BioDiscovery Institute, University of North Texas, Denton, TX 76203, USA.
Department of Biological Sciences, University of North Texas, Denton, TX 76203, USA.
J Exp Bot. 2022 Apr 5;73(7):2093-2111. doi: 10.1093/jxb/erab559.
Symbiotic nitrogen (N) fixation entails successful interaction between legume hosts and rhizobia that occur in specialized organs called nodules. N-fixing legumes have a higher demand for phosphorus (P) than legumes grown on mineral N. Medicago truncatula is an important model plant for characterization of effects of P deficiency at the molecular level. Hence, a study was carried out to address the alteration in metabolite levels of M. truncatula grown aeroponically and subjected to 4 weeks of P stress. First, GC-MS-based untargeted metabolomics initially revealed changes in the metabolic profile of nodules, with increased levels of amino acids and sugars and a decline in amounts of organic acids. Subsequently, LC-MS/MS was used to quantify these compounds including phosphorylated metabolites in the whole plant. Our results showed a drastic reduction in levels of organic acids and phosphorylated compounds in -P leaves, with a moderate reduction in -P roots and nodules. Additionally, sugars and amino acids were elevated in the whole plant under P deprivation. These findings provide evidence that N fixation in M. truncatula is mediated through a N feedback mechanism that in parallel is related to carbon and P metabolism.
共生固氮需要豆科宿主和根瘤菌之间的成功相互作用,而根瘤菌存在于专门的器官中,称为根瘤。与利用矿物氮生长的豆科植物相比,固氮豆科植物对磷(P)的需求更高。蒺藜苜蓿是一种重要的模式植物,可用于在分子水平上研究磷缺乏的影响。因此,进行了一项研究,以探讨在经历 4 周磷胁迫条件下,采用气培法生长的蒺藜苜蓿的代谢物水平的变化。首先,基于 GC-MS 的非靶向代谢组学最初揭示了根瘤代谢谱的变化,其中氨基酸和糖的水平增加,而有机酸的含量下降。随后,使用 LC-MS/MS 定量分析了包括整个植物中磷酸化代谢物在内的这些化合物。我们的结果表明,-P 叶片中的有机酸和磷酸化化合物水平急剧下降,-P 根和根瘤中的水平中度下降。此外,在 P 剥夺条件下,整个植物中的糖和氨基酸水平升高。这些发现表明,蒺藜苜蓿中的氮固定是通过氮反馈机制介导的,该机制与碳和磷代谢平行相关。