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触觉和重力感应设定点角度相互作用,以调节根的向重力性生长。

Touch and gravitropic set-point angle interact to modulate gravitropic growth in roots.

作者信息

Massa G D, Gilroy S

机构信息

Biology Department, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Adv Space Res. 2003;31(10):2195-202. doi: 10.1016/s0273-1177(03)00244-8.

Abstract

Plant roots must sense and respond to a variety of environmental stimuli as they grow through the soil. Touch and gravity represent two of the mechanical signals that roots must integrate to elicit the appropriate root growth patterns and root system architecture. Obstacles such as rocks will impede the general downwardly directed gravitropic growth of the root system and so these soil features must be sensed and this information processed for an appropriate alteration in gravitropic growth to allow the root to avoid the obstruction. We show that primary and lateral roots of Arabidopsis do appear to sense and respond to mechanical barriers placed in their path of growth in a qualitatively similar fashion. Both types of roots exhibited a differential growth response upon contacting the obstacle that directed the main axis of elongation parallel to the barrier. This growth habit was maintained until the obstacle was circumvented, at which point normal gravitropic growth was resumed. Thus, the gravitational set-point angle of the primary and lateral roots prior to encountering the barrier were 95 degrees and 136 degrees respectively and after growing off the end of the obstacle identical set-point angles were reinstated. However, whilst tracking across the barrier, quantitative differences in response were observed between these two classes of roots. The root tip of the primary root maintained an angle of 136 degrees to the horizontal as it traversed the barrier whereas the lateral roots adopted an angle of 154 degrees. Thus, this root tip angle appeared dependent on the gravitropic set-point angle of the root type with the difference in tracking angle quantitatively reflecting differences in initial set-point angle. Concave and convex barriers were also used to analyze the response of the root to tracking along a continuously varying surface. The roots maintained the a fairly fixed angle to gravity on the curved surface implying a constant resetting of this tip angle/tracking response as the curve of the surface changed. We propose that the interaction of touch and gravity sensing/response systems combine to strictly control the tropic growth of the root. Such signal integration is likely a critical part of growth control in the stimulus-rich environment of the soil.

摘要

植物根系在土壤中生长时必须感知并响应各种环境刺激。触摸和重力是根系必须整合的两种机械信号,以引发适当的根系生长模式和根系结构。诸如岩石之类的障碍物会阻碍根系一般向下的向地性生长,因此必须感知这些土壤特征,并处理该信息以适当改变向地性生长,使根系避开障碍物。我们表明,拟南芥的主根和侧根似乎确实以定性相似的方式感知并响应生长路径中放置的机械屏障。两种类型的根在接触障碍物时都表现出差异生长反应,使伸长主轴平行于障碍物。这种生长习性一直保持到绕过障碍物,此时恢复正常的向地性生长。因此,主根和侧根在遇到障碍物之前的重力设定点角度分别为95度和136度,在从障碍物末端生长出来后,恢复了相同的设定点角度。然而,在跨越障碍物时,观察到这两类根在响应上存在定量差异。主根的根尖在穿过障碍物时与水平方向保持136度角,而侧根则采用154度角。因此,这种根尖角度似乎取决于根类型的重力设定点角度,跟踪角度的差异定量反映了初始设定点角度的差异。还使用了凹面和凸面障碍物来分析根系对沿连续变化表面跟踪的响应。根系在曲面上与重力保持相当固定的角度,这意味着随着表面曲线的变化,这种根尖角度/跟踪响应会不断重新设定。我们提出,触摸和重力感知/响应系统的相互作用结合起来严格控制根系的向性生长。这种信号整合可能是土壤中刺激丰富环境下生长控制的关键部分。

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