Department of Agriculture, Food and Environment, University of Pisa, Pisa, Italy.
Department of Agriculture, Food, Environment and Forestry, University of Florence, Florence, Italy.
Physiol Plant. 2024 Nov-Dec;176(6):e14587. doi: 10.1111/ppl.14587.
Innovations in light technologies (i.e. Light Emitting Diodes; LED) and cover films with specific optical features (e.g. photo-selective, light-extracting) have revolutionized crop production in both protected environments and open fields. The possibility to modulate the light spectra, thereby enriching/depleting cultivated plants with targeted wavebands has attracted increasing interest from both basic and applicative research. Indeed, the light environment not only influences plant biomass production but is also a pivotal factor in shaping plant size, development and metabolism. In the last decade, the strict interdependence between specific wavebands and the accumulation of targeted secondary metabolites has been exploited to improve the quality of horticultural products. Innovation in LED lighting has also marked the improvement of streetlamp illumination, thereby posing new questions about the possible influence of light pollution on urban tree metabolism. In this case, it is urgent and challenging to propose new, less-impacting solutions by modulating streetlamp spectra in order to preserve the ecosystem services provided by urban trees. The present review critically summarizes the main recent findings related to the morpho-anatomical, physiological, and biochemical changes induced by light spectra management via different techniques in crops as well as in non-cultivated species. This review explores the following topics: (1) plant growth in monochromatic environments, (2) the use of greenhouse light supplementation, (3) the application of covering films with different properties, and (4) the drawbacks of streetlamp illumination on urban trees. Additionally, it proposes new perspectives offered by in planta photomodulation.
光技术创新(即发光二极管;LED)和具有特定光学特性的覆盖膜(例如光选择、光提取)在保护地和开放田地中的作物生产中带来了革命性的变化。调节光光谱的可能性,从而用目标波段丰富/耗尽栽培植物,引起了基础研究和应用研究的越来越多的兴趣。事实上,光环境不仅影响植物生物量的产生,而且也是塑造植物大小、发育和代谢的关键因素。在过去的十年中,特定波段之间的严格相互依存关系和目标次生代谢物的积累被利用来提高园艺产品的质量。LED 照明的创新也标志着路灯照明的改善,从而对光污染对城市树木代谢的可能影响提出了新的问题。在这种情况下,通过调节路灯光谱来提出新的、影响较小的解决方案,以保护城市树木提供的生态系统服务,这是紧迫而具有挑战性的。本综述批判性地总结了最近与通过不同技术管理光光谱引起的作物以及非栽培物种的形态解剖、生理和生化变化相关的主要发现。本综述探讨了以下主题:(1)单色环境中的植物生长,(2)温室光照补充的使用,(3)不同特性覆盖膜的应用,以及(4)路灯照明对城市树木的缺点。此外,它还提出了植物体内光调节提供的新视角。