Department of Biochemistry, St. Petersburg State University, 199178 St. Petersburg, Russia.
Department of Bioorganic Chemistry, Leibniz Institute of Plant Biochemistry, 06120 Halle (Saale), Germany.
Molecules. 2019 Apr 23;24(8):1603. doi: 10.3390/molecules24081603.
Legume crops represent the major source of food protein and contribute to human nutrition and animal feeding. An essential improvement of their productivity can be achieved by symbiosis with beneficial soil microorganisms-rhizobia (Rh) and arbuscular mycorrhizal (AM) fungi. The efficiency of these interactions depends on plant genotype. Recently, we have shown that, after simultaneous inoculation with Rh and AM, the productivity gain of pea ( L) line K-8274, characterized by high efficiency of interaction with soil microorganisms (EIBSM), was higher in comparison to a low-EIBSM line K-3358. However, the molecular mechanisms behind this effect are still uncharacterized. Therefore, here, we address the alterations in pea seed proteome, underlying the symbiosis-related productivity gain, and identify 111 differentially expressed proteins in the two lines. The high-EIBSM line K-8274 responded to inoculation by prolongation of seed maturation, manifested by up-regulation of proteins involved in cellular respiration, protein biosynthesis, and down-regulation of late-embryogenesis abundant (LEA) proteins. In contrast, the low-EIBSM line K-3358 demonstrated lower levels of the proteins, related to cell metabolism. Thus, we propose that the EIBSM trait is linked to prolongation of seed filling that needs to be taken into account in pulse crop breeding programs. The raw data have been deposited to the ProteomeXchange with identifier PXD013479.
豆科作物是蛋白质的主要食物来源,对人类营养和动物饲养有重要贡献。通过与有益的土壤微生物(根瘤菌和丛枝菌根真菌)共生,可以显著提高其生产力。这些相互作用的效率取决于植物基因型。最近,我们发现,在同时接种根瘤菌和丛枝菌根真菌后,与土壤微生物(EIBSM)相互作用效率高的豌豆(L)系 K-8274 的生产力增益高于 EIBSM 效率低的豌豆(L)系 K-3358。然而,这种效应的分子机制尚不清楚。因此,我们在这里研究了豌豆种子蛋白质组的变化,这些变化是共生相关生产力增益的基础,并在这两个系中鉴定到 111 种差异表达的蛋白质。高 EIBSM 系 K-8274 通过延长种子成熟来响应接种,表现为参与细胞呼吸、蛋白质生物合成的蛋白质上调,以及晚期胚胎丰富(LEA)蛋白下调。相比之下,低 EIBSM 系 K-3358 的蛋白质水平较低,与细胞代谢有关。因此,我们提出 EIBSM 性状与延长种子灌浆有关,在脉冲作物的育种计划中需要考虑这一点。原始数据已存入 ProteomeXchange,标识符为 PXD013479。