Gigova Liliana G, Ivanova Natalia J
Department of Experimental Algology, Institute of Plant Physiology and Genetics, Bulgarian Academy of Sciences, Bulgaria,
J Biosci. 2015 Jun;40(2):365-74. doi: 10.1007/s12038-015-9510-z.
Variations in the exogenous nitrogen level are known to significantly affect the physiological status and metabolism of microalgae. However, responses of red, green and yellow-green algae to nitrogen (N) availability have not been compared yet. Porphyridium cruentum, Scenedesmus incrassatulus and Trachydiscus minutus were cultured in the absence of N in the medium and subsequent resupply of N to the starved cells. Culture growth and in-gel changes in isoenzyme pattern and activity of glutamate synthase, glutamate dehydrogenase, malate dehydrogenase, aspartate aminotransferase, superoxide dismutase, catalase, glutathione peroxidase and glutathione reductase were studied. The results demonstrated that the algae responded to the fully N-depleted and N-replete culture conditions by species-specific metabolic enzyme changes, suggesting differential regulation of both enzyme activity and cellular metabolism. Substantial differences in the activities of the antioxidant enzymes between N-depleted and N-replete cells of each species as well as between the species were also found. In the present work, besides the more general responses, such as adjustment of growth and pigmentation, we report on the involvement of specific metabolic and antioxidant enzymes and their isoforms in the mechanisms operating during N starvation and recovery in P. cruentum, T. minutus and S. incrassatulus.
已知外源氮水平的变化会显著影响微藻的生理状态和代谢。然而,红藻、绿藻和黄绿藻对氮有效性的响应尚未进行比较。将紫球藻、厚壁栅藻和微小 Trachydiscus minutus 在培养基中缺氮的情况下培养,然后对饥饿细胞重新供应氮。研究了培养生长以及谷氨酸合酶、谷氨酸脱氢酶、苹果酸脱氢酶、天冬氨酸转氨酶、超氧化物歧化酶、过氧化氢酶、谷胱甘肽过氧化物酶和谷胱甘肽还原酶的同工酶模式和活性的凝胶内变化。结果表明,藻类通过物种特异性的代谢酶变化对完全缺氮和氮充足的培养条件做出反应,这表明酶活性和细胞代谢存在差异调节。还发现每个物种的缺氮细胞和氮充足细胞之间以及物种之间抗氧化酶活性存在显著差异。在本研究中,除了生长和色素沉着调节等更普遍的反应外,我们还报告了紫球藻、微小 Trachydiscus minutus 和厚壁栅藻在氮饥饿和恢复过程中特定代谢和抗氧化酶及其同工型在相关机制中的作用。