Related Experiment Video
Updated: Jun 21, 2025

Replication of the Ordered, Nonredundant Library of Pseudomonas aeruginosa strain PA14 Transposon Insertion Mutants
Published on: May 4, 2018
Acinetobacter pittii: the emergence of a hospital-acquired pathogen analyzed from the genomic perspective
Elena Bello-López1, Ana Sofía Escobedo-Muñoz1, Gabriela Guerrero2
1Universidad Nacional Autónoma de México, Centro de Ciencias Genómicas, Programa de Genómica Evolutiva, Cuernavaca, Mexico.
Abstract:
Acinetobacter pittii has increasingly been associated with several types of hospital-acquired severe infections. Genes implicated in carbapenem resistance, tigecycline resistance, or genes encoding extended spectrum cephalosporinases, such as blaADC, are commonly found in isolates implicated in these infections. A. pittii strains that are pandrug resistant have occasionally been identified. Food for human consumption, animals and plants are environmental sources of this pathogen. An alarming situation is that A. pitti has been identified as responsible for outbreaks in different regions worldwide. In this study, 384 genomes of A. pittii were analyzed, comprising sequences from clinical and non-clinical origins from 32 countries. The objective was to investigate if clinical strains possess genetic traits facilitating hospital adaptation. Results indicate significant genomic variability in terms of size and gene content among A. pittii isolates. The core genome represents a small portion (25-36%) of each isolate's genome, while genes associated with antibiotic resistance and virulence predominantly belong to the accessory genome. Notably, antibiotic resistance genes are encoded by a diverse array of plasmids. As the core genome between environmental and hospital isolates is the same, we can assume that hospital isolates acquired ARGs due to a high selective pressure in these settings. The strain's phylogeographic distribution indicates that there is no geographical bias in the isolate distribution; isolates from different geographic regions are dispersed throughout a core genome phylogenetic tree. A single clade may include isolates from extremely distant geographical areas. Furthermore, strains isolated from the environment or animal, or plant sources frequently share the same clade as hospital isolates. Our analysis showed that the clinical isolates do not already possess specific genes, other than antibiotic-resistant genes, to thrive in the hospital setting.
Insights
Acinetobacter pittii hospital infections are linked to antibiotic resistance genes acquired from environmental sources. Clinical strains lack specific adaptations for hospital survival, suggesting acquisition of resistance genes under selective pressure.
Area of Science:
- Genomics
- Microbiology
- Infectious Diseases
Background:
- Acinetobacter pittii is increasingly implicated in severe hospital-acquired infections.
- Antibiotic resistance, including carbapenem and tigecycline resistance, is a significant concern.
- Environmental sources like food, animals, and plants harbor this pathogen.
Purpose of the Study:
- To analyze 384 Acinetobacter pittii genomes from clinical and non-clinical origins across 32 countries.
- To investigate if clinical A. pittii strains possess genetic traits facilitating hospital adaptation.
- To understand the genomic variability and sources of antibiotic resistance.
Main Methods:
- Whole-genome sequencing and comparative genomic analysis of 384 A. pittii isolates.
- Phylogenomic analysis to determine geographic distribution and evolutionary relationships.
- Identification and characterization of antibiotic resistance genes (ARGs) and virulence factors.
Main Results:
- Significant genomic variability observed in size and gene content; core genome is small (25-36%).
- Antibiotic resistance and virulence genes are primarily located in the accessory genome, often on plasmids.
- No specific genetic adaptations for hospital environments were found in clinical isolates beyond ARGs; environmental and clinical strains share clades.
Conclusions:
- Hospital-acquired A. pittii isolates likely acquire antibiotic resistance genes (ARGs) due to high selective pressure in healthcare settings.
- The core genome is conserved between environmental and hospital isolates, indicating environmental reservoirs.
- A. pittii's global distribution and ability to acquire resistance genes pose a significant public health threat.
More Related Videos
07:59Rapid and Specific Detection of Acinetobacter baumannii Infections Using a Recombinase Polymerase Amplification/Cas12a-based System
Published on: April 25, 2025
05:06Author Spotlight: Advancing Antibiotic Resistance Research Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
Published on: January 5, 2024