Department of Chemical Engineering, Osaka Metropolitan University, 1-1 Gakuen-Cho, Naka-Ku, Sakai, Osaka, 599-8531, Japan.
Appl Microbiol Biotechnol. 2024 Sep 18;108(1):468. doi: 10.1007/s00253-024-13309-w.
Wastewater treatment using the activated sludge method requires a large amount of electricity for aeration. Therefore, wastewater treatment using co-culture systems of microalgae and heterotrophic microorganisms, which do not require aeration, has attracted attention as an energy-saving alternative to the method. In this study, we investigated different combinations of microalgae and heterotrophic microorganisms to improve the efficiency of wastewater treatment. Three types of microalgae and five heterotrophic microorganisms were used in combination for wastewater treatment. The combination of Chlamydomonas reinhardtii NIES-2238 and Saccharomyces cerevisiae SH-4 showed the highest wastewater treatment efficiency. Using this combination for artificial wastewater treatment, the removal rates of total organic carbon, PO4, and NH reached 80%, 93%, and 63%, respectively, after 18 h of treatment. To the best of our knowledge, this is the first study to show that a combination of green algae and yeast improves the efficiency of wastewater treatment. Transcriptome analysis revealed that the combined wastewater treatment altered the expression of 1371 and 692 genes in C. reinhardtii and S. cerevisiae, respectively. One of the main reasons for the improved wastewater treatment performance of the combination of green algae and yeast was the increased expression of genes related to the uptake of phosphate and ammonium ions in the green algae. As both the green algae C. reinhardtii and the yeast S. cerevisiae are highly safe microorganisms, the establishment of their effective combination for wastewater treatment is highly significant. KEY POINTS: • Combination of various microalgae and heterotrophic microorganisms was tested • Combination of green algae and yeast showed the highest efficiency • This is the first report that this combination is effective for wastewater treatment.
采用活性污泥法处理废水需要大量的电力进行曝气。因此,利用微藻和异养微生物共培养系统进行废水处理作为一种节能替代方法引起了人们的关注。在这项研究中,我们研究了不同的微藻和异养微生物组合,以提高废水处理的效率。采用三种微藻和五种异养微生物组合进行废水处理。绿藻小球藻 NIES-2238 和酵母酿酒酵母 SH-4 的组合显示出最高的废水处理效率。使用该组合进行人工废水处理,经过 18 小时处理,总有机碳、PO4 和 NH 的去除率分别达到 80%、93%和 63%。据我们所知,这是首次表明绿藻和酵母的组合可以提高废水处理效率的研究。转录组分析表明,组合废水处理分别改变了小球藻和酿酒酵母中 1371 个和 692 个基因的表达。绿藻和酵母组合废水处理性能提高的主要原因之一是绿藻中与磷酸盐和铵离子吸收相关的基因表达增加。由于绿藻小球藻和酵母酿酒酵母都是高度安全的微生物,因此建立它们用于废水处理的有效组合具有重要意义。 要点: • 测试了各种微藻和异养微生物的组合 • 绿藻和酵母的组合显示出最高的效率 • 这是首次报道该组合对废水处理有效的研究。