Arinole, a novel auxin-stimulating benzoxazole, affects root growth and promotes adventitious root formation

生长素 突变体 胚芽鞘 生物 拟南芥 拟南芥 侧根 向重力性 诱导剂 化学 植物 生物化学 基因
作者
Thomas Depaepe,Els Prinsen,Yuming Hu,Raul Sanchez‐Muñoz,Bram Denoo,Dieter Buyst,Hajer Darouez,Stefaan Werbrouck,Ken‐ichiro Hayashi,José C. Martins,Johan M. Winne,Dominique Van Der Straeten
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:75 (18): 5681-5702
标识
DOI:10.1093/jxb/erae282
摘要

The triple response phenotype is characteristic for seedlings treated with the phytohormone ethylene or its direct precursor 1-aminocyclopropane-carboxylic acid, and is often employed to find novel chemical tools to probe ethylene responses. We identified a benzoxazole-urea derivative (B2) partially mimicking ethylene effects in a triple response bioassay. A phenotypic analysis demonstrated that B2 and its closest analogue arinole (ARI) induced phenotypic responses reminiscent of seedlings with elevated levels of auxin, including impaired hook development and inhibition of seedling growth. Specifically, ARI reduced longitudinal cell elongation in roots, while promoting cell division. In contrast to other natural or synthetic auxins, ARI mostly acts as an inducer of adventitious root development, with only limited effects on lateral root development. Quantification of free auxins and auxin biosynthetic precursors as well as auxin-related gene expression demonstrated that ARI boosts global auxin levels. In addition, analyses of auxin reporter lines and mutants, together with pharmacological assays with auxin-related inhibitors, confirmed that ARI effects are facilitated by TRYPTOPHAN AMINOTRANSFERASE1 (TAA1)-mediated auxin synthesis. ARI treatment in an array of species, including Arabidopsis, pea, tomato, poplar, and lavender, resulted in adventitious root formation, which is a desirable trait in both agriculture and horticulture.
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