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Systems‐level quantification of division timing reveals a common genetic architecture controlling asynchrony and fate asymmetry

Authors :
Vincy Wing Sze Ho
Ming‐Kin Wong
Xiaomeng An
Daogang Guan
Jiaofang Shao
Hon Chun Kaoru Ng
Xiaoliang Ren
Kan He
Jinyue Liao
Yingjin Ang
Long Chen
Xiaotai Huang
Bin Yan
Yiji Xia
Leanne Lai Hang Chan
King Lau Chow
Hong Yan
Zhongying Zhao
Source :
Molecular Systems Biology, Vol 11, Iss 6, Pp 1-18 (2015)
Publication Year :
2015
Publisher :
Springer Nature, 2015.

Abstract

Abstract Coordination of cell division timing is crucial for proper cell fate specification and tissue growth. However, the differential regulation of cell division timing across or within cell types during metazoan development remains poorly understood. To elucidate the systems‐level genetic architecture coordinating division timing, we performed a high‐content screening for genes whose depletion produced a significant reduction in the asynchrony of division between sister cells (ADS) compared to that of wild‐type during Caenorhabditis elegans embryogenesis. We quantified division timing using 3D time‐lapse imaging followed by computer‐aided lineage analysis. A total of 822 genes were selected for perturbation based on their conservation and known roles in development. Surprisingly, we find that cell fate determinants are not only essential for establishing fate asymmetry, but also are imperative for setting the ADS regardless of cellular context, indicating a common genetic architecture used by both cellular processes. The fate determinants demonstrate either coupled or separate regulation between the two processes. The temporal coordination appears to facilitate cell migration during fate specification or tissue growth. Our quantitative dataset with cellular resolution provides a resource for future analyses of the genetic control of spatial and temporal coordination during metazoan development.

Details

Language :
English
ISSN :
17444292
Volume :
11
Issue :
6
Database :
Directory of Open Access Journals
Journal :
Molecular Systems Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.3a1438b8090043adab44c0dbf25c1565
Document Type :
article
Full Text :
https://doi.org/10.15252/msb.20145857