The Drosophila embryo at single-cell transcriptome resolution

Author:

Karaiskos Nikos1ORCID,Wahle Philipp2ORCID,Alles Jonathan1,Boltengagen Anastasiya1ORCID,Ayoub Salah1ORCID,Kipar Claudia2ORCID,Kocks Christine1ORCID,Rajewsky Nikolaus1ORCID,Zinzen Robert P.2ORCID

Affiliation:

1. Systems Biology of Gene Regulatory Elements, Berlin Institute for Medical Systems Biology (BIMSB), Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), 13125 Berlin, Germany.

2. Systems Biology of Neural Tissue Differentiation, BIMSB, MDC, 13125 Berlin, Germany.

Abstract

3D gene expression blueprint of the fly When looking at populations of cells, features such as cell heterogeneity and localization are masked. However, single-cell sequencing reveals cellular heterogeneity and rare cell types. At the onset of gastrulation, the fly embryo consists of about 6000 cells with distinct gene expression profiles. Karaiskos et al. developed an algorithm to generate an interactive three-dimensional (3D) “virtual embryo,” with the expression of more than 8000 genes per cell measured for most cells (see the Perspective by Stadler and Eisen). The virtual embryo offers insights into developmental mechanisms—from local expression of regulators such as transcription factors and long noncoding RNAs to spatial modulation of signaling pathways. Science , this issue p. 194 ; see also p. 172

Funder

DFG

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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