Cell and Developmental Biology, John Innes Centre, Norwich NR4 7UH, United Kingdom.
Laboratory of Plant Microbe Interactions, Institut National de la Recherche Agronomique, Centre National de la Recherche Scientifique, Université de Toulouse, 31326 Castanet-Tolosan, France.
Plant Physiol. 2019 Apr;179(4):1704-1722. doi: 10.1104/pp.18.01572. Epub 2019 Feb 1.
The symbiotic infection of root cells by nitrogen-fixing rhizobia during nodulation requires the transcription factor Nodule Inception (NIN). Our root hair transcriptomic study extends NIN's regulon to include and genes involved in cell wall modification, gibberellin biosynthesis, and a comprehensive group of nutrient (N, P, and S) uptake and assimilation genes, suggesting that NIN's recruitment to nodulation was based on its role as a growth module, a role shared with other NIN-Like Proteins. The expression of jasmonic acid genes in suggests the involvement of NIN in the resolution of growth versus defense outcomes. We find that the regulation of the growth module component Nodulation Pectate Lyase by NIN, and its function in rhizobial infection, are conserved in hologalegina legumes, highlighting its recruitment as a major event in the evolution of nodulation. We find that Nodulation Pectate Lyase is secreted to the infection chamber and the lumen of the infection thread. Gene network analysis using the transcription factor mutants for and confirms hierarchical control of NIN over and shows that ERF Required for Nodulation1 acts independently to control infection. We conclude that while NIN shares functions with other NIN-Like Proteins, the conscription of key infection genes to NIN's control has made it a central regulatory hub for rhizobial infection.
共生的固氮根瘤菌在结瘤过程中感染根细胞需要转录因子结瘤起始(NIN)。我们的根毛转录组研究将 NIN 的调控基因扩展到包括细胞壁修饰、赤霉素生物合成以及一组全面的养分(N、P 和 S)吸收和同化基因的基因,表明 NIN 被招募到结瘤是基于其作为生长模块的作用,这一作用与其他 NIN 样蛋白共享。在 中 jasmonic acid 基因的表达表明 NIN 参与了生长与防御结果的解决。我们发现,NIN 对生长模块成分结瘤果胶裂解酶的调节及其在根瘤菌感染中的功能在全息螺菌属豆类中是保守的,这突出了它作为结瘤进化的一个主要事件的招募。我们发现结瘤果胶裂解酶被分泌到感染室和感染线的腔中。使用转录因子突变体进行的基因网络分析 和 证实了 NIN 对 和 的分层控制,并表明需要 ERF 以进行结瘤的作用独立于控制感染。我们的结论是,虽然 NIN 与其他 NIN 样蛋白具有相同的功能,但将关键感染基因纳入 NIN 的控制已经使其成为根瘤菌感染的中央调控枢纽。