Abstract
Transient genetic modification of plant protoplasts is a straightforward and rapid technique for the study of numerous aspects of plant biology. Recent studies in metazoan systems have utilized cell-based assays to interrogate signal transduction pathways using high-throughput methods. Plant biologists could benefit from new tools that expand the use of cell culture for large-scale analysis of gene function. We have developed a system that employs fluorescent positive selection in combination with flow cytometric analysis and fluorescence-activated cell sorting to isolate responses in the transformed protoplasts exclusively. The system overcomes the drawback that transfected protoplast suspensions are often a heterogeneous mix of cells that have and have not been successfully transformed. This Gateway-compatible system enables high-throughput screening of genetic circuitry using overexpression. The incorporation of a red fluorescent protein selection marker enables combined utilization with widely available green fluorescent protein (GFP) tools. For instance, such a dual labeling approach allows cytometric analysis of GFP reporter gene activation expressly in the transformed cells or fluorescence-activated cell sorting-mediated isolation and downstream examination of overexpression effects in a specific GFP-marked cell population. Here, as an example, novel uses of this system are applied to the study of auxin signaling, exploiting the red fluorescent protein/GFP dual labeling capability. In response to manipulation of the auxin response network through overexpression of dominant negative auxin signaling components, we quantify effects on auxin-responsive DR5::GFP reporter gene activation as well as profile genome-wide transcriptional changes specifically in cells expressing a root epidermal marker.
MeSH Terms
Arabidopsis/genetics,metabolism
Gene Expression Regulation, Plant/drug effects
Genes, Reporter
Green Fluorescent Proteins/metabolism
Indoleacetic Acids/chemistry,pharmacology
Luminescent Measurements/methods
Luminescent Proteins/metabolism
Organ Specificity/drug effects
Plant Proteins/genetics,metabolism
Protoplasts/drug effects,metabolism
Transcription, Genetic/drug effects
Chemicals
Indoleacetic Acids
Luminescent Proteins
Plant Proteins
red fluorescent protein
Green Fluorescent Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bargmann Bastiaan O R
Biology Department, New York University, New York, New York 10003, USA.
Birnbaum Kenneth D
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