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Updated: Oct 11, 2025

Antibiotic Dereplication Using the Antibiotic Resistance Platform
Published on: October 17, 2019
Why Do Antibiotics Exist?
Fabrizio Spagnolo1, Monica Trujillo2, John J Dennehy1,3
1Biology Department, Queens College of The City University of New York, Flushing, New York, USA.
Abstract:
In the struggle with antibiotic resistance, we are losing. There is now a serious threat of moving into a postantibiotic world. High levels of resistance, in terms of both frequency and strength, have evolved against all clinically approved antibiotics worldwide. The usable life span of new clinically approved antibiotics is typically less than a decade before resistance reaches frequencies so high as to require only guarded usage. However, microbes have produced antibiotics for millennia without resistance becoming an existential issue. If resistance is the inevitable consequence of antibiotic usage, as has been the human experience, why has it not become an issue for microbes as well, especially since resistance genes are as prevalent in nature as the genes responsible for antibiotic production? Here, we ask how antibiotics can exist given the almost ubiquitous presence of resistance genes in the very microbes that have produced and used antibiotics since before humans walked the planet. We find that the context of both production and usage of antibiotics by microbes may be key to understanding how resistance is managed over time, with antibiotic synthesis and resistance existing in a paired relationship, much like a cipher and key, that impacts microbial community assembly. Finally, we put forward the cohesive, ecologically based "secret society" hypothesis to explain the longevity of antibiotics in nature.
Insights
Microbes have naturally managed antibiotic resistance for millennia, unlike humans. A new "secret society" hypothesis suggests a paired relationship between antibiotic production and resistance explains this longevity.
Area of Science:
- Microbiology
- Ecology
- Evolutionary Biology
Background:
- Antibiotic resistance is a growing global health crisis, threatening a post-antibiotic era.
- Clinically approved antibiotics have short effective lifespans due to rapidly evolving resistance.
- Microbial antibiotic resistance has persisted for millennia without posing an existential threat.
Observation:
- Resistance genes are widespread in nature, coexisting with antibiotic-producing microbes.
- Human antibiotic use leads to high resistance frequencies.
- Microbial antibiotic production and resistance appear to be intricately linked.
Findings:
- The context of antibiotic production and usage by microbes is crucial for managing resistance.
- Antibiotic synthesis and resistance function as a paired system, influencing microbial communities.
- The "secret society" hypothesis proposes an ecological mechanism for antibiotic longevity in nature.
Implications:
- Understanding microbial strategies can inform new approaches to combatting antibiotic resistance.
- Ecological principles may offer solutions to the antibiotic resistance crisis.
- This research re-frames antibiotic resistance as an ecologically regulated phenomenon.
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