Inter-gastruloid heterogeneity revealed by single cell transcriptomics time course: implications for organoid based perturbation studies
Rosen, L. U.; Stapel, L. C.; Argelaguet, R.; Barker, C. G.; Yang, A.; Reik, W.; Marioni, J. C.
Show abstract
Recent advances in organoid and genome editing technologies are allowing for perturbation experiments at an unprecedented scale. However, before doing such experiments it is important to understand the gene expression profile in each of the organoids cells, as well as how much heterogeneity there is between individual organoids. Here we characterise an organoid model of mouse gastrulation called gastruloids using single cell RNA-sequencing of individual organoids at half-day intervals between day 3 and day 5 of differentiation (roughly corresponding to E6.5-E8.75 in vivo). Our study reveals multiple differentiation trajectories that have hitherto not been characterised in gastruloids. Intriguingly, we observe that individual gastruloids displayed a strong bias towards producing either mesodermal (largely somitic) or ectodermal (specifically neural) cell types. This bifurcation is already seen at the earliest sampled time point, and is characterised by increased activity of WNT-associated pathways in mesodermally-biased gastruloids as compared to neurally-biased gastruloids. Notably, at day 5, mesodermal gastruloids show an increase in the proportion of neural cells, while neural gastruloids do not produce notably more mesodermal cells. This is in line with previous studies on how the balance between these cell types is regulated. We demonstrate using in silico simulations that without proper understanding of the inter-organoid heterogeneity, perturbation experiments have either very high false positive or negative rates, depending on the statistical model used. Thus in future studies, modelling of inter-organoid heterogeneity will be crucial when designing organoid-based perturbation studies. HighlightsO_LIA single cell RNA-sequencing time course of day 3 to day 5 mouse gastruloids reveals multiple mesodermal and neural differentiation trajectories hitherto uncharacterised in gastruloids C_LIO_LISingle gastruloid, single cell RNA-sequencing of mouse gastruloids reveals that gastruloids are either mesodermally- or neurally-biased C_LIO_LIThe two classes of gastruloid arise from differences in response strength to the WNT-agonist chiron C_LIO_LIAt day 5, mesodermal gastruloids start making more neural cells, while neural gastruloids do not make more mesodermal cells, aligning with previously studied in vivo feedback loops C_LIO_LIWe show using simulations that understanding interorganoid heterogeneity is a crucial consideration in the design and analysis of well-powered organoid-based perturbation studies C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Efficient differentiation of human primordial germ cells through geometric control reveals a key role for NODAL signaling 98%
- A gradient border model for cell fate decisions at the neural plate border 97%
- High-resolution transcriptional and morphogenetic profiling of cells from micropatterned human embryonic stem cell gastruloid cultures 97%
Similar papers in this journal
- Nodal signaling establishes a competency window for stochastic cell fate switching 97%
- Conserved signals orchestrate self-organization and symmetry breaking of bi-layered epithelia during development and regeneration 96%
- Developmental cell fate choice employs two distinct cis regulatory strategies 96%
Similar papers in this journal
- Multidimensional Chromatin Regulation of Cell Lineage Differentiation in a Metazoan Embryo 95%
- A dynamic, spatially periodic, micro-pattern of HES5 underlies neurogenesis in the mouse spinal cord. 95%
- KDML: a machine-learning framework for inference of multi-scale gene functions from genetic perturbation screens 95%
Similar papers in this journal
- Machine learning directed organoid morphogenesis uncovers an excitable system driving human axial elongation 96%
- Memory sequencing reveals heritable single cell gene expression programs associated with distinct cellular behaviors 95%
- Ultrafast and long-range coordination of wound responses is essential for whole-body regeneration 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.