Tamošiūnė Inga, Gelvonauskienė Dalia, Haimi Perttu, Mildažienė Vida, Koga Kazunori, Shiratani Masaharu, Baniulis Danas
Institute of Horticulture, Lithuanian Research Centre for Agriculture and Forestry, Babtai, Lithuania.
Faculty of Natural Sciences, Vytautas Magnus University, Kaunas, Lithuania.
Front Plant Sci. 2020 Aug 28;11:568924. doi: 10.3389/fpls.2020.568924. eCollection 2020.
Cold atmospheric pressure (CP) plasma irradiation of seeds has been shown to promote plant growth, but the molecular basis of this phenomenon is poorly understood. In our study, optimum irradiation of common sunflower seeds using a dielectric barrier discharge CP device stimulated growth of sunflower lateral organs and roots by 9-14% compared to the control. Metagenomic analysis revealed that the structure of plant-associated bacterial assembly was greatly modified upon CP treatment and could be attributed to the antimicrobial effect of CP-generated reactive species. The treatment resulted in the domination of spore forming sp. in the above-ground tissues of the seedlings. While the overall bacterial diversity in the roots was barely affected, the CP-induced shift in microbial composition is the likely basis for the observed seedling root growth stimulation and the long-term effect on lateral organ growth and could be mediated by increase in water uptake and/or direct root signaling. Low amplitude protein abundance differences were detected in the roots of the emerging seedlings that are characteristic to low intensity stress stimuli response and could be linked to the changes in plant-associated microbiome upon CP treatment.
冷大气压(CP)等离子体辐照种子已被证明能促进植物生长,但这一现象的分子基础却知之甚少。在我们的研究中,使用介质阻挡放电CP装置对普通向日葵种子进行最佳辐照,与对照相比,刺激了向日葵侧器官和根的生长,增幅为9%-14%。宏基因组分析表明,CP处理后,植物相关细菌群落结构发生了很大改变,这可归因于CP产生的活性物质的抗菌作用。该处理导致芽孢杆菌属在幼苗地上组织中占主导地位。虽然根中的总体细菌多样性几乎未受影响,但CP诱导的微生物组成变化可能是观察到的幼苗根生长刺激以及对侧器官生长的长期影响的基础,并且可能通过水分吸收增加和/或直接根信号传导来介导。在新出现的幼苗的根中检测到低幅度的蛋白质丰度差异,这是低强度应激刺激反应的特征,并且可能与CP处理后植物相关微生物群的变化有关。