Department of Plant Systems Biology, VIB, Technologiepark 927, B-9052 Ghent, Belgium.
Curr Biol. 2010 Oct 12;20(19):1697-706. doi: 10.1016/j.cub.2010.09.007. Epub 2010 Sep 30.
Lateral roots are formed at regular intervals along the main root by recurrent specification of founder cells. To date, the mechanism by which branching of the root system is controlled and founder cells become specified remains unknown.
Our study reports the identification of the auxin regulatory components and their target gene, GATA23, which control lateral root founder cell specification. Initially, a meta-analysis of lateral root-related transcriptomic data identified the GATA23 transcription factor. GATA23 is expressed specifically in xylem pole pericycle cells before the first asymmetric division and is correlated with oscillating auxin signaling maxima in the basal meristem. Also, functional studies revealed that GATA23 controls lateral root founder cell identity. Finally, we show that an Aux/IAA28-dependent auxin signaling mechanism in the basal meristem controls GATA23 expression.
We have identified the first molecular components that control lateral root founder cell identity in the Arabidopsis root. These include an IAA28-dependent auxin signaling module in the basal meristem region that regulates GATA23 expression and thereby lateral root founder cell specification and root branching patterns.
侧根是通过创始细胞的反复特化沿着主根在规则的间隔处形成的。迄今为止,控制根系分支和创始细胞特化的机制尚不清楚。
我们的研究报告了鉴定生长素调节成分及其靶基因 GATA23 的结果,它们控制侧根创始细胞的特化。最初,对侧根相关转录组数据的荟萃分析鉴定了 GATA23 转录因子。GATA23 在第一次不对称分裂之前特异性表达于木质部中柱鞘细胞,并且与基部分生组织中生长素信号的振荡最大值相关。此外,功能研究表明 GATA23 控制侧根创始细胞的身份。最后,我们表明,基部分生组织中Aux/IAA28 依赖的生长素信号机制控制 GATA23 的表达。
我们已经鉴定出控制拟南芥根中侧根创始细胞身份的第一个分子成分。这些成分包括在基部分生组织区域的 IAA28 依赖性生长素信号模块,该模块调节 GATA23 的表达,从而控制侧根创始细胞的特化和根系分支模式。