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February 25, 2026Nature Communications4 citationsOpen Access

Space ionizing radiation triggers the formation of peptides and organophosphates on olivine surfaces

RDRuiwen DingSQShiwen QiuXGXinhua Guo

Key Points

  • The aim was to explore how ionizing radiation triggers the formation of biomolecules on olivine surfaces.
  • Utilized the Chinese Space Station for experimentation.
  • Studied solid-state condensation reactions of prebiotic organic molecules.
  • Investigated the effects of low-dose ionizing radiation on forsterite.
  • Examined the formation of dipeptides and phosphorylation of riboses.
  • Dipeptide yields increased by 41-fold due to the synergistic effect of forsterite and sodium trimetaphosphate.
  • Ionizing radiation activated sodium trimetaphosphate to phosphorylate nucleosides into nucleotides.
  • Forsterite promoted hydroxyapatite to serve as a phosphorus source for amino acid activation.

Abstract

Abstract Bioorganic molecules, such as amino acids, nucleobases, and sugars, are widely distributed in space. Here, we utilized the Chinese Space Station to carry out an investigation on the solid-state condensation reactions of these “prebiotic organic molecules” under the combined effects of ionizing radiation and forsterite. Cumulative low-dose ionizing radiation can trigger dipeptide formations and phosphorylation of riboses. Dipeptide yields increased 41-fold due to the synergistic effect of forsterite plus sodium trimetaphosphate (P 3 m). P 3 m is activated upon irradiation to phosphorylate nucleosides into nucleotides. Under ionizing radiation, forsterite can promote hydroxyapatite to serve as an accessible phosphorus source for activating amino acids to form peptides. These findings indicate that complex biomolecules can be formed abiotically in space through ionizing radiation activation with the assistance of forsterite in certain radiation - resistant environments distant from planetary surfaces. It implies that apart from transporting prebiotic organic molecules to Earth, space can also provide opportunities for the in-situ assembly of ordered biomolecules from these disordered materials.

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Cite This Study

Ding et al. (2026) studied this question.

synapsesocial.com/papers/699e920af5123be5ed05007fhttps://doi.org/10.1038/s41467-026-69575-x
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