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Emergence of Stutzerimonas nitrititolerans co-carrying carbapenem and tigecycline resistance genes from geese feces in China

08.26.26 | KeAi Communications Co., Ltd.
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Antimicrobial resistance can move through human, animal, and environmental systems, making livestock-associated bacteria important targets for One Health surveillance. In a study published in Emerging Contaminants , researchers investigated Stutzerimonas nitrititolerans recovered from geese feces at a farm in Yangzhou, China, focusing on resistance to meropenem and reduced susceptibility to tigecycline.

From 60 fecal samples, the team isolated five multidrug-resistant S . nitrititolerans strains. All five were found to be resistant to meropenem, with minimum inhibitory concentrations of 8-32 μg/mL, and showed tigecycline MICs of 1-4 μg/mL. Hybrid short- and long-read genome sequencing found chromosomes of approximately 4.17-4.36 Mb and no detectable plasmid replicons.

“The genomes contained two distinct chromosomal resistance-associated regions,” shares senior and co-corresponding author Ruichao Li. “One carried the tmexC2D2 - toprJ2 efflux cluster within a mobile-element-rich region containing transposases, integron components, and phage-related integrases. A second, more conserved chromosomal locus contained bla PST -2 and showed local insertion-sequence and recombination signatures.”

To place the finding in a wider context, the researchers compared the five isolates with 99 publicly available S. nitrititolerans genomes. Complete tmexCD - toprJ clusters occurred in only 10 of 104 genomes (9.6%).

“Co-occurrence of a complete tmexCD - toprJ cluster with bla PST was found in nine genomes (8.7%), five of which were the geese isolates,” says Li. “Apart from one closely related pair, the geese isolates were genetically diverse, indicating that the shared resistance architecture was not simply explained by expansion of a single clone.”

Notably, transfer of meropenem- or tigecycline-non-susceptibility to Escherichia coli C600 was not detected under the filter-mating conditions used. The researchers therefore caution that the study does not demonstrate active transfer, and the direct phenotypic contribution of bla PST -2 requires further experimental confirmation.

“These data support further genomic surveillance of S. nitrititolerans in geese and other livestock-associated environments,” adds Li. “Our study provides a farm-level genomic snapshot and supports continued monitoring of resistance determinants at the animal-environment interface.”

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Contact author details: Ruichao Li, Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, College of Veterinary Medicine, Yangzhou University, Yangzhou 225009, China; rchl88@yeah.net

The publisher KeAi was established by Elsevier and China Science Publishing & Media Ltd to unfold quality research globally. In 2013, our focus shifted to open access publishing. We now proudly publish more than 200 world-class, open access, English language journals, spanning all scientific disciplines. Many of these are titles we publish in partnership with prestigious societies and academic institutions, such as the National Natural Science Foundation of China (NSFC).

Emerging Contaminants

10.1016/j.emcon.2026.100699

Experimental study

Animals

Emergence of Stutzerimonas nitrititolerans co-carrying carbapenem and tigecycline resistance genes from geese feces in China.

The authors declare no conflicts of interest.

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Article Information

Contact Information

Ye He
KeAi Communications Co., Ltd.
cassie.he@keaipublishing.com

How to Cite This Article

APA:
KeAi Communications Co., Ltd.. (2026, August 26). Emergence of Stutzerimonas nitrititolerans co-carrying carbapenem and tigecycline resistance genes from geese feces in China. Brightsurf News. https://www.brightsurf.com/news/LKNOJ23L/emergence-of-stutzerimonas-nitrititolerans-co-carrying-carbapenem-and-tigecycline-resistance-genes-from-geese-feces-in-china.html
MLA:
"Emergence of Stutzerimonas nitrititolerans co-carrying carbapenem and tigecycline resistance genes from geese feces in China." Brightsurf News, Aug. 26 2026, https://www.brightsurf.com/news/LKNOJ23L/emergence-of-stutzerimonas-nitrititolerans-co-carrying-carbapenem-and-tigecycline-resistance-genes-from-geese-feces-in-china.html.