Department of Biophysics and Plant Morphogenesis, University of Silesia, Katowice, Poland.
Ann Bot. 2013 Dec;112(9):1643-54. doi: 10.1093/aob/mct231. Epub 2013 Nov 4.
The crucial role of roots in plant nutrition, and consequently in plant productivity, is a strong motivation to study the growth and functioning of various aspects of the root system. Numerous studies on lateral roots, as a major determinant of the root system architecture, mostly focus on the physiological and molecular bases of developmental processes. Unfortunately, little attention is paid either to the morphological changes accompanying the formation of a lateral root or to morphological defects occurring in lateral root primordia. The latter are observed in some mutants and occasionally in wild-type plants, but may also result from application of external factors.
In this review various morphological aspects of lateral branching in roots are analysed. Morphological events occurring during the formation of a typical lateral root are described. This process involves dramatic changes in the geometry of the developing organ that at early stages are associated with oblique cell divisions, leading to breaking of the symmetry of the cell pattern. Several types of defects in the morphology of primordia are indicated and described. Computer simulations show that some of these defects may result from an unstable field of growth rates. Significant changes in both primary and lateral root morphology may also be a consequence of various mutations, some of which are auxin-related. Examples reported in the literature are considered. Finally, lateral root formation is discussed in terms of mechanics. In this approach the primordium is considered as a physical object undergoing deformation and is characterized by specific mechanical properties.
根在植物营养中的关键作用,以及因此在植物生产力中的关键作用,是研究根系各个方面的生长和功能的强大动力。许多关于侧根的研究,作为根系结构的主要决定因素,主要集中在发育过程的生理和分子基础上。不幸的是,对于伴随侧根形成的形态变化,或者对于侧根原基中发生的形态缺陷,关注甚少。后者在一些突变体中观察到,偶尔在野生型植物中也观察到,但也可能是由外部因素引起的。
在这篇综述中,分析了根中侧枝分枝的各种形态方面。描述了形成典型侧根过程中发生的形态事件。这个过程涉及到发育器官几何形状的剧烈变化,在早期阶段与斜向细胞分裂有关,导致细胞模式的对称性被打破。指出并描述了原基形态的几种缺陷类型。计算机模拟表明,这些缺陷中的一些可能是由于生长速率不稳定的场。初生和侧根形态的显著变化也可能是各种突变的结果,其中一些与生长素有关。考虑了文献中报道的例子。最后,从力学的角度讨论了侧根的形成。在这种方法中,原基被认为是一个经历变形的物理物体,并具有特定的力学特性。