Fukaki Hidehiro, Okushima Yoko, Tasaka Masao
Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara, Japan.
Int Rev Cytol. 2007;256:111-37. doi: 10.1016/S0074-7696(07)56004-3.
Lateral root (LR) formation is an important organogenetic process that contributes to the establishment of root architecture in higher plants. In the angiosperms, LRs are initiated from the pericycle, an inner cell layer of the parent roots. Auxin is a key plant hormone that promotes LR formation, but the molecular mechanisms of auxin-mediated LR formation remain unknown. Molecular genetic studies using Arabidopsis mutants have revealed that the auxin transport system with a balance of influx and efflux is important for LR initiation and subsequent LR primordium development. In addition, normal auxin signaling mediated by two families of transcriptional regulators, Aux/IAAs and ARFs, is necessary for LR formation. This article is an update on the mechanisms of auxin-mediated LR formation in higher plants, particularly in Arabidopsis.
侧根形成是一个重要的器官发生过程,有助于高等植物根系结构的建立。在被子植物中,侧根起源于中柱鞘,即母根的内层细胞。生长素是促进侧根形成的关键植物激素,但其介导侧根形成的分子机制仍不清楚。利用拟南芥突变体进行的分子遗传学研究表明,具有流入和流出平衡的生长素运输系统对侧根起始和随后的侧根原基发育很重要。此外,由转录调节因子Aux/IAAs和ARFs两个家族介导的正常生长素信号传导是侧根形成所必需的。本文是关于高等植物,特别是拟南芥中生长素介导侧根形成机制的最新进展。