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Determination of protoplast growth properties using quantitative single-cell tracking analysis.

Jonathan DawsonSaurabh PandeyQiuju YuPatrick SchaubFlorian WüstAmir Bahram MoradiOleksandr DovzhenkoKlaus PalmeRalf Welsch
Published in: Plant methods (2022)
AtBAG4-expressing protoplasts showed a higher proportion of cells responding with positive area increases than the wild type and showed increased growth rates as well as increased proliferation rates upon continued cultivation. These features are associated with reported observations on a BAG4-mediated increased resilience to various stress responses and improved cellular survival rates following transformation approaches. Moreover, our single-cell expansion results suggest a BAG4-mediated, cell-independent increase of potassium channel abundance which was hitherto reported for guard cells only. The possibility to explain plant phenotypes with single-cell properties, extracted with the single-cell processing and analysis pipeline developed, allows to envision novel biotechnological screening strategies able to determine improved plant properties via single-cell analysis.
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