Related Experiment Video
Updated: May 3, 2026

Measuring the Osmotic Water Permeability Coefficient Pf of Spherical Cells: Isolated Plant Protoplasts as an Example
Published on: October 8, 2014
Expression Analysis of Sugarcane Aquaporin Genes under Water Deficit
Manassés Daniel da Silva1, Roberta Lane de Oliveira Silva1, José Ribamar Costa Ferreira Neto1
1Department of Genetics, Federal University of Pernambuco (UFPE), 50670-901 Recife, PE, Brazil.
Abstract:
The present work is a pioneer study specifically addressing the aquaporin transcripts in sugarcane transcriptomes. Representatives of the four aquaporin subfamilies (PIP, TIP, SIP, and NIP), already described for higher plants, were identified. Forty-two distinct aquaporin isoforms were expressed in four HT-SuperSAGE libraries from sugarcane roots of drought-tolerant and -sensitive genotypes, respectively. At least 10 different potential aquaporin isoform targets and their respective unitags were considered to be promising for future studies and especially for the development of molecular markers for plant breeding. From those 10 isoforms, four (SoPIP2-4, SoPIP2-6, OsPIP2-4, and SsPIP1-1) showed distinct responses towards drought, with divergent expressions between the bulks from tolerant and sensitive genotypes, when they were compared under normal and stress conditions. Two targets (SsPIP1-1 and SoPIP1-3/PIP1-4) were selected for validation via RT-qPCR and their expression patterns as detected by HT-SuperSAGE were confirmed. The employed validation strategy revealed that different genotypes share the same tolerant or sensitive phenotype, respectively, but may use different routes for stress acclimation, indicating the aquaporin transcription in sugarcane to be potentially genotype-specific.
Related Concept Videos
Aquaporins
Responses to Drought and Flooding
Adaptations that Reduce Water Loss
Regulation of Transpiration by Stomata
Regulation of Water Output
Xylem and Transpiration-driven Transport of Resources

