Colling Janine, Tohge Takayuki, De Clercq Rebecca, Brunoud Geraldine, Vernoux Teva, Fernie Alisdair R, Makunga Nokwanda P, Goossens Alain, Pauwels Laurens
Department of Plant Systems Biology, Flanders Institute for Biotechnology, (VIB), Technologiepark 927, B-9052 Gent, Belgium Department of Plant Biotechnology and Bioinformatics, Ghent University, Technologiepark 927, B-9052 Gent, Belgium Institute for Plant Biotechnology, Department of Genetics, Stellenbosch University, Stellenbosch, 7602, South Africa.
Max-Planck-Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476, Potsdam-Golm, Germany.
J Exp Bot. 2015 Aug;66(17):5337-49. doi: 10.1093/jxb/erv291. Epub 2015 Jun 12.
Lateral organ boundary formation is highly regulated by transcription factors and hormones such as auxins and brassinosteroids. However, in contrast to many other developmental processes in plants, no role for signalling peptides in the regulation of this process has been reported yet. The first characterization of the secreted cysteine-rich TAXIMIN (TAX) signalling peptides in Arabidopsis is presented here. TAX1 overexpression resulted in minor alterations in the primary shoot and root metabolome, abnormal fruit morphology, and fusion of the base of cauline leaves to stems forming a decurrent leaf attachment. The phenotypes at the paraclade junction match TAX1 promoter activity in this region and are similar to loss of LATERAL ORGAN FUSION (LOF) transcription factor function. Nevertheless, TAX1 expression was unchanged in lof1lof2 paraclade junctions and, conversely, LOF gene expression was unchanged in TAX1 overexpressing plants, suggesting TAX1 may act independently. This study identifies TAX1 as the first plant signalling peptide influencing lateral organ separation and implicates the existence of a peptide signal cascade regulating this process in Arabidopsis.
侧生器官边界的形成受到转录因子以及生长素和油菜素内酯等激素的高度调控。然而,与植物中的许多其他发育过程不同,目前尚未报道信号肽在该过程调控中的作用。本文首次对拟南芥中分泌的富含半胱氨酸的TAXIMIN(TAX)信号肽进行了表征。TAX1过表达导致初生茎和根代谢组出现微小变化、果实形态异常以及茎生叶基部与茎融合形成下延叶附着。在副枝连接处的表型与该区域TAX1启动子活性相匹配,并且与侧生器官融合(LOF)转录因子功能丧失相似。然而,在lof1lof2副枝连接处TAX1表达未发生变化,相反,在TAX1过表达植物中LOF基因表达也未发生变化,这表明TAX1可能独立发挥作用。本研究确定TAX1为首个影响侧生器官分离的植物信号肽,并暗示在拟南芥中存在调节该过程的肽信号级联反应。