Department of Biophysics and Morphogenesis of Plants, University of Silesia, Katowice, Poland.
Planta. 2012 Nov;236(5):1547-57. doi: 10.1007/s00425-012-1707-x. Epub 2012 Jul 25.
In angiosperms, growth of the root apex is determined by the quiescent centre. All tissues of the root proper and the root cap are derived from initial cells that surround this zone. The diversity of cell lineages originated from these initials suggests an interesting variation of the displacement velocity within the root apex. However, little is known about this variation, especially in the most apical region including the root cap. This paper shows a method of determination of velocity field for this region taking the Arabidopsis root apex as example. Assuming the symplastic growth without a rotation around the root axis, the method combines mathematical modelling and two types of empirical data: the published velocity profile along the root axis above the quiescent centre, and dimensions of cell packet originated from the initials of epidermis and lateral root cap. The velocities, calculated for points of the axial section, vary in length and direction. Their length increases with distance from the quiescent centre, in the root cap at least twice slower than in the root proper, if points at similar distance from the quiescent centre are compared. The vector orientation depends on the position of a calculation point, the widest range of angular changes, reaching almost 90°, in the lateral root cap. It is demonstrated how the velocity field is related to both distribution of growth rates and growth-resulted deformation of the cell wall system. Also changes in the field due to cell pattern asymmetry and differences in slope of the velocity profile are modelled.
在被子植物中,根尖的生长由静止中心决定。根的所有组织和根冠都来源于围绕这个区域的初始细胞。这些初始细胞衍生的细胞谱系多样性表明根尖内的位移速度存在有趣的变化。然而,人们对此变化知之甚少,尤其是在包括根冠在内的最根尖区域。本文以拟南芥根尖为例,展示了一种确定该区域速度场的方法。假设没有围绕根轴旋转的质外体生长,该方法结合了数学建模和两种类型的经验数据:发表的静止中心上方沿根轴的速度分布,以及来源于表皮和侧根冠原始细胞的细胞包的尺寸。计算出的轴向截面点的速度在长度和方向上都有所变化。它们的长度随着距静止中心的距离而增加,在根冠中,至少比在根中慢两倍,如果比较距静止中心相同距离的点。矢量方向取决于计算点的位置,在侧根冠中,角度变化的范围最宽,达到近 90°。本文还展示了速度场如何与生长速率分布和细胞壁系统的生长导致的变形相关,以及由于细胞模式不对称和速度分布斜率差异引起的速度场变化。