Graduate School of Science and Technology, Kumamoto University, 860-8555 Kumamoto, Japan.
Section for Evolutionary Biology and Genetics, Department of Biosciences, University of Oslo, 0316 Oslo, Norway.
Plant Cell. 2021 Sep 24;33(9):2915-2934. doi: 10.1093/plcell/koab173.
An understanding of land plant evolution is a prerequisite for in-depth knowledge of plant biology. Here we extract and explore information hidden in the increasing number of sequenced plant genomes, from bryophytes to angiosperms, to elucidate a specific biological question-how peptide signaling evolved. To conquer land and cope with changing environmental conditions, plants have gone through transformations that must have required innovations in cell-to-cell communication. We discuss peptides mediating endogenous and exogenous changes by interaction with receptors activating intracellular molecular signaling. Signaling peptides were discovered in angiosperms and operate in tissues and organs such as flowers, seeds, vasculature, and 3D meristems that are not universally conserved across land plants. Nevertheless, orthologs of angiosperm peptides and receptors have been identified in nonangiosperms. These discoveries provoke questions regarding coevolution of ligands and their receptors, and whether de novo interactions in peptide signaling pathways may have contributed to generate novel traits in land plants. The answers to such questions will have profound implications for the understanding of the evolution of cell-to-cell communication and the wealth of diversified terrestrial plants. Under this perspective, we have generated, analyzed, and reviewed phylogenetic, genomic, structural, and functional data to elucidate the evolution of peptide signaling.
理解陆地植物的进化是深入了解植物生物学的前提。在这里,我们从苔藓植物到被子植物中提取和探索隐藏在越来越多已测序植物基因组中的信息,以阐明一个特定的生物学问题——肽信号是如何进化的。为了征服陆地并应对不断变化的环境条件,植物经历了一系列的转变,这些转变必然需要在细胞间通讯方面进行创新。我们讨论了通过与激活细胞内分子信号的受体相互作用来介导内源性和外源性变化的肽。在被子植物中发现了信号肽,它们在花、种子、脉管系统和 3D 分生组织等组织和器官中起作用,而这些组织和器官在陆地植物中并非普遍保守。然而,在非被子植物中也鉴定出了与被子植物肽和受体具有同源性的基因。这些发现引发了关于配体及其受体的共同进化的问题,以及肽信号通路中的新相互作用是否可能有助于在陆地植物中产生新的特征。这些问题的答案将对理解细胞间通讯的进化和多样化的陆地植物具有深远的意义。从这个角度出发,我们生成、分析和综述了系统发育、基因组、结构和功能数据,以阐明肽信号的进化。