State Key Laboratory of Biocontrol and Guangdong Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, China.
Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8601, Japan.
J Integr Plant Biol. 2019 Apr;61(4):463-477. doi: 10.1111/jipb.12711. Epub 2018 Nov 12.
Legumes can control the number of symbiotic nodules that form on their roots, thus balancing nitrogen assimilation and energy consumption. Two major pathways participate in nodulation: the Nod factor (NF) signaling pathway which involves recognition of rhizobial bacteria by root cells and promotion of nodulation, and the autoregulation of nodulation (AON) pathway which involves long-distance negative feedback between roots and shoots. Although a handful of genes have a clear role in the maintenance of nodule number, additional unknown factors may also be involved in this process. Here, we identify a novel function for a Lotus japonicus ALOG (Arabidopsis LSH1 and Oryza G1) family member, LjALOG1, involved in positively regulating nodulation. LjALOG1 expression increased substantially after inoculation with rhizobia, with high levels of expression in whole nodule primordia and in the base of developing nodules. The ljalog1 mutants, which have an insertion of the LORE1 retroelement in LjALOG1, had significantly fewer nodules compared with wild type, along with increased expression of LjCLE-RS1 (L. japonicus CLE Root Signal 1), which encodes a nodulation suppressor in the AON pathway. In summary, our findings identified a novel factor that participates in controlling nodulation, possibly by suppressing the AON pathway.
豆类可以控制在其根部形成共生根瘤的数量,从而平衡氮吸收和能量消耗。有两条主要途径参与结瘤:根瘤菌信号途径,涉及根细胞对根瘤菌的识别和促进结瘤;以及结瘤的自身调控途径,涉及根和梢之间的长距离负反馈。虽然少数基因在维持根瘤数量方面具有明确的作用,但可能还有其他未知因素也参与了这个过程。在这里,我们确定了一个参与正向调控结瘤的 Lotus japonicus ALOG(Arabidopsis LSH1 和 Oryza G1)家族成员 LjALOG1 的新功能。LjALOG1 的表达在接种根瘤菌后显著增加,在整个根瘤原基和发育中的根瘤基部表达水平较高。ljalog1 突变体在 LjALOG1 中插入了 LORE1 反转元件,与野生型相比,根瘤数量明显减少,同时 CLE-RS1(L. japonicus CLE Root Signal 1)的表达增加,该基因编码 AON 途径中的结瘤抑制因子。总之,我们的发现确定了一个参与调控结瘤的新因子,可能通过抑制 AON 途径来实现。