SUMMARY Nitrogen (N) is an essential macronutrient for plant growth and development; however, its low utilization efficiency in crops limits the sustainability of modern agriculture, primarily due to unclear regulatory mechanisms underlying N uptake and utilization. Identifying novel regulators of nitrate (NO 3 − ) signaling is critical for improving N use efficiency (NUE) in crops. Here, we identified the WRKY family transcription factor WRKY20 as a key regulator of NO 3 − signaling and metabolism in Arabidopsis thaliana . The expression of NO 3 − ‐responsive genes was significantly suppressed in wrky20 mutants after NO 3 − treatment, suggesting that WRKY20 plays a key role in regulating NO 3 − signaling. NO 3 − content was significantly lower in the wrky20 mutants as a result of impaired uptake and assimilation. Genetic and molecular evidence indicates that WRKY20 functions downstream of NLP7 in the NO 3 − signaling pathway. Further investigation revealed that WRKY20 interacts with the negative regulator NIGT1.4 and antagonistically regulates NRT2.1 expression. Overexpression of WRKY20 promotes plant growth and enhances both seed yield and NUE. Together, these findings highlight the essential role of WRKY20 in regulating NO 3 − signaling and metabolism, providing a promising molecular target for improving NUE in crops.
Ye et al. (Thu,) studied this question.
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