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Planta|May 24, 2015
What can we learn from the transcriptome of the resurrection plant Craterostigma plantagineum?Valentino Giarola, Dorothea BartelsTrends in Plant Science|June 18, 2017
Angiosperm Plant Desiccation Tolerance: Hints from Transcriptomics and Genome SequencingValentino Giarola, Quancan Hou, Dorothea BartelsPlant Science : an International Journal of Experimental Plant Biology|May 31, 2015
Quantification of expression of dehydrin isoforms in the desiccation tolerant plant Craterostigma plantagineum using specifically designed reference genesValentino Giarola, Dinakar Challabathula, Dorothea BartelsPlanta|June 25, 2025
Unravelling the molecular network of desiccation tolerance in resurrection plants started with the model plant Craterostigma plantagineumDorothea Bartels, Valentino Giarola, John ChandlerPlanta|April 6, 2021
The Craterostigma plantagineum protein kinase CpWAK1 interacts with pectin and integrates different environmental signals in the cell wallPeilei Chen, Valentino Giarola, Dorothea BartelsPlanta|September 29, 2014
Taxonomically restricted genes of Craterostigma plantagineum are modulated in their expression during dehydration and rehydrationValentino Giarola, Stephanie Krey, Anneke Frerichs, et al.Frontiers in Plant Science|February 11, 2020
The Dynamic Responses of Cell Walls in Resurrection Plants During Dehydration and RehydrationPeilei Chen, Niklas Udo Jung, Valentino Giarola, et al.The New Phytologist|November 27, 2015
The Craterostigma plantagineum glycine-rich protein CpGRP1 interacts with a cell wall-associated protein kinase 1 (CpWAK1) and accumulates in leaf cell walls during dehydrationValentino Giarola, Stephanie Krey, Barbara von den Driesch, et al.Plant Science : an International Journal of Experimental Plant Biology|December 8, 2020
Identification and characterization of CTP:phosphocholine cytidylyltransferase CpCCT1 in the resurrection plant Craterostigma plantagineumXun Liu, Valentino Giarola, Wenli Quan, et al.Journal of Experimental Botany|May 15, 2018
Analysis of pcC13-62 promoters predicts a link between cis-element variations and desiccation tolerance in LinderniaceaeValentino Giarola, Niklas Udo Jung, Aishwarya Singh, et al.Pageof 2