CESAM-Centre for Environmental and Marine Studies and Department of Biology, University of Aveiro, Aveiro, Portugal.
PeerJ. 2024 Jul 9;12:e17659. doi: 10.7717/peerj.17659. eCollection 2024.
This work presents a low-cost, open-source turbidimeter, the 'Erlenmeter', designed to monitor the growth of microorganisms in batch cultures. It is easy to build, based exclusively on inexpensive off-the-shelf electronic components and 3D-printed parts. The Erlenmeter allows measuring the optical density of cultures on standard Erlenmeyer flasks without the need to open the flasks to collect aliquots, ensuring speed, minimal use of consumables, and elimination of the risk of contamination. These features make it particularly well-suited not just for routine research assays but also for experimental teaching. Here we illustrate the use of the Erlenmeter turbidimeter to record the growth of the microalga , of the bacterium , and of the yeast , model organisms that are widely used in research and teaching. The Erlenmeter allows a detailed characterization of the growth curves of all organisms, confirming its usefulness for studying microbial populations dynamics both for research purposes and in classroom settings.
本工作介绍了一种低成本、开源的浊度计,即“比色管浊度计”,用于监测批量培养物中微生物的生长。它易于构建,完全基于廉价的现成电子元件和 3D 打印部件。比色管浊度计允许在标准的比色管中测量培养物的光密度,而无需打开比色管以收集等分试样,从而确保了快速、最小化耗材的使用以及消除污染的风险。这些特点使其不仅非常适合常规研究测定,也非常适合实验教学。在这里,我们展示了比色管浊度计在记录微藻、细菌和酵母生长方面的应用,这些模型生物在研究和教学中被广泛应用。比色管浊度计可以详细描述所有生物体的生长曲线,证实了其在研究微生物种群动态方面的有用性,无论是用于研究目的还是在课堂环境中。