Brulé Veronique, Rafsanjani Ahmad, Pasini Damiano, Western Tamara L
Department of Biology, McGill University, 1205 Docteur Penfield Ave., Montreal, QC, H3A 1B1, Canada.
Department of Mechanical Engineering, McGill University, 817 Sherbrooke Street West, Montreal, QC, H3A OC3, Canada.
Plant Sci. 2016 Sep;250:79-96. doi: 10.1016/j.plantsci.2016.06.002. Epub 2016 Jun 3.
Plants must meet mechanical as well as physiological and reproductive requirements for survival. Management of internal and external stresses is achieved through their unique hierarchical architecture. Stiffness is determined by a combination of morphological (geometrical) and compositional variables that vary across multiple length scales ranging from the whole plant to organ, tissue, cell and cell wall levels. These parameters include, among others, organ diameter, tissue organization, cell size, density and turgor pressure, and the thickness and composition of cell walls. These structural parameters and their consequences on plant stiffness are reviewed in the context of work on stems of the genetic reference plant Arabidopsis thaliana (Arabidopsis), and the suitability of Arabidopsis as a model system for consistent investigation of factors controlling plant stiffness is put forward. Moving beyond Arabidopsis, the presence of morphological parameters causing stiffness gradients across length-scales leads to beneficial emergent properties such as increased load-bearing capacity and reversible actuation. Tailoring of plant stiffness for old and new purposes in agriculture and forestry can be achieved through bioengineering based on the knowledge of the morphological and compositional parameters of plant stiffness in combination with gene identification through the use of genetics.
植物必须满足机械以及生理和繁殖方面的生存要求。通过其独特的层次结构来实现对内部和外部压力的管理。刚度由形态(几何)和成分变量共同决定,这些变量在从整个植物到器官、组织、细胞和细胞壁水平的多个长度尺度上有所不同。这些参数包括器官直径、组织组织、细胞大小、密度和膨压,以及细胞壁的厚度和成分等。本文在对遗传参考植物拟南芥茎的研究背景下,综述了这些结构参数及其对植物刚度的影响,并提出了拟南芥作为一个模型系统用于持续研究控制植物刚度因素的适用性。超越拟南芥,形态参数在长度尺度上导致刚度梯度的存在会产生有益的涌现特性,如增加承载能力和可逆驱动。基于对植物刚度形态和成分参数的了解,结合通过遗传学进行基因鉴定,利用生物工程可以实现为农业和林业的新旧用途量身定制植物刚度。