Graduate School of Oceanography, University of Rhode Island , Narragansett, Rhode Island, USA.
School of Earth, Environmental, and Marine Sciences, University of Texas Rio Grande Valley , Brownsville, Texas, USA.
mSystems. 2023 Oct 26;8(5):e0061123. doi: 10.1128/msystems.00611-23. Epub 2023 Aug 29.
The Monod equation has been used to represent the relationship between growth rate and the environmental nutrient concentration under the limitation of this respective nutrient. This model often serves as a means to connect microorganisms to their environment, specifically in ecosystem and global models. Here, we use a simple model of a marine microorganism cell to illustrate the model's ability to capture the same relationship as Monod, while highlighting the additional physiological details our model provides. In this study, we focus on the relationship between growth rate and phosphorus concentration and find that RNA allocation largely contributes to the commonly observed trend. This work emphasizes the potential role our model could play in connecting microorganisms to the surrounding environment while using realistic physiological representations.
莫诺德方程(Monod equation)被用于表示在特定营养物质限制下,生长率与环境营养浓度之间的关系。该模型通常作为连接微生物与其环境的一种手段,特别是在生态系统和全球模型中。在这里,我们使用一种简单的海洋微生物细胞模型来说明该模型捕捉莫诺德方程相同关系的能力,同时突出我们的模型提供的额外生理细节。在这项研究中,我们专注于生长率与磷浓度之间的关系,发现 RNA 分配在很大程度上促成了常见的观察趋势。这项工作强调了我们的模型在连接微生物与其周围环境时可能发挥的作用,同时使用了现实的生理表示。