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拟南芥根尖生长速率的空间和方向变化:一项建模研究。

Spatial and directional variation of growth rates in Arabidopsis root apex: a modelling study.

作者信息

Nakielski Jerzy, Lipowczan Marcin

机构信息

Department of Biophysics and Morphogenesis of Plants, University of Silesia, Katowice, Poland.

出版信息

PLoS One. 2013 Dec 18;8(12):e84337. doi: 10.1371/journal.pone.0084337. eCollection 2013.

Abstract

Growth and cellular organization of the Arabidopsis root apex are investigated in various aspects, but still little is known about spatial and directional variation of growth rates in very apical part of the apex, especially in 3D. The present paper aims to fill this gap with the aid of a computer modelling based on the growth tensor method. The root apex with a typical shape and cellular pattern is considered. Previously, on the basis of two types of empirical data: the published velocity profile along the root axis and dimensions of cell packets formed in the lateral part of the root cap, the displacement velocity field for the root apex was determined. Here this field is adopted to calculate the linear growth rate in different points and directions. The results are interpreted taking principal growth directions into account. The root apex manifests a significant anisotropy of the linear growth rate. The directional preferences depend on a position within the root apex. In the root proper the rate in the periclinal direction predominates everywhere, while in the root cap the predominating direction varies with distance from the quiescent centre. The rhizodermis is distinguished from the neighbouring tissues (cortex, root cap) by relatively high contribution of the growth rate in the anticlinal direction. The degree of growth anisotropy calculated for planes defined by principal growth directions and exemplary cell walls may be as high as 25. The changes in the growth rate variation are modelled.

摘要

人们从多个方面对拟南芥根尖的生长和细胞组织进行了研究,但对于根尖最顶端部分生长速率的空间和方向变化,尤其是三维空间中的变化,仍知之甚少。本文旨在借助基于生长张量法的计算机建模来填补这一空白。研究考虑了具有典型形状和细胞模式的根尖。此前,基于两种类型的经验数据:已发表的沿根轴的速度分布以及在根冠侧面形成的细胞团块的尺寸,确定了根尖的位移速度场。在此,利用该场来计算不同点和方向上的线性生长速率。在考虑主生长方向的情况下对结果进行了解释。根尖表现出明显的线性生长速率各向异性。方向偏好取决于根尖内的位置。在根的主体部分,周向方向的生长速率在各处都占主导,而在根冠中,主导方向随与静止中心的距离而变化。根表皮与相邻组织(皮层、根冠)的区别在于其垂周方向生长速率的贡献相对较高。针对由主生长方向和示例性细胞壁定义的平面计算出的生长各向异性程度可能高达25。对生长速率变化的情况进行了建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae81/3867472/55bce0982e36/pone.0084337.g001.jpg

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