Iqhrammullah Muhammad, Chiari Williams, Hudaa Syihaabul, Irhamni Irhamni, Akbar Said Ali
Research Center for Marine and Land Bioindustry National Research and Innovation Agency (BRIN), North Lombok, 83756, Indonesia.
Postgraduate Program of Public Health, Universitas Muhammadiyah Aceh, Banda Aceh, 23123, Indonesia.
Heliyon. 2024 Jul 26;10(15):e35324. doi: 10.1016/j.heliyon.2024.e35324. eCollection 2024 Aug 15.
Microalgae are being recognized as the key contributor to sustainability in many sectors, starting from energy up to food industries. The microorganism has also been utilized as environmental remediator, capable of converting organic compounds into economically valuable biomass. To optimize the use of microalgae in these sectors, researchers have explored various approaches, of which is the use of bacteria. The interaction between bacteria and microalgae can potentially be harnessed, but its complexity requires extensive research. Herein, we present the bibliometric analysis on microalgal-bacterial interactions. The metadata of published literature was collected through Scopus database on August 4, 2023. The downloaded.csv file was uploaded to VOSViewer and biblioshiny for network visualization. We found that the research has gained a lot of attention from researchers since 2012 with an exponential increase of the publication number. The United States and China are leading the research with a strong collaboration. Based on the research sub-topic clusters, the interaction is mostly studied for wastewater treatment, biomass production, and algal bloom control. Updated reviews on this topic reveal that researchers are now focus on optimizing the efficacy of microalgae-bacteria system, investigating the modes of actions, and identifying challenges in its real-world implementation. The microalgal-bacterial interaction is a promising approach for microalgae utilization in wastewater treatment, biomass production, and algal bloom control.
微藻正被视为许多领域可持续发展的关键贡献者,从能源领域到食品工业皆是如此。这种微生物还被用作环境修复剂,能够将有机化合物转化为具有经济价值的生物质。为了优化微藻在这些领域的应用,研究人员探索了各种方法,其中之一就是利用细菌。细菌与微藻之间的相互作用具有潜在的利用价值,但其复杂性需要进行广泛研究。在此,我们展示了关于微藻 - 细菌相互作用的文献计量分析。已发表文献的元数据于2023年8月4日通过Scopus数据库收集。下载的.csv文件被上传到VOSViewer和biblioshiny进行网络可视化。我们发现自2012年以来,该研究受到了研究人员的广泛关注,发表数量呈指数增长。美国和中国在该研究中处于领先地位,合作紧密。基于研究子主题聚类,主要研究了微藻 - 细菌相互作用在废水处理、生物质生产和藻华控制方面的应用。关于该主题的最新综述表明,研究人员目前专注于优化微藻 - 细菌系统的功效、研究作用模式以及确定其在实际应用中的挑战。微藻 - 细菌相互作用是微藻在废水处理、生物质生产和藻华控制中应用的一种有前景的方法。