[HTML][HTML] A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak, J Schumacher… - Nature …, 2022 - nature.com
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak… - Nature …, 2022 - ideas.repec.org
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

[PDF][PDF] A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak, J Schumacher… - scholar.archive.org
Identity and functions of plant cells are influenced by their precise cellular location within the
plant body. Cellular heterogeneity in growth and differentiation trajectories results in organ …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak… - Nature …, 2022 - econpapers.repec.org
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak, J Schumacher… - 2022 - edoc.hu-berlin.de
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak, J Schumacher… - bioRxiv, 2021 - biorxiv.org
Identity and functions of plant cells are influenced by their precise cellular location within the
plant body. Cellular heterogeneity in growth and differentiation trajectories results in organ …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data.

M Neumann, X Xu, C Smaczniak… - Nature …, 2022 - search.ebscohost.com
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

[HTML][HTML] A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak… - Nature …, 2022 - ncbi.nlm.nih.gov
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak, J Schumacher… - Nature …, 2022 - hal.science
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …

A 3D gene expression atlas of the floral meristem based on spatial reconstruction of single nucleus RNA sequencing data

M Neumann, X Xu, C Smaczniak… - Nature …, 2022 - ui.adsabs.harvard.edu
Cellular heterogeneity in growth and differentiation results in organ patterning. Single-cell
transcriptomics allows characterization of gene expression heterogeneity in developing …