Summary: Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows into developmental dynamics and environmental responses, but its application to plants has been limited. Here, we used the high-throughput Drop-seq approach to profile >12,000 cells from Arabidopsis roots. This identified numerous distinct cell types, covering all major root tissues and developmental stages, and illuminated specific marker genes for these populations. In addition, we demonstrate the utility of this approach to study the impact of environmental conditions on developmental processes. Analysis of roots grown with or without sucrose supplementation uncovers changes in the relative frequencies of cell types in response to su...
Modern expression profiling technologies have transformed biological sciences in the past decade, an...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Plant function is the result of the concerted action of single cells in different tissues. Advances ...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
Single-cell technology is a relatively new and promising way to obtain high-resolution transcriptomi...
Although several large-scale single-cell RNA sequencing (scRNAseq) studies addressing the root of Ar...
Single-cell technology is a relatively new and promising way to obtain high-resolution transcriptomi...
Single-cell RNA-sequencing has greatly increased the spatiotemporal resolution of root transcriptomi...
Single-cell RNA-sequencing has greatly increased the spatiotemporal resolution of root transcriptomi...
Quantitative information on gene activity at single cell-type resolution is essential for the unders...
Modern expression profiling technologies have transformed biological sciences in the past decade, an...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution windows int...
Plant function is the result of the concerted action of single cells in different tissues. Advances ...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
Single-cell technology is a relatively new and promising way to obtain high-resolution transcriptomi...
Although several large-scale single-cell RNA sequencing (scRNAseq) studies addressing the root of Ar...
Single-cell technology is a relatively new and promising way to obtain high-resolution transcriptomi...
Single-cell RNA-sequencing has greatly increased the spatiotemporal resolution of root transcriptomi...
Single-cell RNA-sequencing has greatly increased the spatiotemporal resolution of root transcriptomi...
Quantitative information on gene activity at single cell-type resolution is essential for the unders...
Modern expression profiling technologies have transformed biological sciences in the past decade, an...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...
Plants are composed of cells that physically interact and constantly adapt to their environment. To ...