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UV-B 反应成为焦点:动态感光细胞相互作用和细胞类型特异性。

UV-B responses in the spotlight: Dynamic photoreceptor interplay and cell-type specificity.

机构信息

Laboratory of Functional Plant Biology, Department of Biology, Ghent University, Ghent, Belgium.

Department of Agricultural Economics, Ghent University, Coupure Links 653 B-9000, Ghent, Belgium.

出版信息

Plant Cell Environ. 2023 Nov;46(11):3194-3205. doi: 10.1111/pce.14680. Epub 2023 Aug 9.

Abstract

Plants are constantly exposed to a multitude of external signals, including light. The information contained within the full spectrum of light is perceived by a battery of photoreceptors, each with specific and shared signalling outputs. Recently, it has become clear that UV-B radiation is a vital component of the electromagnetic spectrum, guiding growth and being crucial for plant fitness. However, given the large overlap between UV-B specific signalling pathways and other photoreceptors, understanding how plants can distinguish UV-B specific signals from other light components deserves more scrutiny. With recent evidence, we propose that UV-B signalling and other light signalling pathways occur within distinct tissues and cell-types and that the contribution of each pathway depends on the type of response and the developmental stage of the plant. Elucidating the precise site(s) of action of each molecular player within these signalling pathways is key to fully understand how plants are able to orchestrate coordinated responses to light within the whole plant body. Focusing our efforts on the molecular study of light signal interactions to understand plant growth in natural environments in a cell-type specific manner will be a next step in the field of photobiology.

摘要

植物不断受到大量外部信号的影响,包括光。光的全光谱中的信息由一系列光感受器感知,每个感受器都具有特定和共享的信号输出。最近,人们已经清楚地认识到,UV-B 辐射是电磁光谱中的一个重要组成部分,它指导着植物的生长,对植物的适应性至关重要。然而,鉴于 UV-B 特定信号通路和其他光感受器之间存在很大的重叠,理解植物如何将 UV-B 特异性信号与其他光成分区分开来值得更深入的研究。有了最近的证据,我们提出 UV-B 信号和其他光信号通路发生在不同的组织和细胞类型中,并且每条通路的贡献取决于反应的类型和植物的发育阶段。阐明这些信号通路中每个分子参与者的确切作用部位对于全面理解植物如何在整个植物体中协调对光的反应至关重要。集中精力研究光信号相互作用的分子机制,以特定细胞类型的方式理解植物在自然环境中的生长,将是光生物学领域的下一步。

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