Molecular War and Peace: the Concurrent Path to Antibiosis and Antibiotic Resistance

preprint OA: closed
Full text JSON View at publisher

Abstract

The possibility of the emergence of proto-antibiotic and proto-resistance molecules in the prebiotic world, as primary elements involved in “molecular wars,” is examined in this conceptual review. Throughout the Earth's early history, prebiotic chemical processes produced molecules that associated both randomly and persistently. Over time, those configurations that achieved greater stability were favored, their longevity effectively serving as a mechanism for prebiotic selection. Some of these molecular aggregates could result in conformations capable of disrupting the assembly or stability of rival structures, thereby acting as proto-antibiotics in a precellular scenario. Concurrently, some other molecular aggregates may deactivate such proto-antibiotics, acting as primitive mechanisms of resistance. However, both production and protection mechanisms tended to coalesce as proto-antibiotic production began to act on the producers' own multimolecular assemblies. During a prolonged time, the chemical Thioester World, RNA World, and the biological Proto-Cellular World coexisted, and proto-organelles started to be influenced and protected by proto-antibiotics and proto-resistances. Antibiotic production and resistance remained associated, even at the stage of antibiotic polyketides, emerging under a more oxygenated landscape, resulting in early biosynthetic pathways giving rise to contemporary ones, mainly in Actinomycetota. This scenario of integrated action and reaction provided an ecological equilibrium where antibiotics were not necessarily killer agents, but just regulatory signals within the microbiosphere, ensuring healthy bacterial interactions. The massive anthropogenic antibiotic production altered such an equilibrium, favoring an unbalanced resistance reaction through the massive diffusion of antibiotic resistance genes, now decoupled from antibiotic production and spreading across the microbial world, mostly carried in mobile genetic elements.
Full text 2,767 characters · extracted from oa-doi-fallback · click to expand
This is a Preprint and has not been peer reviewed. This is version 1 of this Preprint. You must log in to post a comment. There are no comments or no comments have been made public for this article. This is a Preprint and has not been peer reviewed. This is version 1 of this Preprint. Add a Comment You must log in to post a comment. Comments There are no comments or no comments have been made public for this article. The possibility of the emergence of proto-antibiotic and proto-resistance molecules in the prebiotic world, as primary elements involved in “molecular wars,” is examined in this conceptual review. Throughout the Earth's early history, prebiotic chemical processes produced molecules that associated both randomly and persistently. Over time, those configurations that achieved greater stability were favored, their longevity effectively serving as a mechanism for prebiotic selection. Some of these molecular aggregates could result in conformations capable of disrupting the assembly or stability of rival structures, thereby acting as proto-antibiotics in a precellular scenario. Concurrently, some other molecular aggregates may deactivate such proto-antibiotics, acting as primitive mechanisms of resistance. However, both production and protection mechanisms tended to coalesce as proto-antibiotic production began to act on the producers' own multimolecular assemblies. During a prolonged time, the chemical Thioester World, RNA World, and the biological Proto-Cellular World coexisted, and proto-organelles started to be influenced and protected by proto-antibiotics and proto-resistances. Antibiotic production and resistance remained associated, even at the stage of antibiotic polyketides, emerging under a more oxygenated landscape, resulting in early biosynthetic pathways giving rise to contemporary ones, mainly in Actinomycetota. This scenario of integrated action and reaction provided an ecological equilibrium where antibiotics were not necessarily killer agents, but just regulatory signals within the microbiosphere, ensuring healthy bacterial interactions. The massive anthropogenic antibiotic production altered such an equilibrium, favoring an unbalanced resistance reaction through the massive diffusion of antibiotic resistance genes, now decoupled from antibiotic production and spreading across the microbial world, mostly carried in mobile genetic elements. https://doi.org/10.32942/X2N66V Life Sciences, Medicine and Health Sciences molecular wars, antibiotic resistance, origin antibiotic resistance Published: 2026-04-24 00:52 Last Updated: 2026-04-24 00:52 CC-BY Attribution-NonCommercial 4.0 International Conflict of interest statement: None Data and Code Availability Statement: Not applicable Language: English

Text is read by the "Ask this paper" AI Q&A widget below. Extraction quality varies by source — PMC NXML preserves structure cleanly, OA-HTML may include some navigation residue, and OA-PDF can have broken hyphenation. The publisher copy (via DOI) is the canonical version.

My notes (saved in your browser only)

Ask this paper AI returns verbatim quotes from the full text · source: oa-doi-fallback

Answers must be backed by verbatim quotes from this paper's full text. Hallucinated quotes are dropped automatically; if no verbatim passage answers the question, we say so. How this works

Citation neighborhood (no data yet)

We don't have any in-corpus citations linked to this paper yet. This is a recent paper (2026) — citers typically take a year or two to land, and the OpenAlex reference graph may still be filling in.

Source provenance

europepmc
last seen: 2026-05-20T01:45:00.602351+00:00