4.7 Article

Tolerance of Tetraselmis tetrathele to High Ammonium Nitrogen and Its Effect on Growth Rate, Carotenoid, and Fatty Acids Productivity

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FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2021.568776

关键词

ammonium nitrogen tolerance; microalgae; photosynthetic efficiency; chlorophyll a; Tetraselmis tetrathele

资金

  1. Japan Science and Technology Agency (JST)/Japan International Cooperation Agency (JICA), Science and Technology Research Partnership for Sustainable Development (SATREPS) through the project for Continuous Operation System for Microalgae Production Optimiz [JPMJSA1509]
  2. SATREPS-COSMOS Matching Fund from the Ministry of Education Malaysia (MOE)

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The study showed that Tetraselmis tetrathele has high tolerance to high concentrations of ammonium nitrogen and can continue to grow and increase production even at high levels.
Microalgae can use either ammonium or nitrate for its growth and vitality. However, at a certain level of concentration, ammonium nitrogen exhibits toxicity which consequently can inhibit microalgae productivity. Therefore, this study is aimed to investigate the tolerance of Tetraselmis tetrathele to high ammonium nitrogen concentrations and its effects on growth rate, photosynthetic efficiency (F-v/F-m), pigment contents (chlorophyll a, lutein, neoxanthin, and beta-carotene), and fatty acids production. Experiments were performed at different ammonium nitrogen concentrations (0.31-0.87 gL(-1)) for 6 days under a light source with an intensity of 300 mu mol photons m(-2) s(-1) and nitrate-nitrogen source as the experimental control. The findings indicated no apparent enhancement of photosynthetic efficiency (F-v/F-m) at high levels of ammonium nitrogen (NH4+-N) for T. tetrathele within 24 h. However, after 24 h, the photosynthetic efficiency of T. tetrathele increased significantly (p < 0.05) in high concentration of NH4+-N. Chlorophyll a content in T. tetrathele grown in all of the different NH4+-N levels increased significantly compared to nitrate-nitrogen (NO3-N) treatment (p < 0.05); which supported that this microalgal could grow even in high level of NH4+-N concentrations. The findings also indicated that T. tetrathele is highly resistant to high ammonium nitrogen which suggests T. tetrathele to be used in the aquaculture industry for bioremediation purpose to remove ammonium nitrogen, thus reducing the production cost while improving the water quality.

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