Czyzewicz Nathan, Shi Chun-Lin, Vu Lam Dai, Van De Cotte Brigitte, Hodgman Charlie, Butenko Melinka A, De Smet Ive
Division of Plant and Crop Sciences, School of Biosciences, University of Nottingham, Leicestershire LE12 5RD, UK.
Department of Biosciences, Section for Genetics and Evolutionary Biology, University of Oslo, N-0316 Oslo, Norway.
J Exp Bot. 2015 Aug;66(17):5229-43. doi: 10.1093/jxb/erv360. Epub 2015 Jul 17.
Plant roots are important for a wide range of processes, including nutrient and water uptake, anchoring and mechanical support, storage functions, and as the major interface with the soil environment. Several small signalling peptides and receptor kinases have been shown to affect primary root growth, but very little is known about their role in lateral root development. In this context, the CLE family, a group of small signalling peptides that has been shown to affect a wide range of developmental processes, were the focus of this study. Here, the expression pattern during lateral root initiation for several CLE family members is explored and to what extent CLE1, CLE4, CLE7, CLE26, and CLE27, which show specific expression patterns in the root, are involved in regulating root architecture in Arabidopsis thaliana is assessed. Using chemically synthesized peptide variants, it was found that CLE26 plays an important role in regulating A. thaliana root architecture and interacts with auxin signalling. In addition, through alanine scanning and in silico structural modelling, key residues in the CLE26 peptide sequence that affect its activity are pinpointed. Finally, some interesting similarities and differences regarding the role of CLE26 in regulating monocot root architecture are presented.
植物根系对于一系列广泛的过程都很重要,包括养分和水分吸收、固定和机械支撑、储存功能,以及作为与土壤环境的主要界面。已经证明几种小信号肽和受体激酶会影响主根生长,但对于它们在侧根发育中的作用却知之甚少。在这种情况下,CLE家族,这一组已被证明会影响广泛发育过程的小信号肽,成为了本研究的重点。在此,探索了几个CLE家族成员在侧根起始过程中的表达模式,并评估了在根中显示特定表达模式的CLE1、CLE4、CLE7、CLE26和CLE27在多大程度上参与调控拟南芥的根系结构。使用化学合成的肽变体,发现CLE26在调控拟南芥根系结构中起重要作用,并与生长素信号传导相互作用。此外,通过丙氨酸扫描和计算机模拟结构建模,确定了CLE26肽序列中影响其活性的关键残基。最后,介绍了关于CLE26在调控单子叶植物根系结构中的作用的一些有趣的异同点。