School of Biosciences, University of Birmingham, Birmingham, B15 2TT, UK.
Centre for Plant Integrative Biology, School of Biosciences, University of Nottingham, Nottingham, LE12 5RD, UK.
New Phytol. 2014 Sep;203(4):1194-1207. doi: 10.1111/nph.12879. Epub 2014 Jun 6.
Plant root system plasticity is critical for survival in changing environmental conditions. One important aspect of root architecture is lateral root development, a complex process regulated by hormone, environmental and protein signalling pathways. Here we show, using molecular genetic approaches, that the MYB transcription factor AtMYB93 is a novel negative regulator of lateral root development in Arabidopsis. We identify AtMYB93 as an interaction partner of the lateral-root-promoting ARABIDILLO proteins. Atmyb93 mutants have faster lateral root developmental progression and enhanced lateral root densities, while AtMYB93-overexpressing lines display the opposite phenotype. AtMYB93 is expressed strongly, specifically and transiently in the endodermal cells overlying early lateral root primordia and is additionally induced by auxin in the basal meristem of the primary root. Furthermore, Atmyb93 mutant lateral root development is insensitive to auxin, indicating that AtMYB93 is required for normal auxin responses during lateral root development. We propose that AtMYB93 is part of a novel auxin-induced negative feedback loop stimulated in a select few endodermal cells early during lateral root development, ensuring that lateral roots only develop when absolutely required. Putative AtMYB93 homologues are detected throughout flowering plants and represent promising targets for manipulating root systems in diverse crop species.
植物根系可塑性对于适应环境变化至关重要。根系结构的一个重要方面是侧根发育,这是一个受激素、环境和蛋白质信号通路调控的复杂过程。在这里,我们使用分子遗传学方法表明,MYB 转录因子 AtMYB93 是拟南芥侧根发育的一个新的负调控因子。我们确定 AtMYB93 是侧根促进蛋白 ARABIDILLO 的互作伙伴。atmyb93 突变体具有更快的侧根发育进程和增强的侧根密度,而 AtMYB93 过表达系则表现出相反的表型。AtMYB93 在早期侧根原基上方的内皮层细胞中强烈、特异和短暂表达,并被生长素在主根的基部分生组织中诱导。此外,atmyb93 突变体的侧根发育对生长素不敏感,表明 AtMYB93 是侧根发育过程中正常生长素反应所必需的。我们提出,AtMYB93 是一个新的生长素诱导负反馈回路的一部分,该回路在侧根发育早期的少数几个内皮层细胞中被刺激,以确保只有在绝对需要时才会发育侧根。在开花植物中检测到推定的 AtMYB93 同源物,它们是在不同作物物种中操纵根系的有前途的靶标。