Summary of ssbd-repos-000324

SSBD:database
URL

Name
ssbd-repos-000324 (324-Kimata-ZygoticMito)
URL
DOI
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Title
Mitochondrial dynamics and segregation during the asymmetric division of Arabidopsis zygotes
Description
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Submited Date
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Release Date
2024-12-14
Updated Date
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License
Funding information
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File formats
Data size
15.7 GB

Organism
Arabidopsis thaliana
Strain
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Cell Line
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Genes
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Proteins
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GO Molecular Function (MF)
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GO Biological Process (BP)
zygote asymmetric cell division, mitochondrion distribution
GO Cellular Component (CC)
mitochondrion
Study Type
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Imaging Methods
time lapse microscopy, two-photon laser scanning microscopy

Method Summary
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Related paper(s)

Yusuke Kimata, Takumi Higaki, Daisuke Kurihara, Naoe Ando, Hikari Matsumoto, Tetsuya Higashiyama, Minako Ueda (2020) Mitochondrial dynamics and segregation during the asymmetric division of Arabidopsis zygotes., Quantitative plant biology, Volume 1, pp. e3

Published in 2020 (Electronic publication in Nov. 30, 2020, midnight )

(Abstract) The zygote is the first cell of a multicellular organism. In most angiosperms, the zygote divides asymmetrically to produce an embryo-precursor apical cell and a supporting basal cell. Zygotic division should properly segregate symbiotic organelles, because they cannot be synthesized de novo. In this study, we revealed the real-time dynamics of the principle source of ATP biogenesis, mitochondria, in Arabidopsis thaliana zygotes using live-cell observations and image quantifications. In the zygote, the mitochondria formed the extended structure associated with the longitudinal array of actin filaments (F-actins) and were polarly distributed along the apical-basal axis. The mitochondria were then temporally fragmented during zygotic division, and the resulting apical cells inherited mitochondria at higher concentration compared to the basal cells. Further observation of postembryonic organs showed that these mitochondrial behaviours are characteristic of the zygote. Overall, our results showed that the zygote has spatiotemporal regulation that unequally distributes the mitochondria.

Contact(s)
Minako Ueda
Organization(s)
Tohoku University , Graduate School of Life Sciences , Laboratory of Plant Cell Dynamics
Image Data Contributors
Quantitative Data Contributors

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