Related Experiment Video
Updated: Apr 29, 2026

Investigating Interactions Between Histone Modifying Enzymes and Transcription Factors in vivo by Fluorescence Resonance Energy Transfer
Published on: October 14, 2022
Strigolactone regulates phosphorus recycling in rice (Oryza sativa) through a nitric oxide-dependent pathway
Chuan Jin Shan1,2, Yong Qiang Gao2,3, Ruo Xi Wang1,2
1College of Advanced Agricultural Sciences, Zhejiang A&F University, Hangzhou 311300, China.
Background And Aims:
Strigolactone (GR24) has been implicated in the plant response to phosphorus (P) stress; nonetheless, the precise molecular mechanisms involved remain obscure. The present study examined the role of GR24 in regulating the internal distribution of P and the mobilization of P from root cell walls in rice.
Methods:
We subjected rice plants to differential treatments with GR24 and P, followed by a comprehensive analysis employing biochemical and molecular methods to elucidate the mechanisms underlying P utilization.
Results:
Diminished P levels resulted in a swift escalation of endogenous GR24 accumulation within the roots. Moreover, the application of exogenous GR24 notably augmented the tolerance of rice to P deficiency, as evidenced by the enhancement of biomass and a reduction in the root/shoot ratio under P-deficient conditions. The application of GR24 also alleviated the decline in P content observed in both roots and shoots. At a mechanistic level, GR24 facilitated the reutilization of P, particularly within the root pectin fraction, thereby increasing the liberation of soluble P. Additionally, GR24 promoted the expression of OsPHT1;2 (OsPT2), a gene implicated in the translocation of P from roots to shoots. Furthermore, it was observed that GR24 stimulated the production of nitric oxide in P-deficient rice roots. The application of sodium nitroprusside further augmented the alleviating effect of GR24 on P deficiency.
Conclusions:
These findings underscore the potential of GR24 as a viable strategy to enhance the tolerance of rice to P deficiency and to improve P use efficiency in agricultural applications.
Related Concept Videos
Key Elements for Plant Nutrition
Cell Signaling in Plants
Stringent Response in E. coli
Responses to Drought and Flooding
Regulation of Transpiration by Stomata
Other Stress Responses in Bacteria

