School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, China.
Department of Agricultural Technology, State University of Papua, Manokwari, Indonesia.
World J Microbiol Biotechnol. 2024 Jan 30;40(3):83. doi: 10.1007/s11274-023-03878-9.
The co-pelletization of microalgae with filamentous fungi was a promising approach for microalgae harvest. However, the real conditions of microalgae growth limited the arbitrary optimization of co-pellets formation with filamentous fungi. Therefore, it is urgent to develop an approach to manipulate the co-pelletization through treatment of A. niger spores. In this study, Aspergillus niger and Chlorella vulgaris were used as the model species of filamentous fungi and microalgae to investigate co-pellets formation using A. niger spores after by different pH solutions treatment, swelling, snailase treatment. The importance of spore treatments on C. vulgaris harvest in sequence was claimed based on response surface methodology analysis. The pH solutions treatment, swelling, snailase treatment of A. niger spore contributed 21.0%, 10.5%, 40.7% of harvest ratio of C. vulgaris respectively, which guided the application of spore treatment into co-pelletization. Treatment of spore was showed as an efficient approach to manipulate co-pelletization for microalgae harvest in diverse microalgae condition. This results promoted the application of co-pelletization technology in microalgae harvest of various conditions.
微藻与丝状真菌共固结成球是一种很有前途的微藻收获方法。然而,微藻生长的实际条件限制了与丝状真菌共固结成球的任意优化。因此,迫切需要开发一种通过处理黑曲霉孢子来操纵共固结成球的方法。本研究以黑曲霉和小球藻为模型真菌和微藻,考察了不同 pH 值溶液处理、膨胀、蜗牛酶处理后黑曲霉孢子对共固结成球的影响。根据响应面法分析,确定了孢子处理对小球藻收获的重要性顺序。pH 值溶液处理、黑曲霉孢子膨胀、蜗牛酶处理分别对小球藻收获率的贡献率为 21.0%、10.5%、40.7%,这为孢子处理在共固结成球中的应用提供了指导。孢子处理是一种有效的方法,可以在不同的微藻条件下操纵共固结成球以收获微藻。这些结果促进了共固结成球技术在各种条件下微藻收获的应用。