Centre for Agricultural Genomics and Biotechnology, FAFSEM, University of Debrecen, Nyíregyháza, Hungary.
Plant Signal Behav. 2021 Jun 3;16(6):1902656. doi: 10.1080/15592324.2021.1902656. Epub 2021 Apr 27.
Cues and signals of the environment in nature can be either beneficial or detrimental from the growth and developmental perspectives. Plants, despite their limited spatial mobility, have developed advanced strategies to overcome the various and changing environmental impacts including stresses. plantlets, tissues and cells are constantly exposed to the influence of their environment that is well controlled. Light has a widely known morphogenetic effect on plants; however, other physical cues and signals are at least as important but were often neglected. In this review, I summarize our knowledge about the role of the mechanical stimuli, like sound, ultrasound, touch, or wounding in plant cultures. I summarize the molecular, biochemical, physiological, growth, and developmental changes they cause and how these processes are controlled; moreover, how their regulating or stimulating roles are applied in various plant biotechnological applications. Recent studies revealed that mechanical forces can be used for affecting the plant development and growth in plant tissue culture efficiently, and for increasing the efficacy of other plant biotechnological methods, like genetic transformation and secondary metabolite production.
从生长和发育的角度来看,自然界中环境的线索和信号可能是有益的,也可能是有害的。尽管植物的空间移动性有限,但它们已经发展出了先进的策略来克服包括胁迫在内的各种不断变化的环境影响。植物、组织和细胞不断受到环境的影响,这些影响受到很好的控制。光对植物有广泛的形态发生作用;然而,其他物理线索和信号至少同样重要,但往往被忽视。在这篇综述中,我总结了我们对机械刺激(如声音、超声波、触摸或创伤)在植物培养中的作用的认识。我总结了它们引起的分子、生化、生理、生长和发育变化,以及这些过程是如何被控制的;此外,它们的调节或刺激作用如何应用于各种植物生物技术应用中。最近的研究表明,机械力可用于有效地影响植物组织培养中的植物发育和生长,并提高其他植物生物技术方法(如遗传转化和次生代谢产物生产)的效果。