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藻类-微生物共生提高大规模脂质产量的机制研究进展

Research Progress on the Mechanisms of Algal-Microorganism Symbiosis in Enhancing Large-Scale Lipid Production.

作者信息

Zhang Meiyu, Zhao Xinhe, Ren Xiaojie

机构信息

Food & Medicine Homology and Chinese Medicine Health Science Institute, International Cooperative Joint Laboratory for Marine Microbial Cell Factories, College of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255000, China.

出版信息

J Agric Food Chem. 2025 Mar 19;73(11):6345-6360. doi: 10.1021/acs.jafc.4c11580. Epub 2025 Mar 5.

Abstract

Microalgae, characterized by their exceptional lipid content, rapid growth, and robust adaptability, represent a promising biological resource. In natural and engineered ecosystems, microalgae engage in intricate symbiotic relationships with diverse microorganisms, a dynamic interplay essential for ecological resilience and metabolic optimization. This review examines the role of symbiotic microorganisms in microalgal growth and lipid accumulation, with particular emphasis on the biological regulatory mechanisms that govern these processes. These include nutrient exchange, phytohormone-mediated growth stimulation, cofactors, and quorum-sensing-driven community coordination. The review highlights how these microbial interactions facilitate optimal lipid production by enhancing metabolic pathways, thereby improving the efficiency of lipid accumulation in microalgae. Furthermore, the review investigates horizontal gene transfer as an evolutionary driver that fortifies algal-microbial consortia against environmental stressors, enabling robust performance in fluctuating conditions. The integration of these biological insights holds transformative potential for advancing next-generation bioenergy platforms, where algal-microbial systems could play a pivotal role in enhancing biofuel production, wastewater treatment, and sustainable agriculture.

摘要

微藻以其独特的脂质含量、快速生长和强大的适应性为特征,是一种很有前景的生物资源。在自然和人工生态系统中,微藻与多种微生物形成复杂的共生关系,这种动态相互作用对于生态恢复力和代谢优化至关重要。本综述探讨了共生微生物在微藻生长和脂质积累中的作用,特别强调了控制这些过程的生物调节机制。这些机制包括营养交换、植物激素介导的生长刺激、辅因子以及群体感应驱动的群落协调。该综述强调了这些微生物相互作用如何通过增强代谢途径促进最佳脂质生产,从而提高微藻中脂质积累的效率。此外,该综述研究了水平基因转移作为一种进化驱动力,它增强了藻类-微生物共生体抵御环境压力的能力,使其在波动条件下表现出强大性能。这些生物学见解的整合对于推进下一代生物能源平台具有变革潜力,在这些平台中,藻类-微生物系统可以在提高生物燃料生产、废水处理和可持续农业方面发挥关键作用。

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