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Integrated transcriptomic analysis identifies coordinated responses to nitrogen and phosphate deficiency in rice

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NIAID Data Ecosystem2026-05-01 收录
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https://www.ncbi.nlm.nih.gov/sra/SRP429474
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Nitrogen (N) and phosphorus (P) are two primary components of fertilizers for crop production. Coordinated acquisition and utilization of N and P are crucial for plants to achieve nutrient balance and optimal growth in a changing rhizospheric nutrient environment. However, little is known about how N and P signaling pathways are integrated. We performed transcriptomic analyses and physiological experiments to explore gene expression profiles and physiological homeostasis in the response of rice (Oryza sativa) to N and P deficiency. We determined that the transcript levels of 763 core genes changed under both N or P starvation conditions. Among these core genes, we focused on the transcription factor gene NITRATE-INDUCIBLE, GARP-TYPE TRANSCRIPTIONAL REPRESSOR 1 (NIGT1) and show that its encoded protein is a positive regulator of P homeostasis and a negative regulator of N acquisition in rice. These results provide new clues about the mechanisms underlying the interaction between plant N and P starvation responses. Overall design: To obtain molecular insight into transcriptional network changes and identify genes associated with both N and P homeostasis, we carried out RNA sequencing of rice root in response to control nutrient and N or P deficiency treatment. Each treatment contained three biological replicates.
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2024-03-10
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