Centre of the Region Haná for Biotechnological and Agricultural Research, Department of Cell Biology, Faculty of Science, Palacký University, Šlechtitelů 27, CZ-783 71 Olomouc, Czech Republic.
Biotechnol Adv. 2015 Nov 1;33(6 Pt 2):1043-62. doi: 10.1016/j.biotechadv.2015.03.008. Epub 2015 Mar 14.
The cytoskeleton is a protein-based intracellular superstructure that evolved early after the appearance of bacterial prokaryotes. Eventually cytoskeletal proteins and their macromolecular assemblies were established in eukaryotes and assumed critical roles in cell movements, intracellular organization, cell division and cell differentiation. In biomedicine the small-molecules targeting cytoskeletal elements are in the frontline of anticancer research with plant-derived cytoskeletal drugs such as Vinca alkaloids and toxoids, being routinely used in the clinical practice. Moreover, plants are also major material, food and energy resources for human activities ranging from agriculture, textile industry, carpentry, energy production and new material development to name some few. Most of these inheritable traits are associated with cell wall synthesis and chemical modification during primary and secondary plant growth and inevitably are associated with the dynamics, organization and interactions of the plant cytoskeleton. Taking into account the vast intracellular spread of microtubules and actin microfilaments the cytoskeleton collectively assumed central roles in plant growth and development, in determining the physical stance of plants against the forces of nature and becoming a battleground between pathogenic invaders and the defense mechanisms of plant cells. This review aims to address the role of the plant cytoskeleton in manageable features of plants including cellulose biosynthesis with implications in wood and fiber properties, in biofuel production and the contribution of plant cytoskeletal elements in plant defense responses against pathogens or detrimental environmental conditions. Ultimately the present work surveys the potential of cytoskeletal proteins as platforms of plant genetic engineering, nominating certain cytoskeletal proteins as vectors of favorable traits in crops and other economically important plants.
细胞骨架是一种蛋白质构成的细胞内超结构,在细菌原核生物出现后不久就进化出来了。最终,细胞骨架蛋白及其大分子组装体在真核生物中建立,并在细胞运动、细胞内组织、细胞分裂和细胞分化中发挥关键作用。在生物医学中,靶向细胞骨架元件的小分子是癌症研究的前沿,植物来源的细胞骨架药物,如长春花生物碱和类毒素,在临床上经常使用。此外,植物也是人类活动的主要物质、食品和能源资源,从农业、纺织业、木工、能源生产到新材料开发等领域都有涉及。这些可遗传的特征大多与细胞壁的合成和次生植物生长过程中的化学修饰有关,不可避免地与植物细胞骨架的动态、组织和相互作用有关。考虑到微管和肌动蛋白微丝在细胞内的广泛分布,细胞骨架在植物的生长和发育中起着核心作用,决定了植物对自然力量的物理姿态,并成为病原入侵和植物细胞防御机制之间的战场。本综述旨在探讨植物细胞骨架在可管理特征中的作用,包括纤维素生物合成对木材和纤维特性的影响、在生物燃料生产中的作用以及植物细胞骨架元件在植物防御反应中的作用,以应对病原体或不利环境条件。最终,本工作调查了细胞骨架蛋白作为植物遗传工程平台的潜力,提名某些细胞骨架蛋白作为作物和其他经济重要植物中有利性状的载体。