Department of Biology, Graduate School of Science, Kobe University, 1-1 Rokkodai, Kobe, Japan.
Development. 2012 Mar;139(5):883-93. doi: 10.1242/dev.071928. Epub 2012 Jan 25.
In most dicot plants, lateral root (LR) formation, which is important for the construction of the plant root system, is initiated from coordinated asymmetric cell divisions (ACD) of the primed LR founder cells in the xylem pole pericycle (XPP) of the existing roots. In Arabidopsis thaliana, two AUXIN RESPONSE FACTORs (ARFs), ARF7 and ARF19, positively regulate LR formation through activation of the plant-specific transcriptional regulators LATERAL ORGAN BOUNDARIES-DOMAIN 16/ASYMMETRIC LEAVES2-LIKE 18 (LBD16/ASL18) and the other related LBD/ASL genes. The exact biological role of these LBD/ASLs in LR formation is still unknown. Here, we demonstrate that LBD16/ASL18 is specifically expressed in the LR founder cells adjacent to the XPP before the first ACD and that it functions redundantly with the other auxin-inducible LBD/ASLs in LR initiation. The spatiotemporal expression of LBD16/ASL18 during LR initiation is dependent on the SOLITARY-ROOT (SLR)/IAA14-ARF7-ARF19 auxin signaling module. In addition, XPP-specific expression of LBD16/ASL18 in arf7 arf19 induced cell divisions at XPP, thereby restoring the LR phenotype. We also demonstrate that expression of LBD16-SRDX, a dominant repressor of LBD16/ASL18 and its related LBD/ASLs, does not interfere in the specification of LR founder cells with local activation of the auxin response, but it blocks the polar nuclear migration in LR founder cells before ACD, thereby blocking the subsequent LR initiation. Taken together, these results indicate that the localized activity of LBD16/ASL18 and its related LBD/ASLs is involved in the symmetry breaking of LR founder cells for LR initiation, a key step for constructing the plant root system.
在大多数双子叶植物中,侧根(LR)的形成对于植物根系的构建非常重要,它是从现有的根的木质部中柱鞘(XPP)中的已启动的 LR 起始细胞的协调不对称细胞分裂(ACD)开始的。在拟南芥中,两个 AUXIN RESPONSE FACTORs(ARFs),ARF7 和 ARF19,通过激活植物特异性转录调节因子 LATERAL ORGAN BOUNDARIES-DOMAIN 16/ASYMMETRIC LEAVES2-LIKE 18(LBD16/ASL18)和其他相关的 LBD/ASL 基因,正向调节 LR 的形成。这些 LBD/ASLs 在 LR 形成中的确切生物学作用仍然未知。在这里,我们证明 LBD16/ASL18 在第一次 ACD 之前,特异性地表达在紧邻 XPP 的 LR 起始细胞中,并且它与 LR 起始过程中其他生长素诱导的 LBD/ASLs 冗余。LBD16/ASL18 在 LR 起始过程中的时空表达依赖于 SOLITARY-ROOT(SLR)/IAA14-ARF7-ARF19 生长素信号模块。此外,在 arf7 arf19 中,XPP 特异性表达 LBD16/ASL18 诱导 XPP 处的细胞分裂,从而恢复 LR 表型。我们还证明,表达 LBD16-SRDX,一种 LBD16/ASL18 及其相关 LBD/ASLs 的显性抑制剂,不会干扰局部激活生长素反应的 LR 起始细胞的特异性,但它会在 ACD 之前阻止 LR 起始细胞的极性核迁移,从而阻止随后的 LR 起始。综上所述,这些结果表明,LBD16/ASL18 和其相关的 LBD/ASLs 的局部活性参与了 LR 起始细胞的对称性破坏,这是构建植物根系的关键步骤。