Ferreira Maria J, Garcia-Cardesín Erika, Sierra-Garcia I Natalia, Pinto Diana C G A, Cremades Javier, Silva Helena, Cunha Ângela
Department of Biology & Center for Environmental and Marine Studies (CESAM), University of Aveiro, Campus de Santiago, Aveiro, 3810-193, Portugal.
LAQV-REQUIMTE & Department of Chemistry, University of Aveiro, Campus de Santiago, Aveiro, 3810-193, Portugal.
World J Microbiol Biotechnol. 2025 Apr 7;41(4):124. doi: 10.1007/s11274-025-04335-5.
This study analyzed the secondary metabolite profile of Salicornia europaea inoculated with Brevibacterium casei EB3 and Pseudomonas oryzihabitans RL18 in aquaponic systems, exploring the metabolic mechanisms responsible for the observed shifts. Experiments were conducted in both microcosm and pilot-scale aquaponic setups to evaluate how these metabolic shifts vary across different system scales and their potential contributions to the observed increased accumulation of bioactive compounds with antioxidant and antimicrobial properties, including some phenolic acids, such as caffeic acid (154-fold), flavonoids (2.85-fold), and some unsaturated fatty acids, such as oct-3-enoic acid (32-fold). Metabolic profiling revealed shifts in pathways associated with plant growth and stress resilience, such as amino acid and phenolic biosynthesis. Additionally, differences in metabolic responses observed between microcosm and pilot-scale systems underscored the importance of understanding scaling effects. These findings highlight the potential for optimizing aquaponic systems by leveraging microbial-plant interactions to enhance ecological and economic outcomes. This approach offers valuable applications in nutrient recycling, phytopharmaceutical development, and the advancement of saline agriculture within integrated aquaculture frameworks.
本研究分析了在水培系统中接种干酪短杆菌EB3和栖稻假单胞菌RL18的欧洲海蓬子的次生代谢产物谱,探索导致观察到的变化的代谢机制。在微观和中试规模的水培装置中进行了实验,以评估这些代谢变化如何在不同系统规模上变化,以及它们对观察到的具有抗氧化和抗菌特性的生物活性化合物(包括一些酚酸,如咖啡酸(增加154倍)、黄酮类化合物(增加2.85倍)和一些不饱和脂肪酸,如3-辛烯酸(增加32倍))积累增加的潜在贡献。代谢谱分析揭示了与植物生长和胁迫恢复力相关的途径的变化,如氨基酸和酚类生物合成。此外,在微观和中试规模系统之间观察到的代谢反应差异强调了理解规模效应的重要性。这些发现突出了通过利用微生物-植物相互作用来优化水培系统以提高生态和经济成果的潜力。这种方法在营养循环、植物药物开发以及综合水产养殖框架内的盐碱农业发展方面具有重要应用价值。