4.6 Article

Isolation of a high-ammonium-tolerant Monoraphidium sp. and evaluation of its potential for biodiesel production

期刊

PROCESS BIOCHEMISTRY
卷 111, 期 -, 页码 297-304

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.procbio.2021.11.010

关键词

Biodiesel; Microalgae; High-ammonium tolerance; Monoraphidium sp.

资金

  1. Natural Science Foun-dation of Heilongjiang Province [LH2020C089]
  2. National Nat-ural Science Foundation of China [32071519, 31770544]

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This study isolated a high ammonium-tolerant microalgal strain named HDMA-01 from Lake Dongfeng in China using a high ammonium medium. HDMA-01 demonstrated vigorous growth and lipid productivity at high ammonium concentrations, making it a promising candidate for biodiesel feedstock and high-ammonium tolerance biotechnology.
The economic challenges of microalgae biodiesel production, including the energy burden and water shortage, can be addressed simultaneously by using wastewater as a nitrogen source. However, as a major form of nitrogen, ammonium is toxic to most microalgae strains, which limits the use of ammonium-containing wastewater. High-ammonium-tolerant algal strains remain to be explored. In this study, a microalgal strain named HDMA-01, which was isolated from Lake Dongfeng in China, was selected using a high ammonium medium. Phylogenetic analysis suggested that HDMA-01 belongs to the genus Monoraphidium (Selenastraceae, Sphaeropleales), and both 18S ribosomal DNA and ITS sequences of HDMA-01 appeared to be new molecular records of the Monoraphidium species. HDMA-01 can multiply vigorously using acetic acid and ammonium in TAP medium, reaching a density of 2 x10(7) mL(-1) within 7 days. HDMA-01 showed strong tolerance for ammonium. At a high ammonium concentration of 14 mM, HDMA-01 achieved maximum biomass and lipid productivity of 78.9 mg L-1 day(-1) and 13.8 mg L-1 day(-1), which is the highest among other Monoraphidium strains under similar cultivation conditions. Together with its ideal fatty acid profile, HDMA-01 has great potential for development as a promising strain used in biodiesel feedstock and high-ammonium tolerance biotechnology.

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