Graduate School of Science, The University of Tokyo, Bunkyo-ku, Tokyo 113-0033, Japan.
RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.
Plant Cell. 2021 Oct 11;33(10):3272-3292. doi: 10.1093/plcell/koab192.
Heterophylly is the development of different leaf forms in a single plant depending on the environmental conditions. It is often observed in amphibious aquatic plants that can grow under both aerial and submerged conditions. Although heterophylly is well recognized in aquatic plants, the associated developmental mechanisms and the molecular basis remain unclear. To clarify these underlying developmental and molecular mechanisms, we analyzed heterophyllous leaf formation in an aquatic plant, Callitriche palustris. Morphological analyses revealed extensive cell elongation and the rearrangement of cortical microtubules in the elongated submerged leaves of C. palustris. Our observations also suggested that gibberellin, ethylene, and abscisic acid all regulate the formation of submerged leaves. However, the perturbation of one or more of the hormones was insufficient to induce the formation of submerged leaves under aerial conditions. Finally, we analyzed gene expression changes during aerial and submerged leaf development and narrowed down the candidate genes controlling heterophylly via transcriptomic comparisons, including a comparison with a closely related terrestrial species. We discovered that the molecular mechanism regulating heterophylly in C. palustris is associated with hormonal changes and diverse transcription factor gene expression profiles, suggesting differences from the corresponding mechanisms in previously investigated amphibious plants.
异形叶性是指同一植株上根据环境条件发育出不同的叶片形态。这种现象在两栖水生植物中很常见,它们可以在空气和水下两种条件下生长。尽管异形叶性在水生植物中得到了广泛的认可,但相关的发育机制和分子基础仍不清楚。为了阐明这些潜在的发育和分子机制,我们分析了水生植物溪荪(Callitriche palustris)的异形叶性形成过程。形态学分析表明,溪荪伸长的水下叶片中存在广泛的细胞伸长和皮层微管的重排。我们的观察还表明,赤霉素、乙烯和脱落酸都调节水下叶片的形成。然而,一种或多种激素的扰动不足以在空气中诱导水下叶片的形成。最后,我们分析了在空中和水下叶片发育过程中的基因表达变化,并通过转录组比较缩小了控制异形叶性的候选基因范围,包括与亲缘关系密切的陆生物种的比较。我们发现,调节溪荪异形叶性的分子机制与激素变化和多样化的转录因子基因表达谱有关,这表明与之前研究的两栖植物的相应机制存在差异。