Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populations, their development, and their sensitivity to mild drought. As the main photosynthetic instruments of vascular plants, leaves are crucial and complex plant organs. A strict organization of leaf mesophyll and epidermal cell layers orchestrates photosynthesis and gas exchange. In addition, water and nutrients for leaf growth are transported through the vascular tissue. To establish the single-cell transcriptomic landscape of these different leaf tissues, we performed high-throughput transcriptome sequencing of individual cells isolated from young leaves of Arabidopsis (Arabidopsis thaliana) seedlings grown in two different environmental cond...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
After initiation of the leaf primordium, biomass accumulation is controlled mainly by cell prolifera...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
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...
Summary: Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution wi...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Genome-wide gene expression maps with a high spatial resolution have substantially accelerated plant...
SummaryDevelopmental transitions can be described in terms of morphology and the roles of individual...
We have analyzed the maize leaf transcriptome using Illumina sequencing. We mapped more than 120 mil...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
After initiation of the leaf primordium, biomass accumulation is controlled mainly by cell prolifera...
Profiling young Arabidopsis leaves at the single-cell level enables mapping different cell populatio...
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...
Summary: Single-cell transcriptome profiling of heterogeneous tissues can provide high-resolution wi...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Developmental transitions can be described in terms of morphology and the roles of individual genes,...
Genome-wide gene expression maps with a high spatial resolution have substantially accelerated plant...
SummaryDevelopmental transitions can be described in terms of morphology and the roles of individual...
We have analyzed the maize leaf transcriptome using Illumina sequencing. We mapped more than 120 mil...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
: Differentiation of stem cells in the plant apex gives rise to aerial tissues and organs. Presently...
After initiation of the leaf primordium, biomass accumulation is controlled mainly by cell prolifera...