Departamento de Bioquímica/Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Departamento de Ensino Médio e Técnico, Centro Federal de Educação Tecnológica Celso Suckow da Fonseca, Rio de Janeiro, Brazil.
Proteomics. 2021 Apr;21(7-8):e2000129. doi: 10.1002/pmic.202000129. Epub 2021 Mar 8.
The use of plant growth-promoting bacteria as agricultural inoculants of plants should be encouraged because of their prominent role in biological nitrogen fixation, the increase of nutrient uptake by roots, abiotic stress mitigation, and disease control. The complex mechanisms underlying the association between plant and beneficial bacteria have been increasingly studied, and proteomic tools can expand our perception regarding the fundamental molecular processes modulated by the interaction. In this study, we investigated the changes in protein expression in maize roots in response to treatment with the endophytic diazotrophic Herbaspirillum seropedicae and the activities of enzymes related to nitrogen metabolism. To identify maize proteins whose expression levels were altered in the presence of bacteria, a label-free quantitative proteomic approach was employed. Using this approach, we identified 123 differentially expressed proteins, of which 34 were upregulated enzymes, in maize roots cultivated with H. seropedicae. The maize root colonization of H. seropedicae modulated the differential expression of enzymes involved in the stress response, such as peroxidases, phenylalanine ammonia-lyase, and glutathione transferase. The differential protein profile obtained in the inoculated roots reflects the effect of colonization on plant growth and development compared with control plants.
由于植物促生菌在生物固氮、根系养分吸收增加、减轻非生物胁迫和防治病害方面的突出作用,应鼓励将其用作植物的农业接种剂。植物与有益细菌之间关联的复杂机制已得到越来越多的研究,蛋白质组学工具可以扩展我们对相互作用调节的基本分子过程的认识。在这项研究中,我们研究了玉米根对内生固氮菌 Herbaspirillum seropedicae 处理的蛋白质表达变化以及与氮代谢相关的酶的活性。为了鉴定存在细菌时表达水平发生变化的玉米蛋白,我们采用了无标记定量蛋白质组学方法。使用这种方法,我们在与 H. seropedicae 共培养的玉米根中鉴定出了 123 种差异表达蛋白,其中 34 种是上调的酶。H. seropedicae 对玉米根的定殖调节了参与应激反应的酶的差异表达,如过氧化物酶、苯丙氨酸解氨酶和谷胱甘肽转移酶。与对照植物相比,接种根中获得的差异蛋白图谱反映了定殖对植物生长和发育的影响。