Summary of 377-Ichinose-RedAlgae

SSBD:database
SSBD:database URL
Title
Beta-tubulin dynamics during cell cycles of red algae
Description
-
Release date
2025-01-31
Updated date
-
License
CC BY
Kind
Image data based on Experiment
Number of Datasets
1 ( Image datasets: 1, Quantitative data datasets: 0 )
Size of Datasets
930.3 MB ( Image datasets: 930.3 MB, Quantitative data datasets: 0 bytes )

Organism(s)
Cyanidioschyzon merolae
Strain(s)
T1

Datatype
-
Molecular Function (MF)
tubulin binding
Biological Process (BP)
cell division, cell cycle
Cellular Component (CC)
Biological Imaging Method
fluorescence microscopy
X scale
1 micrometer
Y scale
1 micrometer
Z scale
-
T scale
15 minutes

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

Related paper(s)

Takako M Ichinose, Atsuko H Iwane (2021) Long-term live cell cycle imaging of single Cyanidioschyzon merolae cells., Protoplasma, Volume 258, Number 3, pp. 651-660

Published in 2021 May (Electronic publication in Jan. 5, 2021, midnight )

(Abstract) Live cell imaging by fluorescence microscopy is a useful tool for elucidating the localization and function of proteins and organelles in single cells. Especially, time-lapse analysis observing the same field sequentially can be used to observe cells of many organisms and analyze the dynamics of intracellular molecules. By single-cell analysis, it is possible to elucidate the characteristics and fluctuations of individual cells, which cannot be elucidated from the data obtained by averaging the characteristics of an ensemble of cells. The primitive red alga Cyanidioschyzon merolae has a very simple structure and is considered a useful model organism for studying the mechanism of organelle division, since the division is performed synchronously with the cell cycle. However, C. merolae does not have a rigid cell wall, and environmental changes such as low temperature or high pH cause morphological change and disruption easily. Therefore, morphological studies of C. merolae typically use fixed cells. In this study, we constructed a long-term time-lapse observation system to analyze the dynamics of proteins in living C. merolae cells. From the results, we elucidate the cell division process of single living cells, including the function of intracellular components.
(MeSH Terms)

Contact
Atsuko H Iwane , RIKEN BDR , Laboratory for Cell Field Structure , Laboratory for Cell Field Structure
Contributors
Takako M Ichinose


Dataset List of 377-Ichinose-RedAlgae

#
Dataset ID
Kind
Size
4D View
SSBD:OMERO
Download BDML
Download Images
# 12035
Datast ID Fig4_CellDiv
Dataset Kind Image data
Dataset Size 930.3 MB
4D view
SSBD:OMERO
Download BDML
Download Image data