Department of Molecular Biology, Aarhus University, Aarhus C, Denmark.
Mol Plant Microbe Interact. 2011 Nov;24(11):1385-95. doi: 10.1094/MPMI-05-11-0142.
Cytokinin plays a central role in the formation of nitrogen-fixing root nodules following inoculation with rhizobia. We show that exogenous cytokinin induces formation of discrete and easily visible nodule primordia in Lotus japonicus roots. The expression of nodulin genes was up-regulated upon cytokinin treatment, suggesting that the genuine nodulation program was indeed activated. This offers a simple approach for dissecting the underlying mechanism. Cytokinin-induced nodule primordia formation was unperturbed in several loss-of-function mutants impaired in epidermal responses to either rhizobial infection, Nod factor application, or both. However, absence of primordia in nsp1, nsp2, and nin mutants showed the requirement for these transcriptional regulators in the cytokinin-mediated activation of the root cortex. Distinguishing the epidermal and cortical responses further, we found that external cytokinin application induced expression of the Nin::GUS reporter gene within the root cortex but not in the root epidermis. Using L. japonicus lhk1-1 and har1 mutants, we demonstrate that discrete activation of root cortical cells by cytokinin depends on the LHK1 cytokinin receptor and is subjected to HAR1-mediated autoregulation.
细胞分裂素在根瘤菌接种后形成固氮根瘤中起着核心作用。我们发现,外源细胞分裂素诱导了 Lotus japonicus 根中离散且易于观察的根瘤原基的形成。细胞分裂素处理后,nodulin 基因的表达上调,表明真正的结瘤程序确实被激活了。这为剖析其潜在机制提供了一种简单的方法。在几个丧失功能的突变体中,细胞分裂素诱导的根瘤原基形成不受影响,这些突变体的表皮对根瘤菌感染、Nod 因子应用或两者都有反应缺陷。然而,nsp1、nsp2 和 nin 突变体中原基的缺失表明这些转录因子在细胞分裂素介导的根皮层激活中是必需的。进一步区分表皮和皮层反应,我们发现,外源细胞分裂素处理诱导 Nin::GUS 报告基因在根皮层内表达,但不在根表皮内表达。利用 L. japonicus lhk1-1 和 har1 突变体,我们证明细胞分裂素对根皮层细胞的离散激活取决于 LHK1 细胞分裂素受体,并受到 HAR1 介导的自动调节。