Summary of 408-Sarper-TentacleArrange

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Title
Z-series and time-lapse images showing phyllotaxis-like periodic and symmetric tentacle arrangements
Description
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Release date
2025-11-26
Updated date
-
License
CC BY
Kind
Image data based on Experiment
Number of Datasets
11 ( Image datasets: 11, Quantitative data datasets: 0 )
Size of Datasets
263.0 GB ( Image datasets: 263.0 GB, Quantitative data datasets: 0 bytes )

Organism(s)
Coryne uchidai

Datatype
-
Molecular Function (MF)
-
Biological Process (BP)
anatomical structure formation involved in morphogenesis, growth
Cellular Component (CC)
-
Biological Imaging Method
confocal microscopy, time lapse microscopy
T scale
10 minute, 9 minute, 8 minute, NA, 5 minute

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

Related paper(s)

Safiye E Sarper, Miho S Kitazawa, Tamami Nakanishi, Koichi Fujimoto (2023) Size-correlated polymorphisms in phyllotaxis-like periodic and symmetric tentacle arrangements in hydrozoan Coryne uchidai., Frontiers in cell and developmental biology, Volume 11, pp. 1284904

Published in 2023 (Electronic publication in Nov. 22, 2023, midnight )

(Abstract) Introduction: Periodic organ arrangements occur during growth and development and are widespread in animals and plants. In bilaterian animals, repetitive organs can be interpreted as being periodically arranged along the two-dimensional space and defined by two body axes; on the other hand, in radially symmetrical animals and plants, organs are arranged in the three-dimensional space around the body axis and around plant stems, respectively. The principles of periodic organ arrangement have primarily been investigated in bilaterians; however, studies on this phenomenon in radially symmetrical animals are scarce. Methods: In the present study, we combined live imaging, quantitative analysis, and mathematical modeling to elucidate periodic organ arrangement in a radially symmetrical animal, Coryne uchidai (Cnidaria, Hydrozoa). Results: The polyps of C. uchidai simultaneously formed multiple tentacles to establish a regularly angled, ring-like arrangement with radial symmetry. Multiple rings periodically appeared throughout the body and mostly maintained symmetry. Furthermore, we observed polymorphisms in symmetry type, including tri-, tetra-, and pentaradial symmetries, as individual variations. Notably, the types of radial symmetry were positively correlated with polyp diameter, with a larger diameter in pentaradial polyps than in tetra- and triradial ones. Our mathematical model suggested the selection of size-correlated radial symmetry based on the activation-inhibition and positional information from the mouth of tentacle initiation. Discussion: Our established quantification methods and mathematical model for tentacle arrangements are applicable to other radially symmetrical animals, and will reveal the widespread association between size-correlated symmetry and periodic arrangement principles.

Contact
Safiye E. Sarper , RIKEN , Laboratory for Evolutionary Morphology, Center for Biosystems Dynamics Research , Laboratory for Evolutionary Morphology, Center for Biosystems Dynamics Research
Contributors
Miho S. Kitazawa, Tamami Nakanishi, Koichi Fujimoto


Dataset List of 408-Sarper-TentacleArrange

#
Dataset ID
Kind
Size
4D View
SSBD:OMERO
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# 12850
Dataset Kind Image data
Dataset Size 7.4 GB
4D view
SSBD:OMERO
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# 12851
Dataset Kind Image data
Dataset Size 60.1 GB
4D view
SSBD:OMERO
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# 12852
Dataset Kind Image data
Dataset Size 89.2 GB
4D view
SSBD:OMERO
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# 12853
Dataset Kind Image data
Dataset Size 53.9 GB
4D view
SSBD:OMERO
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# 12854
Dataset Kind Image data
Dataset Size 22.2 GB
4D view
SSBD:OMERO
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# 12855
Dataset Kind Image data
Dataset Size 4.7 GB
4D view
SSBD:OMERO
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# 12856
Dataset Kind Image data
Dataset Size 540.4 MB
4D view
SSBD:OMERO
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# 12857
Dataset Kind Image data
Dataset Size 5.4 GB
4D view
SSBD:OMERO
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# 12858
Dataset Kind Image data
Dataset Size 4.2 GB
4D view
SSBD:OMERO
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# 12859
Datast ID Fig4A_Triradial
Dataset Kind Image data
Dataset Size 8.4 GB
4D view
SSBD:OMERO
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# 12860
Datast ID Fig4B_Pentaradial
Dataset Kind Image data
Dataset Size 6.9 GB
4D view
SSBD:OMERO
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