Nemhauser Jennifer L, Mockler Todd C, Chory Joanne
Plant Biology Laboratory, Salk Institute for Biological Studies, La Jolla, California, USA.
PLoS Biol. 2004 Sep;2(9):E258. doi: 10.1371/journal.pbio.0020258. Epub 2004 Aug 24.
How growth regulators provoke context-specific signals is a fundamental question in developmental biology. In plants, both auxin and brassinosteroids (BRs) promote cell expansion, and it was thought that they activated this process through independent mechanisms. In this work, we describe a shared auxin:BR pathway required for seedling growth. Genetic, physiological, and genomic analyses demonstrate that response from one pathway requires the function of the other, and that this interdependence does not act at the level of hormone biosynthetic control. Increased auxin levels saturate the BR-stimulated growth response and greatly reduce BR effects on gene expression. Integration of these two pathways is downstream from BES1 and Aux/IAA proteins, the last known regulatory factors acting downstream of each hormone, and is likely to occur directly on the promoters of auxin:BR target genes. We have developed a new approach to identify potential regulatory elements acting in each hormone pathway, as well as in the shared auxin:BR pathway. We show that one element highly overrepresented in the promoters of auxin- and BR-induced genes is responsive to both hormones and requires BR biosynthesis for normal expression. This work fundamentally alters our view of BR and auxin signaling and describes a powerful new approach to identify regulatory elements required for response to specific stimuli.
生长调节因子如何引发特定环境信号是发育生物学中的一个基本问题。在植物中,生长素和油菜素甾醇(BRs)都能促进细胞扩张,人们曾认为它们通过独立机制激活这一过程。在这项研究中,我们描述了一条幼苗生长所需的生长素与BR的共同通路。遗传学、生理学和基因组分析表明,一条通路的响应需要另一条通路的功能,而且这种相互依赖性并非作用于激素生物合成控制层面。生长素水平的升高使BR刺激的生长响应达到饱和,并极大地降低了BR对基因表达的影响。这两条通路的整合发生在BES1和Aux/IAA蛋白的下游,这是已知的在每种激素下游起作用的最后调控因子,并且可能直接发生在生长素与BR靶基因的启动子上。我们开发了一种新方法来鉴定在每种激素通路以及生长素与BR共同通路中起作用的潜在调控元件。我们发现,在生长素和BR诱导基因的启动子中高度富集的一个元件对两种激素都有响应,并且其正常表达需要BR生物合成。这项研究从根本上改变了我们对BR和生长素信号传导的看法,并描述了一种强大的新方法来鉴定对特定刺激作出响应所需的调控元件。