Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Av. da República, 2780-157 Oeiras, Portugal.
Leibniz-Institut für Gemüse- und Zierpflanzenbau, Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany.
J Exp Bot. 2022 Jun 24;73(12):3881-3897. doi: 10.1093/jxb/erac142.
Light is a key determinant for plant growth, development, and ultimately yield. Phytochromes, red/far-red photoreceptors, play an important role in plant architecture, stress tolerance, and productivity. In the model plant Arabidopsis, it has been shown that PHYTOCHROME-INTERACTING FACTORS (PIFs; bHLH transcription factors) act as central hubs in the integration of external stimuli to regulate plant development. Recent studies have unveiled the importance of PIFs in crops. They are involved in the modulation of plant architecture and productivity through the regulation of cell division and elongation in response to different environmental cues. These studies show that different PIFs have overlapping but also distinct functions in the regulation of plant growth. Therefore, understanding the molecular mechanisms by which PIFs regulate plant development is crucial to improve crop productivity under both optimal and adverse environmental conditions. In this review, we discuss current knowledge of PIFs acting as integrators of light and other signals in different crops, with particular focus on the role of PIFs in responding to different environmental conditions and how this can be used to improve crop productivity.
光是决定植物生长、发育和最终产量的关键因素。光敏色素,红光/远红光受体,在植物结构、胁迫耐受和生产力方面发挥着重要作用。在模式植物拟南芥中,已经表明 PHYTOCHROME-INTERACTING FACTORS(PIFs;bHLH 转录因子)作为整合外部刺激的中心枢纽,调节植物发育。最近的研究揭示了 PIFs 在作物中的重要性。它们通过调节细胞分裂和伸长来响应不同的环境线索,参与植物结构和生产力的调节。这些研究表明,不同的 PIFs 在调节植物生长方面具有重叠但又不同的功能。因此,了解 PIFs 调节植物发育的分子机制对于在最佳和不利环境条件下提高作物生产力至关重要。在这篇综述中,我们讨论了 PIFs 作为不同作物中光和其他信号的整合因子的现有知识,特别关注 PIFs 在响应不同环境条件中的作用,以及如何利用这一点来提高作物生产力。