that there must exist some differences between root hydrotropism and gravitropism in either the rate or mechanisms of transduction and transmission of the tropistic signal from the root cap.
在本研究中,使用无向性豌豆突变体来确定根冠感知渗透刺激的阈值时间,以及根冠向水性信号转导和传递至伸长区所需的时间。将根冠感知渗透刺激的阈值时间与目前对根感知重力的阈值时间估计值进行比较。将无向性豌豆向水性反应中转导和传递所需的时间与阿拉斯加豌豆根重力反应中的时间需求进行比较。我们确定,根冠感知渗透刺激的阈值时间非常快,在向根冠施加山梨醇后不到2分钟内就会出现。此外,山梨醇单次作用于根冠5分钟就能充分诱导向水性反应。我们还发现,渗透刺激的转导和传递需要90 - 120分钟才能从根冠移动到参与差异生长导致根弯曲的更基部组织。根向水性感知的非常快速的阈值时间与根向重力性报道的时间相似。然而,从根冠进行渗透刺激的转导和传递所需的时间明显长于向重力性所需的时间。这些结果表明,根向水性和向重力性在根冠向性信号转导和传递的速率或机制方面必定存在一些差异。