Ng Jason L P, Welvaert Astrid, Wen Jiangqi, Chen Rujin, Mathesius Ulrike
Division of Plant Science, Research School of Biology, Australian National University, Canberra, Australia.
Noble Research Institute LLC, Ardmore, OK, USA.
J Exp Bot. 2020 Feb 19;71(4):1562-1573. doi: 10.1093/jxb/erz510.
The development of root nodules leads to an increased auxin response in early nodule primordia, which is mediated by changes in acropetal auxin transport in some legumes. Here, we investigated the role of root basipetal auxin transport during nodulation. Rhizobia inoculation significantly increased basipetal auxin transport in both Medicago truncatula and Lotus japonicus. In M. truncatula, this increase was dependent on functional Nod factor signalling through NFP, NIN, and NSP2, as well as ethylene signalling through SKL. To test whether increased basipetal auxin transport is required for nodulation, we examined a loss-of-function mutant of the M. truncatula PIN2 gene. The Mtpin2 mutant exhibited a reduction in basipetal auxin transport and an agravitropic phenotype. Inoculation of Mtpin2 roots with rhizobia still led to a moderate increase in basipetal auxin transport, but the mutant nodulated normally. No clear differences in auxin response were observed during nodule development. Interestingly, inoculation of wild-type roots increased lateral root numbers, whereas inoculation of Mtpin2 mutants resulted in reduced lateral root numbers compared with uninoculated roots. We conclude that the MtPIN2 auxin transporter is involved in basipetal auxin transport, that its function is not essential for nodulation, but that it plays an important role in the control of lateral root development.
根瘤的形成会导致早期根瘤原基中生长素反应增强,在一些豆科植物中,这是由向顶生长素运输的变化介导的。在此,我们研究了根向基生长素运输在结瘤过程中的作用。接种根瘤菌显著增加了蒺藜苜蓿和日本百脉根中的向基生长素运输。在蒺藜苜蓿中,这种增加依赖于通过NFP、NIN和NSP2的功能性根瘤因子信号传导,以及通过SKL的乙烯信号传导。为了测试结瘤是否需要增加向基生长素运输,我们检测了蒺藜苜蓿PIN2基因的功能缺失突变体。Mtpin2突变体表现出向基生长素运输减少和无向重力性表型。用根瘤菌接种Mtpin2根仍导致向基生长素运输适度增加,但该突变体正常结瘤。在根瘤发育过程中未观察到生长素反应的明显差异。有趣的是,接种野生型根增加了侧根数量,而接种Mtpin2突变体与未接种根相比导致侧根数量减少。我们得出结论,MtPIN2生长素转运体参与向基生长素运输,其功能对结瘤不是必需的,但在侧根发育控制中起重要作用。