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Systemic control of legume susceptibility to rhizobial infection by a mobile microRNA

机译:通过可移动的microRNA系统控制豆类对根瘤菌的易感性

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摘要

Nitrogen-fixing root nodules on legumes result from two developmental processes, bacterial infection and nodule organogenesis. To balance symbiosis and plant growth, legume hosts restrict nodule numbers through an inducible autoregulatory process. Here, we present a mechanism where repression of a negative regulator ensures symbiotic susceptibility of uninfected roots of the host Lotus japonicus. We show that microRNA miR2111 undergoes shoot-to-root translocation to control rhizobial infection through posttranscriptional regulation of the symbiosis suppressor TOO MUCH LOVE in roots. miR2111 maintains a susceptible default status in uninfected hosts and functions as an activator of symbiosis downstream of LOTUS HISTIDINE KINASE1-mediated cytokinin perception in roots and HYPERNODULATION ABERRANT ROOT FORMATION1, a shoot factor in autoregulation. The miR2111-TML node ensures activation of feedback regulation to balance infection and nodulation events.
机译:豆类固氮根瘤是由两个发育过程引起的,即细菌感染和根瘤器官发生。为了平衡共生和植物生长,豆科植物宿主通过诱导型自动调节过程限制根瘤数量。在这里,我们提出了一种机制,其中负调节剂的阻遏确保宿主莲花的未感染根的共生易感性。我们显示,microRNA miR2111经历芽到根的易位,通过共生抑制因子TOO MUCH LOVE ROOT在根中的转录后调控来控制根瘤菌感染。 miR2111在未感染的宿主中保持易感性默认状态,并在根中的莲花组氨酸激酶1介导的细胞分裂素知觉下游和高结节异常根形成1(自调控的芽生因子)下游充当共生激活剂。 miR2111-TML节点可确保激活反馈调节以平衡感染和结瘤事件。

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