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416: Oxygen Or Other Oxidizes Iron?

416: Oxygen Or Other Oxidizes Iron?

FromBacterioFiles


416: Oxygen Or Other Oxidizes Iron?

FromBacterioFiles

ratings:
Length:
14 minutes
Released:
Mar 2, 2020
Format:
Podcast episode

Description

This episode: Earth's iron deposits could have been created by anaerobic light-harvesting microbes instead of those that make oxygen! Download Episode (9.3 MB, 13.5 minutes) Show notes: Microbe of the episode: Streptomyces avidinii News item Takeaways In the ancient earth, the sun was dimmer, the world was colder, and oxygen was rare because photosynthesis had not yet evolved. Without oxygen to oxidize it, iron remained in its soluble, more accessible form, and many organisms took advantage of it for anaerobic metabolism. But was it photosynthesis and the oxygen it created that transformed most of the planet's iron into its insoluble form, creating large iron deposits in the ground? This study explores the possibility that it was another form of light-harvesting metabolism, called photoferrotrophy, that uses light and the transformation of iron to generate energy. This hypothesis is found to be consistent with the evidence we have about what the early earth was like. Journal Paper: Thompson KJ, Kenward PA, Bauer KW, Warchola T, Gauger T, Martinez R, Simister RL, Michiels CC, Llirós M, Reinhard CT, Kappler A, Konhauser KO, Crowe SA. 2019. Photoferrotrophy, deposition of banded iron formations, and methane production in Archean oceans. Sci Adv 5:eaav2869. Other interesting stories: Gut microbes help whales digest tricky fats in their diet Bacteria deliver antibiotic to competitors using capsules made of its own membrane (paper)   Email questions or comments to bacteriofiles at gmail dot com. Thanks for listening! Subscribe: Apple Podcasts, Google Podcasts, Android, or RSS. Support the show at Patreon, or check out the show at Twitter or Facebook.
Released:
Mar 2, 2020
Format:
Podcast episode

Titles in the series (97)

The podcast for microbe lovers: reporting on exciting news about bacteria, archaea, and sometimes even eukaryotic microbes and viruses.