NIN-LIKE PROTEIN3.2 inhibits repressor Aux/IAA14 expression and enhances root biomass in maize seedlings under low nitrogen

Plant Cell. 2024 Oct 3;36(10):4388-4403. doi: 10.1093/plcell/koae184.

Abstract

Plants generally enhance their root growth in the form of greater biomass and/or root length to boost nutrient uptake in response to short-term low nitrogen (LN). However, the underlying mechanisms of short-term LN-mediated root growth remain largely elusive. Our genome-wide association study, haplotype analysis, and phenotyping of transgenic plants showed that the crucial nitrate signaling component NIN-LIKE PROTEIN3.2 (ZmNLP3.2), a positive regulator of root biomass, is associated with natural variations in root biomass of maize (Zea mays L.) seedlings under LN. The monocot-specific gene AUXIN/INDOLE-3-ACETIC ACID14 (ZmAux/IAA14) exhibited opposite expression patterns to ZmNLP3.2 in ZmNLP3.2 knockout and overexpression lines, suggesting that ZmNLP3.2 hampers ZmAux/IAA14 transcription. Importantly, ZmAux/IAA14 knockout seedlings showed a greater root dry weight (RDW), whereas ZmAux/IAA14 overexpression reduced RDW under LN compared with wild-type plants, indicating that ZmAux/IAA14 negatively regulates the RDW of LN-grown seedlings. Moreover, in vitro and vivo assays indicated that AUXIN RESPONSE FACTOR19 (ZmARF19) binds to and transcriptionally activates ZmAux/IAA14, which was weakened by the ZmNLP3.2-ZmARF19 interaction. The zmnlp3.2 ZmAux/IAA14-OE seedlings exhibited further reduced RDW compared with ZmAux/IAA14 overexpression lines when subjected to LN treatment, corroborating the ZmNLP3.2-ZmAux/IAA14 interaction. Thus, our study reveals a ZmNLP3.2-ZmARF19-ZmAux/IAA14 module regulating root biomass in response to nitrogen limitation in maize.

MeSH terms

  • Biomass*
  • Gene Expression Regulation, Plant*
  • Genome-Wide Association Study
  • Indoleacetic Acids / metabolism
  • Nitrogen* / metabolism
  • Plant Proteins* / genetics
  • Plant Proteins* / metabolism
  • Plant Roots* / genetics
  • Plant Roots* / growth & development
  • Plant Roots* / metabolism
  • Plants, Genetically Modified
  • Seedlings* / genetics
  • Seedlings* / growth & development
  • Seedlings* / metabolism
  • Zea mays* / genetics
  • Zea mays* / growth & development
  • Zea mays* / metabolism

Substances

  • Nitrogen
  • Plant Proteins
  • Indoleacetic Acids