Mullen J L, Ishikawa H, Evans M L
Department of Plant Biology, Ohio State University, Columbus, OH 43210, USA.
Planta. 1998 Nov;206(4):598-603. doi: 10.1007/s004250050437.
Although Arabidopsis is an important system for studying root physiology, the localized growth patterns of its roots have not been well defined, particularly during tropic responses. In order to characterize growth rate profiles along the apex of primary roots of Arabidopsis thaliana (L.) Heynh (ecotype Columbia) we applied small charcoal particles to the root surface and analyzed their displacement during growth using an automated video digitizer system with custom software for tracking the markers. When growing vertically, the maximum elongation rate occurred 481 +/- 50 microns back from the extreme tip of the root (tip of root cap), and the elongation zone extended back to 912 +/- 137 microns. The distal elongation zone (DEZ) has previously been described as the apical region of the elongation zone in which the relative elemental growth rate (REGR) is < or = 30% of the peak rate in the central elongation zone. By this definition, our data indicate that the basal limit of the DEZ was located 248 +/- 30 microns from the root tip. However, after gravistimulation, the growth patterns of the root changed. Within the first hour of graviresponse, the basal limit of the DEZ and the position of peak REGR shifted apically on the upper flank of the root. This was due to a combination of increased growth in the DEZ and growth inhibition in the central elongation zone. On the lower flank, the basal limit of the DEZ shifted basipetally as the REGR decreased. These factors set up the gradient of growth rate across the root, which drives curvature.
虽然拟南芥是研究根系生理学的重要体系,但其根的局部生长模式尚未得到很好的界定,尤其是在向性反应过程中。为了描述拟南芥(生态型哥伦比亚)初生根根尖的生长速率概况,我们将小炭粒施加到根表面,并使用带有用于跟踪标记的定制软件的自动视频数字化仪系统分析其在生长过程中的位移。垂直生长时,最大伸长率出现在距根的最尖端(根冠尖端)向后481±50微米处,伸长区向后延伸至912±137微米。远端伸长区(DEZ)先前被描述为伸长区的顶端区域,其中相对元素生长速率(REGR)小于或等于中央伸长区峰值速率的30%。根据这个定义,我们的数据表明DEZ的基部界限位于距根尖248±30微米处。然而,重力刺激后,根的生长模式发生了变化。在重力反应的第一小时内,DEZ的基部界限和REGR峰值位置在根的上侧面向顶端移动。这是由于DEZ生长增加和中央伸长区生长抑制共同作用的结果。在根的下侧,随着REGR降低,DEZ的基部界限向基部移动。这些因素建立了根上生长速率的梯度,从而驱动根的弯曲。