Novak Stacey D, Luna Lila J, Gamage Roshan N
a Department of Biology ; University of La Verne ; La Verne , CA USA.
Plant Signal Behav. 2014;9(10):e972277. doi: 10.4161/psb.32169.
Auxin's capacity to regulate aspects of plant development has been well characterized in model plant systems. In contrast, orchids have received considerably less attention, but the realization that many orchid species are endangered has led to culture-based propagation studies which have unveiled some functions for auxin in this system. This mini-review summarizes the many auxin-mediated developmental responses in orchids that are consistent with model systems; however, it also brings to the forefront auxin responses that are unique to orchid development, namely protocorm formation and ovary/ovule maturation. With regard to shoot establishment, we also assess auxin's involvement in orchid germination, PLB formation, and somatic embryogenesis. Further, it makes evident that auxin flow during germination of the undifferentiated, but mature, orchid embryo mirrors late embryogenesis of typical angiosperms. Also discussed is the use of orchid protocorms in future phytohormone studies to better understand the mechanisms behind meristem formation and organogenesis.
生长素调节植物发育各方面的能力在模式植物系统中已得到充分表征。相比之下,兰花受到的关注要少得多,但许多兰花物种濒临灭绝这一认识促使了基于培养的繁殖研究,这些研究揭示了生长素在该系统中的一些功能。这篇小型综述总结了兰花中许多与模式系统一致的生长素介导的发育反应;然而,它也突出了兰花发育特有的生长素反应,即原球茎形成和子房/胚珠成熟。关于芽的建立,我们还评估了生长素在兰花种子萌发、原球茎样体形成和体细胞胚胎发生中的作用。此外,很明显,未分化但成熟的兰花胚胎萌发过程中的生长素流动反映了典型被子植物的晚期胚胎发育。还讨论了在未来植物激素研究中使用兰花原球茎以更好地理解分生组织形成和器官发生背后的机制。