Bossa Rosanna, Di Colandrea Melania, Salbitani Giovanna, Carfagna Simona
Department of Biology, University Federico II of Naples, Complesso Universitario MSA, 80126 Naples, Italy.
Plants (Basel). 2024 Aug 1;13(15):2127. doi: 10.3390/plants13152127.
Phosphorus (P) is a fundamental element for life, playing an integral role in cellular metabolism including energy transfer, nucleic acid synthesis, and membrane structure. This nutrient is critical to the physiological ecology in all photosynthetic organisms including eukaryotic microalgae and cyanobacteria. The review, here presented, delves into the intricate mechanisms governing phosphorus acquisition from the environment, its utilization in plant metabolism, and regulation in these photosynthetic microorganisms. Furthermore, it comprehensively explores the strategies employed by microalgae to cope with phosphorus limitation, such as the activation of high-affinity phosphate transporters and the synthesis of phosphorus storage compounds. On the other hand, the ability to consume abundant phosphate makes microalgae exploitable organisms for environmental remediation processes. The knowledge synthesized in this review contributes to the broader understanding of microalgal physiology, offering insights into the ecological and biotechnological implications of phosphorus assimilation in these microorganisms.
磷(P)是生命的基本元素,在细胞代谢中发挥着不可或缺的作用,包括能量转移、核酸合成和膜结构。这种营养物质对于所有光合生物(包括真核微藻和蓝细菌)的生理生态至关重要。本文所呈现的综述深入探讨了从环境中获取磷的复杂机制、其在植物代谢中的利用以及在这些光合微生物中的调节。此外,它全面探索了微藻应对磷限制所采用的策略,例如高亲和力磷酸盐转运体的激活和磷储存化合物的合成。另一方面,微藻消耗大量磷酸盐的能力使其成为环境修复过程中可利用的生物体。本综述中综合的知识有助于更广泛地理解微藻生理学,为这些微生物中磷同化的生态和生物技术意义提供见解。