Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.
Dev Cell. 2010 Jul 20;19(1):103-13. doi: 10.1016/j.devcel.2010.06.004.
Division of the Arabidopsis zygote defines two fundamentally different developmental domains, the proembryo and suspensor. The resulting boundary separates domain-specific gene expression, and a signal originating from the proembryo instructs the suspensor to generate the root stem cell niche. While root induction is known to require the phytohormone auxin and the Auxin Response Factor MONOPTEROS, it has remained largely elusive how the two domains involved in this process are initially specified. Here, we show that the GATA factor HANABA TARANU (HAN) is required to position the inductive proembryo boundary. Mutations in HAN cause a coordinated apical shift of gene expression patterns, revealing that HAN regulates transcription in the basal proembryo. Key auxin transporters are affected as early as the 8 cell stage, resulting in apical redistribution of auxin. Remarkably, han embryos eventually organize a root independent of MONOPTEROS and the suspensor around a new boundary marked by the auxin maximum.
拟南芥合子的分裂定义了两个截然不同的发育域,原胚和胚柄。由此产生的边界分隔了特定于域的基因表达,并且来自原胚的信号指示胚柄产生根干细胞小生境。虽然已知根的诱导需要植物激素生长素和生长素反应因子 MONOPTEROS,但在这个过程中涉及的两个域最初是如何被指定的,这在很大程度上仍然难以捉摸。在这里,我们表明 GATA 因子 HANABA TARANU(HAN)是定位诱导原胚边界所必需的。HAN 突变会导致基因表达模式的协调上移,表明 HAN 调节基础原胚中的转录。关键的生长素转运蛋白早在 8 细胞阶段就受到影响,导致生长素在顶端的重新分布。值得注意的是,han 胚胎最终在一个新的边界周围组织根,这个边界由生长素最大值标记,而不需要 MONOPTEROS 和胚柄。