遇见数据集

Sample programs of an eco-redox model for the article: Microbial redox cycling enhances ecosystem thermodynamic efficiency and productivity

收藏
Dryad2024-12-29 收录
官方服务:

资源简介:

Microbial life in low-energy ecosystems relies on individual energy conservation, optimizing energy use in response to interspecific competition, and mutualistic interspecific syntrophy. Our study proposes a novel community-level strategy for increasing energy use efficiency. By utilizing an oxidation-reduction (redox) reaction network model that represents microbial redox metabolic interactions, we investigated multiple species-level competition and cooperation within the network. Our results suggest that microbial functional diversity allows for metabolic handoffs, which in turn lead to increased energy use efficiency. Furthermore, the mutualistic division of labor and the resulting complexity of redox pathways actively drive material cycling, further promoting energy exploitation. Our findings reveal the potential of self-organized ecological interactions to develop efficient energy utilization strategies, with important implications for microbial ecosystem functioning and co-evolution of life and Earth.

二维码
社区交流群
二维码
科研交流群
商业服务