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A conserved MYB transcription factor involved in phosphate starvation . . . We prepared an EMS-mutagenized M (2) population of an Arabidopsis thaliana transgenic line harboring a reporter gene specifically responsive to Pi starvation (AtIPS1::GUS), and screened for mutants altered in Pi starvation regulation
A conserved MYB transcription factor involved in phosphate starvation . . . In this study, we have isolated and characterized a Pi starvation response mutant and cloned the corresponding gene PHR1, the first gene involved in the control of Pi responses in vascular plants to be characterized at the molecular level
A conserved MYB transcription factor involved in phosphate . . . We prepared an EMS-mutagenized M (2) population of an Arabidopsis thaliana transgenic line harboring a reporter gene specifically responsive to Pi starvation (AtIPS1::GUS), and screened for mutants altered in Pi starvation regulation
A conserved MYB transcription factor involved in phosphate starvation . . . In this study, we have isolated and characterized a Pi starvation response mutant and cloned the corresponding gene PHR1, the first gene involved in the control of Pi responses in vascular plants to be characterized at the molecular level
A conserved MYB transcription factor involved in phosphate starvation . . . A gene encoding a regulator of phosphorus metabolism, designated Psr1 (phosphorus starvation response), from a photosynthetic eukaryote is described, and immunocytochemical studies demonstrate that this protein is nuclear-localized under both nutrient-replete and phosphorus-starvation conditions
A conserved MYB transcription fact . . . | Article | H1 Connect A mutant, phr1, which is deficient in gene induction by phosphate, was isolated and the gene analysed PHR1 encodes a MYB transcription factor that binds to the promoter element of phosphate-starvation-induced genes
A conserved MYB transcription factor involved in phosphate starvation . . . Plants have evolved a number of adaptive responses to cope with growth in conditions of limited phosphate (Pi) supply involving biochemical, metabolic, and developmental changes We prepared an EMS-mutagenized M 2 population of an Arabidopsis
Cracking the code of plant central phosphate signaling Land plants have evolved intricate mechanisms to acquire Pi and maintain cellular Pi homeostasis PHOSPHATE STARVATION RESPONSE proteins (PHRs), a class of Myb coiled-coil (MYB-CC) transcription factors, are proposed as the central regulators of Pi signaling in land plants and green algae [1]