Iron played a critical catalytic role in the origin of early life on Earth.
Multiple origin-of-life models and geochemical studies indicate that iron and iron-sulfur minerals played a critical catalytic role in facilitating early prebiotic chemical reactions, carbon fixation, and metabolic network formation.
The retrieved papers consistently highlight the catalytic importance of iron and iron-sulfur compounds in prebiotic chemistry, from carbon fixation and organic synthesis to RNA oligomerization and early metabolic networks. None of the provided papers refute this role, making SUPPORTED the appropriate verdict.
Günter Wächtershäuser. Iron‐Sulfur World. 2008. https://doi.org/10.1002/9780470048672.wecb264
Discusses iron, nickel, and transition metal centers as catalysts for reductive carbon fixation and organic compound formation in origin-of-life theories.
See more details
Iñaki Del Amo Castillo. Lightning, Minerals, and the Iron Bottleneck: A Probabilistic Geochemical Framework for Early Abiogenesis Environments V8. 2026. https://doi.org/10.21203/rs.3.rs-8579406/v1
Notes that iron-sulfur mineral surfaces enhance molecular stability and reactivity in prebiotic surface environments.
Maximilian Bechtel, Marian Ebeling, Laura Huber, Oliver Trapp. (Photoredox) Organocatalysis in the Emergence of Life: Discovery, Applications, and Molecular Evolution.. 2023. https://doi.org/10.1021/acs.accounts.3c00396
Highlights how prebiotically plausible iron-particle catalysis aids in forming key organic building blocks.
Bradley T Burcar, Laura M Barge, Dustin Trail, E Bruce Watson, Michael J Russell, Linda B McGown. RNA Oligomerization in Laboratory Analogues of Alkaline Hydrothermal Vent Systems.. 2015. https://doi.org/10.1089/ast.2014.1280
Demonstrates that iron- and sulfur-rich chimney structures successfully support RNA oligomerization reactions.
William Martin, Michael J Russell. On the origins of cells: a hypothesis for the evolutionary transitions from abiotic geochemistry to chemoautotrophic prokaryotes, and from prokaryotes to nucleated cells.. 2003. https://doi.org/10.1098/rstb.2002.1183
Proposes that iron monosulphide precipitates and FeS centers played a central catalytic role in early abiogenesis and chemoautotrophic prokaryote emergence.
Gabriel Piedrafita, Sreejith J Varma, Cecilia Castro, Christoph B Messner, Lukasz Szyrwiel, Julian L Griffin, Markus Ralser. Cysteine and iron accelerate the formation of ribose-5-phosphate, providing insights into the evolutionary origins of the metabolic network structure.. 2021. https://doi.org/10.1371/journal.pbio.3001468
Shows that iron-driven reaction networks, augmented by amino acids, accelerate key prebiotic metabolic precursors such as ribose-5-phosphate.
The paper trail · every fact has a biography
Challenge the receipt
Citation formatting by citeproc-js (Frank Bennett) and the Citation Style Language project. Source and licenses.
Terms · Privacy · How verdicts work · Dispute this receipt