Rojas-Villalta Dorian, Rojas-Rodríguez David, Villanueva-Ilama Melany, Guillén-Watson Rossy, Murillo-Vega Francinie, Gómez-Espinoza Olman, Núñez-Montero Kattia
Biotechnology Research Center, Department of Biology, Instituto Tecnológico de Costa Rica, Cartago 159-7050, Costa Rica.
Facultad de Ingeniería, Universidad Autónoma de Chile, Temuco 4810101, Chile.
Biology (Basel). 2024 Sep 11;13(9):712. doi: 10.3390/biology13090712.
Exploring extremotolerant and extremophilic microalgae opens new frontiers in sustainable biotechnological applications. These microorganisms thrive in extreme environments and exhibit specialized metabolic pathways, making them valuable for various industries. The study focuses on the ecological adaptation and biotechnological potential of these microalgae, highlighting their ability to produce bioactive compounds under stress conditions. The literature reveals that extremophilic microalgae can significantly enhance biomass production, reduce contamination risks in large-scale systems, and produce valuable biomolecules such as carotenoids, lipids, and proteins. These insights suggest that extremophilic microalgae have promising applications in food, pharmaceutical, cosmetic, and biofuel industries, offering sustainable and efficient alternatives to traditional resources. The review concludes that further exploration and utilization of these unique microorganisms can lead to innovative and environmentally friendly solutions in biotechnology.
探索极端耐受和极端嗜热微藻为可持续生物技术应用开辟了新的前沿领域。这些微生物在极端环境中茁壮成长,并展现出特殊的代谢途径,使其在各个行业都具有重要价值。该研究聚焦于这些微藻的生态适应性和生物技术潜力,突出了它们在应激条件下产生生物活性化合物的能力。文献表明,极端嗜热微藻能够显著提高生物量产量,降低大规模系统中的污染风险,并产生类胡萝卜素、脂质和蛋白质等有价值的生物分子。这些见解表明,极端嗜热微藻在食品、制药、化妆品和生物燃料行业具有广阔的应用前景,为传统资源提供了可持续且高效的替代品。该综述得出结论,对这些独特微生物的进一步探索和利用能够在生物技术领域带来创新且环保的解决方案。