Summary of 255-Koganezawa-CellDyn


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Title
Time-lapse images of cell dynamics in different E. coli strain cells after gene deletion by blue-light illumination.
Description
-
Release date
2024-01-23
Updated date
-
License
CC BY
Kind
Image data based on Experiment
Number of Datasets
414 ( Image datasets: 414, Quantitative data datasets: 0 )
Size of Datasets
3.1 TB ( Image datasets: 3.1 TB, Quantitative data datasets: 0 bytes )

Organism(s)
Escherichia coli
Strain(s)
YK0138, YK0136, YK0083, YK0085

Datatype
-
Molecular Function (MF)
Biological Process (BP)
cell growth, cell division, response to xenobiotic stimulus
Cellular Component (CC)
Biological Imaging Method
time lapse microscopy
X scale
0.13 micrometer/pixel
Y scale
0.13 micrometer/pixel
Z scale
-
T scale
2 minutes of time interval, 10 minutes of time interval

Image Acquisition
Experiment type
-
Microscope type
-
Acquisition mode
-
Contrast method
-
Microscope model
-
Detector model
-
Objective model
-
Filter set
-

Related paper(s)

Yuta Koganezawa, Miki Umetani, Moritoshi Sato, Yuichi Wakamoto (2022) History-dependent physiological adaptation to lethal genetic modification under antibiotic exposure., eLife, Volume 11

Published in 2022 May 10 (Electronic publication in May 10, 2022, midnight )

(Abstract) Genetic modifications, such as gene deletion and mutations, could lead to significant changes in physiological states or even cell death. Bacterial cells can adapt to diverse external stresses, such as antibiotic exposure, but can they also adapt to detrimental genetic modification? To address this issue, we visualized the response of individual Escherichia coli cells to deletion of the antibiotic resistance gene under chloramphenicol (Cp) exposure, combining the light-inducible genetic recombination and microfluidic long-term single-cell tracking. We found that a significant fraction ( approximately 40%) of resistance-gene-deleted cells demonstrated a gradual restoration of growth and stably proliferated under continuous Cp exposure without the resistance gene. Such physiological adaptation to genetic modification was not observed when the deletion was introduced in 10 hr or more advance before Cp exposure. Resistance gene deletion under Cp exposure disrupted the stoichiometric balance of ribosomal large and small subunit proteins (RplS and RpsB). However, the balance was gradually recovered in the cell lineages with restored growth. These results demonstrate that bacterial cells can adapt even to lethal genetic modifications by plastically gaining physiological resistance. However, the access to the resistance states is limited by the environmental histories and the timings of genetic modification.
(MeSH Terms)

Contact
Yuichi Wakamoto , The University of Tokyo , Graduate School of Arts and Sciences , Department of Basic Science
Contributors

Dataset List of 255-Koganezawa-CellDyn

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#
Dataset ID
Kind
Size
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos13
# 11493
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos14
# 11494
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos15
# 11495
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos16
# 11496
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos17
# 11497
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos18
# 11498
Dataset Kind Image data
Dataset Size 3.6 GB
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SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos19
# 11499
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos20
# 11500
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos21
# 11501
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos22
# 11502
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos23
# 11503
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos24
# 11504
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos25
# 11505
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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Thumbnail Thumbnail for dataset Video6_ph(FilTer)50TxRed100YFP100_Bin2_YK0138_15Cp_2_Pos26
# 11506
Dataset Kind Image data
Dataset Size 3.6 GB
4D view
SSBD:OMERO
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