Laboratory for Aquaculture Biotechnology, Division of Materials Chemistry, Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia.
Center of Excellence for Marine Bioprospecting (BioProCro), Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia.
Mar Drugs. 2022 Feb 15;20(2):142. doi: 10.3390/md20020142.
The diversity of algal species is a rich source of many different bioactive metabolites. The compounds extracted from algal biomass have various beneficial effects on health. Recently, co-culture systems between microalgae and bacteria have emerged as an interesting solution that can reduce the high contamination risk associated with axenic cultures and, consequently, increase biomass yield and synthesis of active compounds. Probiotic microorganisms also have numerous positive effects on various aspects of health and represent potent co-culture partners. Most studies consider algae as prebiotics that serve as enhancers of probiotics performance. However, the extreme diversity of algal organisms and their ability to produce a plethora of metabolites are leading to new experimental designs in which these organisms are cultivated together to derive maximum benefit from their synergistic interactions. The future success of these studies depends on the precise experimental design of these complex systems. In the last decade, the development of high-throughput approaches has enabled a deeper understanding of global changes in response to interspecies interactions. Several studies have shown that the addition of algae, along with probiotics, can influence the microbiota, and improve gut health and overall yield in fish, shrimp, and mussels aquaculture. In the future, such findings can be further explored and implemented for use as dietary supplements for humans.
藻类物种的多样性是许多不同生物活性代谢物的丰富来源。从藻类生物量中提取的化合物对健康有各种有益的影响。最近,微藻和细菌之间的共培养系统作为一种有趣的解决方案出现,可以降低与无菌培养相关的高污染风险,从而提高生物量产量和活性化合物的合成。益生菌微生物对健康的许多方面也有许多积极的影响,是有力的共培养伙伴。大多数研究将藻类视为益生菌性能的增强剂。然而,藻类生物的极端多样性及其产生大量代谢物的能力,促使人们进行新的实验设计,将这些生物一起培养,以从它们的协同相互作用中获得最大的益处。这些研究的未来成功取决于这些复杂系统的精确实验设计。在过去的十年中,高通量方法的发展使人们能够更深入地了解种间相互作用响应的全球变化。有几项研究表明,添加藻类和益生菌可以影响微生物群,改善鱼类、虾类和贻贝类水产养殖的肠道健康和整体产量。未来,可以进一步探索和实施这些发现,作为人类的膳食补充剂。