Environmental bacteria ferry genes that boost antibiotic resistance over 10,000-fold

2026/07/23

Categories: science

Partners in crime produce extreme antibiotic resistance
Pseudomonas aeruginosa bacterial colonies from a patient with cystic fibrosis. The bacteria are growing on an agar plate. Credit: Pradeep Singh Lab/University of Washington School of Medicine

A patient with a severe infection is prescribed a potent antibiotic. Hopes for improvement are high, but just after treatment is given, resistance to the drug increases thousands of times. How could this happen?

Scientists at the University of Washington School of Medicine report an unexpected mechanism in a paper published in Nature Microbiology.

"Resistance developing inside patients was thought to be caused by the accumulation of mutations in the bacterial genome," said Dr. Sardar Karash, a research assistant professor of microbiology and the study's lead author. "Because this process is gradual, physicians have time to react."

However, the researchers noticed people with cystic fibrosis, or CF, who did not fit this pattern. People with CF develop devastating lung infections and get intensive antibiotic treatment. In some patients, antibiotic resistance increased by more than 10,000-fold right after antibiotics were started.

This didn't make sense. The researchers wanted to find out how this could happen.

Karash sequenced hundreds of bacteria isolated from patient samples to look for mutations that might explain the extreme resistance. He came up empty-handed.

Partners in crime produce extreme antibiotic resistance
Pseudomonas aeruginosa bacteria labeled with a green fluorescent protein. Credit: Pradeep Singh Lab/University of Washington School of Medicine

Long-read sequencing changed the picture

"The approach we used was state-of-the-art," said Karash, "but it sequences short DNA strands and then strings them together. This is great for finding mutations, but it can miss new pieces of DNA that are acquired."

On a hunch, Karash switched strategies. He used a method that sequenced long, continuous DNA strands.

"That gave us the answer," said Dr. Colin Manoil, a research professor in genome sciences who collaborated on the project. "The long-strand sequencing showed that the lung pathogens had acquired circular pieces of DNA called plasmids that included new resistance genes."

Karash inserted the new genes into drug-sensitive bacteria, and resistance jumped.

Tracing the plasmids' path

But how did these plasmids enter patients' lungs and get inside the bacteria?

"Many bacteria can't take up plasmids on their own, so we suspected they had help," said Dr. Pradeep Singh, professor of microbiology and medicine and the senior author of the study.

The team then studied other bacteria collected from the patients. The researchers observed that environmental bacteria transiently appeared in lung samples from some patients right before resistance developed.

Partners in crime produce extreme antibiotic resistance
Electron micrograph of Pseudomonas aeruginosa bacteria attached to a surface. Credit: Pradeep Singh Lab/University of Washington School of Medicine

Environmental bacteria as gene couriers

Karash sequenced these bacteria and found the smoking gun: The environmental bacteria contained the identical resistance-producing plasmids. He then found they could transfer the plasmids to antibiotic-sensitive pathogens that had already established infections in the patients' lungs. This instantly increased antibiotic resistance thousands of times.

"We see environmental bacteria in patient samples from time to time," said Singh, "but we thought they were pretty harmless as they aren't very virulent and only appear transiently."

Now the researchers think differently.

"If environmental bacteria can ferry resistance genes inside human organs, we have to worry about what other genes might be transferred," Karash said.

"Environmental bacteria are highly diverse," added Singh. "They can carry genes that can do almost anything."

In addition to antibiotic resistance, genes from environmental bacteria could help pathogens acquire more nutrients, block immune responses and break down barriers that limit the spread of infection.

The researchers hope approaches like environmental monitoring and containment, as well as new strategies to block gene transfer, could mitigate this danger.

Publication details

Environmental bacteria enter lungs during an infection and transfer antibiotic resistance genes to disease-causing bacteria., Nature Microbiology (2026). DOI: 10.1038/s41564-026-02414-3

Who's behind this story?

Sadie Harley

Sadie Harley

BSc Life Sciences & Ecology. Microbiology lab background with pharmaceutical news experience in oil, gas, and renewable industries. Full profile →

Robert Egan

Robert Egan

Bachelor's in mathematical biology, Master's in creative writing. Well-traveled with unique perspectives on science and language. Full profile →

Citation: Environmental bacteria ferry genes that boost antibiotic resistance over 10,000-fold (2026, July 23) retrieved 23 July 2026 from https://phys.org/news/2026-07-environmental-bacteria-ferry-genes-boost.html

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