School of Natural Sciences, University of Tasmania, Private Bag 55, Hobart, Tasmania, 7001, Australia.
School of Natural Sciences, University of Tasmania, Private Bag 55, Hobart, Tasmania, 7001, Australia.
Plant Sci. 2021 Apr;305:110846. doi: 10.1016/j.plantsci.2021.110846. Epub 2021 Feb 12.
Legume nodules are a unique plant organ that contain nitrogen-fixing rhizobial bacteria. For this interaction to be mutually beneficial, plant and bacterial metabolism must be precisely co-ordinated. Plant hormones are known to play essential roles during the establishment of legume-rhizobial symbioses but their role in subsequent nodule metabolism has not been explored in any depth. The plant hormones brassinosteroids, ethylene and gibberellins influence legume infection, nodule number and in some cases nodule function. In this paper, the influence of these hormones on nodule metabolism was examined in a series of well characterised pea mutants with altered hormone biosynthesis or response. A targeted set of metabolites involved in nutrient exchange and nitrogen fixation was examined in nodule tissue of mutant and wild type plants. Gibberellin-deficiency had a major negative impact on the level of several major dicarboxylates supplied to rhizobia by the plant and also led to a significant deficit in the amino acids involved in glutamine-aspartate transamination, consistent with the limited bacteroid development and low fixation rate of gibberellin-deficient na mutant nodules. In contrast, no major effects of brassinosteroid-deficiency or ethylene-insensitivity on the key metabolites in these pathways were found. Therefore, although all three hormones influence infection and nodule number, only gibberellin is important for the establishment of a functional nodule metabolome.
根瘤是一种含有固氮根瘤菌的独特植物器官。为了使这种相互作用互惠互利,植物和细菌的新陈代谢必须精确协调。已知植物激素在豆科植物-根瘤菌共生体的建立过程中发挥着重要作用,但它们在随后的根瘤代谢中的作用尚未得到深入探讨。植物激素油菜素内酯、乙烯和赤霉素影响豆科植物的侵染、根瘤数量,在某些情况下还影响根瘤的功能。本文通过一系列具有特定激素生物合成或响应改变的豌豆突变体,研究了这些激素对根瘤代谢的影响。对突变体和野生型植物根瘤组织中涉及养分交换和固氮的一组特定代谢物进行了研究。赤霉素缺乏对植物提供给根瘤的几种主要二羧酸的水平产生了重大负面影响,也导致参与谷氨酰胺-天冬氨酸转氨基作用的氨基酸明显缺乏,这与赤霉素缺乏的 na 突变体根瘤中类菌体发育有限和固氮率低相一致。相比之下,油菜素内酯缺乏或乙烯不敏感对这些途径中的关键代谢物没有重大影响。因此,尽管这三种激素都影响侵染和根瘤数量,但只有赤霉素对功能性根瘤代谢组的建立很重要。