Single-cell transcriptomic characterization of a gastrulating human embryo

Cardiopulmonary
Published

November 17, 2021

Abstract
Gastrulation is the fundamental process in all multicellular animals through which the basic body plan is first laid down 1,2,3,4. It is pivotal in generating cellular diversity coordinated with spatial patterning. In humans, gastrulation occurs in the third week after fertilization. Our understanding of this process in humans is relatively limited and based primarily on historical specimens 5,6,7,8, experimental models 9,10,11,12 or, more recently, in vitro cultured samples 13,14,15,16. Here we characterize in a spatially resolved manner the single-cell transcriptional profile of an entire gastrulating human embryo, staged to be between 16 and 19 days after fertilization. We use these data to analyse the cell types present and to make comparisons with other model systems. In addition to pluripotent epiblast, we identified primordial germ cells, red blood cells and various mesodermal and endodermal cell types. This dataset offers a unique glimpse into a central but inaccessible stage of our development. This characterization provides new context for interpreting experiments in other model systems and represents a valuable resource for guiding directed differentiation of human cells in vitro.

Files

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DOI:10.1038/s41586-021-04158-y

Code

Human gastrula single-cell data shiny app code and data.

SWHID:swh:1:dir:bf91de9471e0fb7d0d7c9b0de6e235a405d9718e

Datasets

A spatially resolved single cell atlas of human gastrulation

ArrayExpress:E-MTAB-9388

Network