Hosoda Kazufumi, Tsuda Soichiro, Kadowaki Kohmei, Nakamura Yutaka, Nakano Tadashi, Ishii Kojiro
Institute for Academic Initiatives, Osaka University, Suita, Osaka, Japan.
WestCHEM, School of Chemistry, University of Glasgow, Glasgow, Scotland, United Kingdom.
Biosystems. 2016 Feb;140:28-34. doi: 10.1016/j.biosystems.2015.12.005. Epub 2015 Dec 30.
Understanding ecosystem dynamics is crucial as contemporary human societies face ecosystem degradation. One of the challenges that needs to be recognized is the complex hierarchical dynamics. Conventional dynamic models in ecology often represent only the population level and have yet to include the dynamics of the sub-organism level, which makes an ecosystem a complex adaptive system that shows characteristic behaviors such as resilience and regime shifts. The neglect of the sub-organism level in the conventional dynamic models would be because integrating multiple hierarchical levels makes the models unnecessarily complex unless supporting experimental data are present. Now that large amounts of molecular and ecological data are increasingly accessible in microbial experimental ecosystems, it is worthwhile to tackle the questions of their complex hierarchical dynamics. Here, we propose an approach that combines microbial experimental ecosystems and a hierarchical dynamic model named population-reaction model. We present a simple microbial experimental ecosystem as an example and show how the system can be analyzed by a population-reaction model. We also show that population-reaction models can be applied to various ecological concepts, such as predator-prey interactions, climate change, evolution, and stability of diversity. Our approach will reveal a path to the general understanding of various ecosystems and organisms.
随着当代人类社会面临生态系统退化,了解生态系统动态至关重要。需要认识到的挑战之一是复杂的层次动态。生态学中的传统动态模型通常仅代表种群水平,尚未纳入亚生物体水平的动态,这使得生态系统成为一个复杂的自适应系统,表现出诸如恢复力和状态转变等特征行为。传统动态模型中对亚生物体水平的忽视可能是因为除非有支持性实验数据,否则整合多个层次会使模型过于复杂。鉴于在微生物实验生态系统中越来越容易获得大量分子和生态数据,探讨其复杂层次动态问题是值得的。在此,我们提出一种将微生物实验生态系统与一种名为种群 - 反应模型的层次动态模型相结合的方法。我们以一个简单的微生物实验生态系统为例,展示如何通过种群 - 反应模型对该系统进行分析。我们还表明,种群 - 反应模型可应用于各种生态概念,如捕食者 - 猎物相互作用、气候变化、进化和多样性稳定性。我们的方法将揭示一条通向全面理解各种生态系统和生物体的途径。