Li Taotao, Kang Xinke, Lei Wei, Yao Xiuhong, Zou Lijuan, Zhang Dawei, Lin Honghui
Ministry of Education Key Laboratory for Bio-Resource and Eco-Environment, College of Life Science, State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, 610064, China.
School of Life Science and Engineering, Henan University of Urban Construction, Pingdingshan, 467044, China.
J Integr Plant Biol. 2020 Oct;62(10):1500-1517. doi: 10.1111/jipb.12931. Epub 2020 Jun 8.
In multicellular organisms, the balance between cell division and differentiation determines organ size, and represents a central unknown in developmental biology. In Arabidopsis roots, this balance is mediated between cytokinin and auxin through a regulatory circuit converging on the IAA3/SHORT HYPOCOTYL 2 (SHY2) gene. Here, we show that crosstalk between brassinosteroids (BRs) and auxin occurs in the vascular transition zone to promote root meristem development. We found that BR increases root meristem size by up-regulating expression of the PINFORMED 7 (PIN7) gene and down-regulating expression of the SHY2 gene. In addition, BES1 could directly bind to the promoter regions of both PIN7 and SHY2, indicating that PIN7 and SHY2 mediate the BR-induced growth of the root meristem by serving as direct targets of BES1. Moreover, the PIN7 overexpression and loss-of-function SHY2 mutant were sensitive to the effects of BR and could partially suppress the short-root phenotypes associated with deficient BR signaling. Interestingly, BRs could inhibit the accumulation of SHY2 protein in response to cytokinin. Taken together, these findings suggest that a complex equilibrium model exists in which regulatory interactions among BRs, auxin, and cytokinin regulate optimal root growth.
在多细胞生物中,细胞分裂与分化之间的平衡决定了器官大小,这是发育生物学中一个核心的未知问题。在拟南芥根中,这种平衡通过一个汇聚于IAA3/SHORT HYPOCOTYL 2(SHY2)基因的调控回路,在细胞分裂素和生长素之间介导。在此,我们表明油菜素类固醇(BRs)与生长素之间的相互作用发生在维管过渡区,以促进根分生组织发育。我们发现BR通过上调PINFORMED 7(PIN7)基因的表达和下调SHY2基因的表达来增加根分生组织大小。此外,BES1能够直接结合到PIN7和SHY2的启动子区域,这表明PIN7和SHY2作为BES1的直接靶点,介导了BR诱导的根分生组织生长。而且,PIN7过表达和功能缺失的SHY2突变体对BR的作用敏感,并且能够部分抑制与BR信号缺陷相关的短根表型。有趣的是,BRs能够抑制细胞分裂素诱导的SHY2蛋白积累。综上所述,这些发现表明存在一个复杂的平衡模型,其中BRs、生长素和细胞分裂素之间的调控相互作用调节着最佳的根生长。