546 citations
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February 2008 in “PLANT PHYSIOLOGY” This study found that overexpression of OsPHR2 in rice leads to increased phosphate accumulation and root architecture changes even under phosphate-sufficient conditions.
216 citations
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June 2015 in “PLANT PHYSIOLOGY” This study found that OsPHR3 overexpression in rice led to significant tolerance to low-phosphorus stress and normal growth under normal conditions, suggesting its potential for improving phosphorus uptake efficiency.
1 citations
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July 2016 in “Nottingham ePrints (University of Nottingham)” This study developed mathematical models to simulate phosphate uptake in rice and Arabidopsis, suggesting a phosphate-sensitive repressor could regulate PHO2 mRNA levels, and highlighting potential targets and traits for improving phosphorus-use efficiency.
August 2024 in “Plant Signaling & Behavior” This study found that overexpressing the gene OsPRX83 in rice plants enhanced osmotic and oxidative stress tolerance compared to wild-type and mutant rice, showing potential for engineering drought-resistant rice varieties through ABA-dependent pathways and ROS scavenging.
January 2018 in “bioRxiv (Cold Spring Harbor Laboratory)” This study explored how root hairs integrate opposing growth signals but did not report new conclusive findings on the activation of known molecular players in polar growth.