Linder Tomas
Department of Molecular Sciences, Swedish University of Agricultural Sciences, Uppsala, Sweden.
J Microbiol Biol Educ. 2024 Dec 12;25(3):e0004424. doi: 10.1128/jmbe.00044-24. Epub 2024 Aug 19.
Anaerobic respiration reactions are of fundamental importance to global biogeochemical cycling of elements. Yet, the idea that cellular respiration can occur not only in the absence of oxygen but also involve the oxidation of inorganic substrates (e.g., AsO, Fe, H, HS, Mn, NH, and S) is often foreign to many undergraduate students. This article describes a problem-solving exercise where students are introduced to the thermodynamic fundamentals of respiration with a particular focus on the role of redox (reduction-oxidation) potentials (). In the exercise, the students investigate how the difference in redox potential () between different pairs of reductants and oxidants affects the range of permissible microbial metabolic reactions in natural environments when oxygen is absent.
无氧呼吸反应对于全球元素生物地球化学循环至关重要。然而,细胞呼吸不仅可以在无氧条件下发生,还涉及无机底物(如亚砷酸根、铁、氢、硫化氢、锰、铵和硫)的氧化,这一观点对于许多本科生来说往往很陌生。本文描述了一个解决问题的练习,其中向学生介绍呼吸作用的热力学基本原理,特别关注氧化还原电位()的作用。在这个练习中,学生们研究在无氧条件下,不同还原剂和氧化剂对之间的氧化还原电位差异如何影响自然环境中允许的微生物代谢反应范围。