Divisions of Plant Sciences and Biochemistry, Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, MO, 65211, USA.
Department of Chemistry, The George Washington University, Washington, DC, 20052, USA.
Plant J. 2020 Aug;103(5):1937-1958. doi: 10.1111/tpj.14815. Epub 2020 Jun 21.
The establishment of the nitrogen-fixing symbiosis between soybean and Bradyrhizobium japonicum is a complex process. To document the changes in plant metabolism as a result of symbiosis, we utilized laser ablation electrospray ionization-mass spectrometry (LAESI-MS) for in situ metabolic profiling of wild-type nodules, nodules infected with a B. japonicum nifH mutant unable to fix nitrogen, nodules doubly infected by both strains, and nodules formed on plants mutated in the stearoyl-acyl carrier protein desaturase (sacpd-c) gene, which were previously shown to have an altered nodule ultrastructure. The results showed that the relative abundance of fatty acids, purines, and lipids was significantly changed in response to the symbiosis. The nifH mutant nodules had elevated levels of jasmonic acid, correlating with signs of nitrogen deprivation. Nodules resulting from the mixed inoculant displayed similar, overlapping metabolic distributions within the sectors of effective (fix ) and ineffective (nifH mutant, fix ) endosymbionts. These data are inconsistent with the notion that plant sanctioning is cell autonomous. Nodules lacking sacpd-c displayed an elevation of soyasaponins and organic acids in the central necrotic regions. The present study demonstrates the utility of LAESI-MS for high-throughput screening of plant phenotypes. Overall, nodules disrupted in the symbiosis were elevated in metabolites related to plant defense.
大豆与根瘤菌之间共生固氮的建立是一个复杂的过程。为了记录植物代谢因共生而发生的变化,我们利用激光烧蚀电喷雾电离质谱(LAESI-MS)对野生型根瘤、不能固氮的根瘤菌 nifH 突变体感染的根瘤、两种菌株双重感染的根瘤以及在 stearoyl-acyl carrier protein desaturase(sacpd-c)基因突变的植物上形成的根瘤进行了原位代谢谱分析,先前的研究表明,该基因突变会改变根瘤的超微结构。结果表明,脂肪酸、嘌呤和脂质的相对丰度因共生而发生显著变化。nifH 突变体根瘤中 jasmonic acid(茉莉酸)的水平升高,与氮饥饿的迹象相关。混合接种的根瘤显示出类似的、重叠的代谢分布,在有效(固氮)和无效(nifH 突变体,固氮)共生体的扇区中。这些数据与植物制裁是细胞自主的观点不一致。缺乏 sacpd-c 的根瘤在中央坏死区域显示出大豆皂素和有机酸的升高。本研究证明了 LAESI-MS 用于高通量筛选植物表型的实用性。总的来说,共生被破坏的根瘤中与植物防御相关的代谢物水平升高。