Caroca-Valencia Sofía, Rivas Jorge, Araya Matías, Núñez Alejandra, Piña Florentina, Toro-Mellado Fernanda, Contreras-Porcia Loretto
Departamento de Ecología y Biodiversidad, Facultad de Ciencias de la Vida, Universidad Andres Bello, República 440, Santiago 8370251, Chile.
Centro de Investigación Marina Quintay (CIMARQ), Facultad de Ciencias de la Vida, Universidad Andres Bello, Valparaíso 2531015, Chile.
Plants (Basel). 2023 Mar 16;12(6):1340. doi: 10.3390/plants12061340.
Taking into consideration climate change scenarios, marine contamination, and a constantly expanding world population, seaweed aquaculture has become an important option for the large-scale production of high-quality biomass. Due to existing biological knowledge of , several cultivation strategies have been established for obtaining diverse biomolecules (lipids, fatty acids, pigments, among others) with nutraceutical properties. In this research, indoor and outdoor cultivation methodologies were applied to generate high biomass of with positive quality for productive purposes, where the quality was determined according to the concentrations of lipoperoxides and phenolic compounds and the total antioxidant capacity (TAC). The results showed that cultures, which were fertilized for three weeks with Basfoliar Aktiv (BF) at concentrations of 0.05-1% /, obtained high biomass (1-1.3 kg m) and DGR (0.35-4.66% d), low lipoperoxides (0.5-2.8 µmol g DT), and high phenolic compounds (0.4-0.92 µ eq. GA g FT) and TAC (5-7.5 nmol eq. TROLOX g FT) as compared with other culture media. Lower stress was determined under indoor cultures, due to the operative control of diverse physicochemical stressor parameters (T°, light intensity, photoperiod, among others). Therefore, the cultures developed allow scaling the biomass in productive terms and are suitable for obtaining compounds of interest.
考虑到气候变化情景、海洋污染以及不断增长的世界人口,海藻养殖已成为大规模生产优质生物质的重要选择。基于现有的生物学知识,已经建立了几种养殖策略来获取具有营养保健特性的多种生物分子(脂质、脂肪酸、色素等)。在本研究中,采用室内和室外养殖方法来生产具有积极品质的高生物量,用于生产目的,其中品质根据脂过氧化物和酚类化合物的浓度以及总抗氧化能力(TAC)来确定。结果表明,用浓度为0.05 - 1% / 的Basfoliar Aktiv(BF)施肥三周的培养物,与其他培养基相比,获得了高生物量(1 - 1.3 kg m)和特定生长率(DGR)(0.35 - 4.66% d),低脂过氧化物(0.5 - 2.8 µmol g DT),高酚类化合物(0.4 - 0.92 µ eq. GA g FT)和TAC(5 - 7.5 nmol eq. TROLOX g FT)。由于对多种物理化学应激参数(温度、光照强度、光周期等)的操作控制,室内培养下确定的应激较低。因此,所开发的培养物在生产方面能够扩大生物量规模,并且适合获取感兴趣的化合物。