ssbd-repos-000479

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The morphology of some kinds of Escherichia coli resistant to various antibiotics

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ssbd-repos-000479
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DOI
SSBD:database

Project metadata

Title
The morphology of some kinds of Escherichia coli resistant to various antibiotics
Description
Although it is well known that the morphology of Gram-negative rods changes on exposure to antibiotics, the morphology of antibiotic-resistant bacteria in the absence of antibiotics has not been widely investigated. Here, we studied the morphologies of 10 antibiotic-resistant strains of Escherichia coli and used bioinformatics tools to classify the resistant cells under light microscopy in the absence of antibiotics. The antibiotic-resistant strains showed differences in morphology from the sensitive parental strain, and the differences were most prominent in the quinolone-and β-lactam-resistant bacteria. A cluster analysis revealed increased proportions of fatter or shorter cells in the antibiotic-resistant strains. A correlation analysis of morphological features and gene expression suggested that genes related to energy metabolism and antibiotic resistance were highly correlated with the morphological characteristics of the resistant strains. Our newly proposed deep learning method for single-cell classification achieved a high level of performance in classifying quinolone-and β-lactam-resistant strains.
Submission date
2025-11-28
Release date
2025-12-04
Update date
-
License
CC BY license
Funding information
MEXT/JSPS (21H03542, 23K21717, 22K19831), JST (PMJSP2138)
File formats
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313,442 files / 98.90 GiB
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3 files / 9.90 GiB

Papers
https://pubmed.ncbi.nlm.nih.gov/39364166/ , https://doi.org/10.3389/fmicb.2024.1450804 PMID: 39364166 PMCID: 11446759
Miki Ikebe, Kota Aoki, Mitsuko Hayashi-Nishino, Chikara Furusawa, Kunihiko Nishino (2024) Bioinformatic analysis reveals the association between bacterial morphology and antibiotic resistance using light microscopy with deep learning., Frontiers in microbiology, Volume 15, pp. 1450804

Persons

Kota Aoki
Tottori University
Contact
Mitsuko Hayashi-Nishino
Osaka University
Contact
Kunihiko Nishino
Osaka University
Contact
Miki Ikebe
Osaka University
Imaging contributor

Ontology terms

Organism
Escherichia coli (NCBI:txid562)
Strain
-
Cell line
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Molecular function
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Biological process
-
Cellular component
-
Medical subject heading
-
Biological imaging method
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