不同硝酸盐浓度对普通小球藻与杜氏藻混合培养色素含量的影响。

Rahayu Dian Eka Putri, Y. S. Pradana, M. Koerniawan, L. T. Suwanti, U. J. Siregar, A. Budiman, E. Suyono
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引用次数: 1

摘要

小球藻(Chlorella vulgaris)和杜氏藻(Dunaliella sp.)是重要的微藻,通常用于天然色素原料。这些物种已被确定为有价值的生物化合物的生产者,如叶绿素,类胡萝卜素和虾青素。在氮胁迫条件下,采用双歧杆菌(C. vulgaris)和杜氏藻(Dunaliella sp.)混合培养。本研究共采用0.012、0.025、0.5 NaNO3 g/L不同硝酸盐浓度的4个处理,包括氮饥饿处理。氮限制和氮饥饿是调控微藻细胞次生色素合成代谢途径的常用技术。此外,用分光光度法测定了不同氮浓度处理14 d各单色素含量。在末期培养中,NaNO3浓度为0.025 g/L时,叶绿素-a (23.65 mg/L)、叶绿素-b (10.02 mg/L)和总类胡萝卜素(7.61 mg/L)含量最高。相反,在末期培养中,青虾素与杜氏藻混合培养的最高含量(0.6 mg/L)也是通过氮饥饿实现的。微藻在多种细菌群落的存在下表现出强劲的生长。众所周知,微藻与其藻球生物膜上的微生物群有关。然而,目前尚不清楚哪些特定的细菌类群在支持或抑制微藻生长中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of distinct nitrate concentrations on pigment content of mixed culture of Chlorella vulgaris and Dunaliella sp.
Chlorella vulgaris and Dunaliella sp. are prominent microalgae that are generally used for natural pigment stocks. These species have been established as producer of valuable bio compounds such as chlorophyll, carotenoids, and astaxanthin. For this research, C. vulgaris and Dunaliella sp. were cultivated in mixed culture under nitrogen stress treatments. Total four treatments at distinct nitrate concentrations of 0.012, 0.025, 0.5 NaNO3 g/L, respectively including nitrogen starvation was incorporated in this study. Nitrogen limitation and nitrogen starvation are widely used techniques to manipulate metabolic pathways into secondary pigments biosynthesis in microalgae cells. In addition, spectrophotometric measurement was conducted to investigate every single pigment content in all four treatments of distinct nitrogen concentrations for 14 days. The highest chlorophyll-a (23.65 mg/L), chlorophyll-b (10.02 mg/L), and total carotenoids (7.61 mg/L) were obtained from mixed culture with a concentration of 0.025 g/L NaNO3 in the last period cultivation. Conversely, the highest content of astaxanthin (0.6 mg/L) in mixed culture of C. vulgaris and Dunaliella sp. in the last period cultivation was achieved from starvation of nitrogen as well. The microalgae demonstrated robust growth in the presence of diverse bacterial community in the culture. It is well known that microalgae are associated with the microbiota on its phycosphere biofilm. Yet, it is unclear which specific bacteria taxa have a role in supporting or inhibiting microalgae growth.
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来源期刊
Asia-pacific Journal of Molecular Biology and Biotechnology
Asia-pacific Journal of Molecular Biology and Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
0.90
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