首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Manipulation of light environment for optimising photoreceptor activity towards enhancing plant traits of agronomic and horticultural importance in crops
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Manipulation of light environment for optimising photoreceptor activity towards enhancing plant traits of agronomic and horticultural importance in crops

机译:操纵光环境以优化感光器活性,以增强作物中具有农艺和园艺重要性的植物性状

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摘要

Artificial lighting systems have tremendously aided the provision of efficient energy for photosynthesis in crop plants but these are seldom fine-tuned to optimally regulate plant growth. Plants are endowed with photoreceptors that enable them to utilise light of different wavelengths as cues for growth and development. These photoreceptors initiate downstream signalling pathways that modulate gene expression which regulates growth and development in the plant. Numerous studies have described these photoreceptors as biochemical switches that can be selectively regulated to control plant growth and development. The rapid advances in our understanding of plant photo-sensory processes, have propelled efforts to extend these findings to the design of plant growth strategies aimed at enhancing plant traits of agronomic importance in crops by manipulating the light environment. Here, we provide an overview of the different known plant photoreceptors and how the quality, quantity or duration of light can affect plant traits such as yield, quality/nutrition, disease/pathogen resistance and flowering; that can enhance the agricultural and/or horticultural value of crops. The objective of the review is to highlight the potential of (and need for) transfer of information gained from laboratory experiments, for optimising photoreceptor activity towards improving specific plant traits, thereby facilitating sustainable and market-oriented crop production in agricultural and horticultural crops along with enhancement in yield and nutrition.
机译:人工照明系统极大地帮助了为作物植物的光合作用提供有效的能量,但这些系统很少被微调以最佳地调节植物生长。植物被赋予了光感受器,使它们能够利用不同波长的光作为生长和发育的线索。这些光感受器启动下游信号通路,调节基因表达,调节植物的生长和发育。许多研究将这些光感受器描述为生化开关,可以选择性地调节以控制植物的生长和发育。我们对植物光感过程的理解取得了快速进展,推动了将这些发现扩展到植物生长策略的设计,旨在通过操纵光环境来增强作物中具有农艺重要性的植物性状。在这里,我们概述了不同的已知植物光感受器,以及光的质量、数量或持续时间如何影响植物性状,如产量、质量/营养、抗病/病原体和开花;可以提高作物的农业和/或园艺价值。本综述的目的是强调从实验室实验中获得的信息转移的潜力(和必要性),以优化感光细胞活性以改善特定的植物性状,从而促进农业和园艺作物的可持续和市场导向的作物生产,同时提高产量和营养。

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