Graduate School of Biostudies, Kyoto University, Kyoto, 606-8502, Japan.
Plant Cell Environ. 2017 Nov;40(11):2502-2508. doi: 10.1111/pce.12908. Epub 2017 Mar 1.
Phytochromes comprise one of the major photoreceptor families in plants, and they regulate many aspects of plant growth and development throughout the plant life cycle. A canonical land plant phytochrome originated in the common ancestor of streptophytes. Phytochromes have diversified in seed plants and some basal land plants because of lineage-specific gene duplications that occurred during the course of land plant evolution. Molecular genetic analyses using Arabidopsis thaliana suggested that there are two types of phytochromes in angiosperms, light-labile type I and light-stable type II, which have different signaling mechanisms and which regulate distinct responses. In basal land plants, little is known about molecular mechanisms of phytochrome signaling, although red light/far-red photoreversible physiological responses and the distribution of phytochrome genes are relatively well documented. Recent advances in molecular genetics using the moss Physcomitrella patens and the liverwort Marchantia polymorpha revealed that basal land plants show far-red-induced responses and that the establishment of phytochrome-mediated transcriptional regulation dates back to at least the common ancestor of land plants. In this review, we summarize our knowledge concerning functions of land plant phytochromes, especially in basal land plants, and discuss subfunctionalization/neofunctionalization of phytochrome signaling during the course of land plant evolution.
光敏色素是植物中主要的光受体家族之一,它们在整个植物生命周期中调节植物生长和发育的许多方面。经典的陆地植物光敏色素起源于石松类植物的共同祖先。由于在陆地植物进化过程中发生了谱系特异性基因复制,种子植物和一些基生陆地植物中的光敏色素发生了多样化。使用拟南芥的分子遗传分析表明,被子植物中有两种类型的光敏色素,即光不稳定的 I 型和光稳定的 II 型,它们具有不同的信号机制,并调节不同的反应。在基生陆地植物中,尽管红光/远红光光可逆生理反应和光敏色素基因的分布相对较好地记录下来,但对光敏色素信号转导的分子机制知之甚少。使用藓类植物Physcomitrella patens 和地钱 Marchantia polymorpha 的分子遗传学的最新进展表明,基生陆地植物表现出远红光诱导的反应,并且至少在陆地植物的共同祖先中就建立了由光敏色素介导的转录调控。在这篇综述中,我们总结了我们对陆地植物光敏色素功能的了解,特别是在基生陆地植物中的了解,并讨论了陆地植物进化过程中光敏色素信号转导的亚功能化/新功能化。