Department of Plant Biology, Rutgers the State University of New Jersey, New Brunswick, NJ 08901, USA.
Plant Physiology, Matthias Schleiden Institute, University of Jena, Jena 07737, Germany.
Plant Cell. 2021 Oct 11;33(10):3207-3234. doi: 10.1093/plcell/koab189.
The aquatic Lemnaceae family, commonly called duckweed, comprises some of the smallest and fastest growing angiosperms known on Earth. Their tiny size, rapid growth by clonal propagation, and facile uptake of labeled compounds from the media were attractive features that made them a well-known model for plant biology from 1950 to 1990. Interest in duckweed has steadily regained momentum over the past decade, driven in part by the growing need to identify alternative plants from traditional agricultural crops that can help tackle urgent societal challenges, such as climate change and rapid population expansion. Propelled by rapid advances in genomic technologies, recent studies with duckweed again highlight the potential of these small plants to enable discoveries in diverse fields from ecology to chronobiology. Building on established community resources, duckweed is reemerging as a platform to study plant processes at the systems level and to translate knowledge gained for field deployment to address some of society's pressing needs. This review details the anatomy, development, physiology, and molecular characteristics of the Lemnaceae to introduce them to the broader plant research community. We highlight recent research enabled by Lemnaceae to demonstrate how these plants can be used for quantitative studies of complex processes and for revealing potentially novel strategies in plant defense and genome maintenance.
水鳖科,俗称浮萍,是地球上已知的最小和生长最快的开花植物之一。它们的体型微小、通过无性繁殖快速生长,以及易于从培养基中吸收标记化合物的特性,使它们成为 20 世纪 50 年代至 90 年代植物生物学的知名模式生物。在过去的十年中,人们对浮萍的兴趣稳步增强,部分原因是人们越来越需要从传统农业作物中寻找替代植物,以应对气候变化和人口快速增长等紧迫的社会挑战。随着基因组技术的快速发展,最近对浮萍的研究再次强调了这些小型植物在从生态学到时间生物学等不同领域进行发现的潜力。基于已建立的社区资源,浮萍再次成为研究系统水平植物过程的平台,并将获得的知识转化为实地部署,以解决一些社会的紧迫需求。本文详细介绍了水鳖科的解剖结构、发育、生理学和分子特征,旨在向更广泛的植物研究界介绍它们。我们强调了最近通过浮萍开展的研究,展示了这些植物如何用于复杂过程的定量研究,并揭示了植物防御和基因组维护方面潜在的新策略。