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Fig. 2

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ZDB-FIG-240207-10
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Dorrity et al., 2023 - Proteostasis governs differential temperature sensitivity across embryonic cell types
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Fig. 2

Staging embryos by cell type composition captures temperature-induced acceleration of development and allows isolation of temperature-dependent effects on cell abundance (A) UMAP of embryo trajectory produced using all individual embryos from the developmental reference; each segment of the principal graph represents a 2-h window of development, with key events noted. Right panel shows how, at each time point, embryos from elevated temperature are “ahead” of their 28°C counterparts on the embryo stage trajectory (median pseduostage for each temperature indicated with horizontal bars). (B) Scatterplot showing mean pseudostage values are correlated with expectations from a linear model of temperature-induced acceleration of developmental rate; error bars represent standard deviation. The result of linear regression is shown in black. (C) Scatterplot showing mean pseudostage values for all embryos in the reference dataset compared with a nearest-neighbor label transfer in transcriptome space; error bars on both axes represent standard deviation; both cell composition and transcriptomes contain ample information on developmental stage. (D) Heatmap showing the effects of temperature on mean cell type abundance relative to untreated, stage-matched controls (left) and on variability (CV relative to controls) of cell counts (right). Significant tests (q < 0.05) from beta binomial regression are indicated with a black box. Each column represents a pseudostage bin, wherein embryos from untreated and treated samples are stage matched. (E) UMAP of all cell types, colored by relative abundance change in severe (bent) individuals raised at 34°C compared with normal-looking embryos also raised at 34°C.

Expression Data

Expression Detail
Antibody Labeling
Phenotype Data

Phenotype Detail
Acknowledgments
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Reprinted from Cell, 186, Dorrity, M.W., Saunders, L.M., Duran, M., Srivatsan, S.R., Barkan, E., Jackson, D.L., Sattler, S.M., Ewing, B., Queitsch, C., Shendure, J., Raible, D.W., Kimelman, D., Trapnell, C., Proteostasis governs differential temperature sensitivity across embryonic cell types, 50155027.e125015-5027.e12, Copyright (2023) with permission from Elsevier. Full text @ Cell