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Comment
. 2021 May 31;33(4):792-793.
doi: 10.1093/plcell/koab036.

Single-cell genomics goes greener

Affiliations
Comment

Single-cell genomics goes greener

Tatsuya Nobori. Plant Cell. .
No abstract available

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Figures

Figure
Figure
Single-cell RNA-seq analysis in Chlamydomonas. A, Uniform manifold approximation and projection (UMAP) dimension reduction plot of scRNA-seq data under different nutrient conditions. Fe+, Fe replete; Fe−, Fe limited; N- R1, and N- R2, two technical replicates of N-limited cells. B, Heterogeneity within the same (iron replete) condition shown in a UMAP dimension reduction plot (left) and trajectory analysis plot (right). Adapted from Ma et�al. (2021), Figures 2, 3.

Comment on

References

    1. Ma F, Salom� PA, Merchant SS, Pellegrini M (2021) Single-cell RNA sequencing of batch Chlamydomonas cultures reveals heterogeneity in their diurnal cycle phase. Plant Cell 33: 1042–1057 - PMC - PubMed
    1. Rich-Griffin C, Stechemesser A, Finch J, Lucas E, Ott S, Sch�fer P (2020) Single-cell transcriptomics: a high-resolution avenue for plant functional genomics. Trends Plant Sci 25:186–197 - PubMed
    1. Wagner DE, Klein AM (2017) Genetic screening enters the single-cell era. Nat Methods 14:237–238 - PubMed

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