Krieg Christopher P, Chambers Sally M
Department of Botany University of Wisconsin Madison Wisconsin 53703 USA.
Department of Botany Marie Selby Botanical Gardens Sarasota Florida 34236 USA.
Appl Plant Sci. 2022 Apr 7;10(2):e11464. doi: 10.1002/aps3.11464. eCollection 2022 Mar-Apr.
All green plants alternate between the gametophyte and sporophyte life stages, but only seed-free vascular plants (ferns and lycophytes) have independent, free-living gametophytes. Fern and lycophyte gametophytes are significantly reduced in size and morphological complexity relative to their sporophytic counterparts and have often been overlooked in ecological and physiological studies. Understanding the ecological and physiological factors that directly impact this life stage is of critical importance because the ultimate existence of a sporophyte is dependent upon successful fertilization in the gametophyte generation. Furthermore, previous research has shown that the dual nature of the life cycle and the high dispersibility of spores can result in different geographic patterns between gametophytes and their respective sporophytes. This variation in distribution patterns likely exacerbates the separation of selective pressures acting on gametophyte and sporophyte generations, and can uniquely impact a species' ecology and physiology. Here, we provide a review of historical and contemporary methodologies used to examine ecological and physiological aspects of fern gametophytes, as well as those that allow for comparisons between the two generations. We conclude by suggesting methodological approaches to answer currently outstanding questions. We hope that the information covered herein will serve as a guide to current researchers and stimulate future discoveries in fern gametophyte ecology and physiology.
所有绿色植物都在配子体和孢子体生命阶段之间交替,但只有无种子维管植物(蕨类植物和石松类植物)具有独立的、自由生活的配子体。相对于它们的孢子体对应物,蕨类植物和石松类植物的配子体在大小和形态复杂性上显著降低,并且在生态和生理研究中常常被忽视。了解直接影响这个生命阶段的生态和生理因素至关重要,因为孢子体的最终存在取决于配子体世代的成功受精。此外,先前的研究表明,生命周期的双重性质和孢子的高分散性会导致配子体与其各自的孢子体之间出现不同的地理分布模式。这种分布模式的差异可能会加剧作用于配子体和孢子体世代的选择压力的分离,并可能独特地影响一个物种的生态和生理。在这里,我们综述了用于研究蕨类植物配子体生态和生理方面以及允许对两代进行比较的历史和当代方法。我们通过提出回答当前未解决问题的方法来得出结论。我们希望本文涵盖的信息将为当前的研究人员提供指导,并激发蕨类植物配子体生态和生理方面的未来发现。