Department of Plant Molecular Biology, University of Lausanne, Biophore Building, CH-1015 Lausanne, Switzerland.
New Phytol. 2010 Oct;188(1):23-9. doi: 10.1111/j.1469-8137.2010.03387.x. Epub 2010 Jul 23.
• BREVIS RADIX (BRX) has been identified through a loss-of-function allele in the Umkirch-1 accession in a natural variation screen for Arabidopsis root growth vigor. Physiological and gene expression analyses have suggested that BRX is rate limiting for auxin-responsive gene expression by mediating cross-talk with the brassinosteroid pathway, as impaired root growth and reduced auxin perception of brx can be (partially) rescued by external brassinosteroid application. • Using genetic tools, we show that brx mutants also display significantly reduced cotyledon and leaf growth. • Similar to the root, the amplitude and penetrance of this phenotype depends on genetic background and shares the physiological features, reduced auxin perception and brassinosteroid rescue. Furthermore, reciprocal grafting experiments between mutant and complemented brx shoot scions and root stocks suggest that the shoot phenotypes are not an indirect consequence of the root phenotype. Finally, BRX gain-of-function lines display epinastic leaf growth and, in the case of dominant negative interference, increased epidermal cell size. Consistent with an impact of BRX on brassinosteroid biosynthesis, this phenotype is accompanied by increased brassinosteroid levels. • In summary, our results demonstrate a ubiquitous, although quantitatively variable role of BRX in modulating the growth rate in both the root and shoot.
• 通过对拟南芥根生长活力的自然变异筛选,在 Umkirch-1 品系中发现了短根(BRX),这是一个功能丧失等位基因。生理和基因表达分析表明,BRX 通过与油菜素甾体途径的交叉对话来限制生长素反应基因的表达,因为 BRX 受损的根生长和降低的生长素感知可以(部分)通过外源油菜素甾体的应用得到挽救。 • 使用遗传工具,我们表明 brx 突变体也显示出明显减少的子叶和叶片生长。 • 与根相似,这种表型的幅度和外显率取决于遗传背景,并具有相同的生理特征,即生长素感知降低和油菜素甾体挽救。此外,突变体和互补 brx 茎接穗和根砧木之间的相互嫁接实验表明,茎表型不是根表型的间接后果。最后,BRX 功能获得系显示出偏上生长的叶片生长,并且在显性负干扰的情况下,表皮细胞大小增加。与 BRX 对油菜素甾体生物合成的影响一致,这种表型伴随着油菜素甾体水平的增加。 • 总之,我们的结果表明 BRX 在调节根和茎的生长速度方面具有普遍的作用,尽管作用程度有所不同。