
AbstractA cold-induced transcript encoding a Casparian strip membrane domain (CASP)-like protein (ClCASPL) was identified in watermelon (Citrullus lanatus). Fluorescence microscopy analysis showed that ClCASPL-GFP is localized in the plasma membrane. The orthologous gene in Arabidopsis thaliana (AtCASPL4C1) was also found to play an important role in cold tolerance. Expression analysis using a β-glucuronidase (GUS) reporter reveals that AtCASPL4C1 is widely expressed in a variety of organs and is cold inducible. Analysis of AtCASPL4C1 T-DNA knock-out plants showed altered growth dynamics, faster growth, increased biomass (dry weight) and earlier flowering compared to wild type (Col-0) and ClCASPL overexpressing plants. AtCASPL4C1 knock-out plants showed elevated tolerance to cold stress, while overexpressing CICASPL resulted in increased sensitivity to cold stress in Arabidopsis. Interestingly, AtCASPL4C1 knock-out plants did not display significant alterations in the Casparian strip formation in roots. Thus, the combination of these results suggests a role for CICASPL and AtCASPL4C1 beyond Casparian strip formation in roots, possibly indicating a more fundamental role in vascular tissue.
Gene Expression Profiling, Molecular Sequence Data, Adaptation, Biological, Gene Expression, Genes, Plant, Article, Citrullus, Cold Temperature, Protein Transport, Phenotype, Stress, Physiological, Gene Order, Cluster Analysis, Amino Acid Sequence, Sequence Alignment, Phylogeny
Gene Expression Profiling, Molecular Sequence Data, Adaptation, Biological, Gene Expression, Genes, Plant, Article, Citrullus, Cold Temperature, Protein Transport, Phenotype, Stress, Physiological, Gene Order, Cluster Analysis, Amino Acid Sequence, Sequence Alignment, Phylogeny
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