Department of Plant Systems Biology, VIB, Gent, Belgium.
Nat Chem Biol. 2012 Sep;8(9):798-805. doi: 10.1038/nchembio.1044. Epub 2012 Aug 12.
The acquisition of water and nutrients by plant roots is a fundamental aspect of agriculture and strongly depends on root architecture. Root branching and expansion of the root system is achieved through the development of lateral roots and is to a large extent controlled by the plant hormone auxin. However, the pleiotropic effects of auxin or auxin-like molecules on root systems complicate the study of lateral root development. Here we describe a small-molecule screen in Arabidopsis thaliana that identified naxillin as what is to our knowledge the first non-auxin-like molecule that promotes root branching. By using naxillin as a chemical tool, we identified a new function for root cap-specific conversion of the auxin precursor indole-3-butyric acid into the active auxin indole-3-acetic acid and uncovered the involvement of the root cap in root branching. Delivery of an auxin precursor in peripheral tissues such as the root cap might represent an important mechanism shaping root architecture.
植物根系对水分和养分的获取是农业的一个基本方面,而这强烈依赖于根系结构。侧根的发育和根系的扩展是通过根分支来实现的,而根分支在很大程度上受到植物激素生长素的控制。然而,生长素或类似生长素的分子对根系的多效性影响使得侧根发育的研究变得复杂。在这里,我们描述了在拟南芥中进行的一个小分子筛选,结果鉴定出 naxillin 是一种迄今为止已知的第一个促进根分支的非生长素样分子。通过使用 naxillin 作为化学工具,我们发现了根冠特有的将生长素前体吲哚-3-丁酸转化为活性生长素吲哚-3-乙酸的新功能,并揭示了根冠在根分支中的参与。在根冠等外周组织中输送生长素前体可能代表了一种塑造根系结构的重要机制。