4.7 Article

Rice NIN-LIKE PROTEIN 3 modulates nitrogen use efficiency and grain yield under nitrate-sufficient conditions

Journal

PLANT CELL AND ENVIRONMENT
Volume 45, Issue 5, Pages 1520-1536

Publisher

WILEY
DOI: 10.1111/pce.14294

Keywords

grain yield; nitrogen availability; nitrogen use efficiency (NUE); rice (Oryza sativa L; ); rice NIN-like protein 3 (OsNLP3)

Categories

Funding

  1. National Natural Science Foundation of China [3157110003, 31572183]
  2. Fundamental Research Funds for the Central Universities [WK6030000122]
  3. National Key R&D Program of China [2016YFD0100701]

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OsNLP3 regulates NUE and grain yield in rice under N sufficient conditions by directly binding to nitrate-responsive cis-elements in the promoters of genes related to N uptake and assimilation. OsNLP3 is a promising candidate gene for genetic improvement of grain yield and NUE in rice.
Nitrogen (N) is an essential macronutrient for crop growth and yield. Improving the N use efficiency (NUE) of crops is important to agriculture. However, the molecular mechanisms underlying NUE regulation remain largely elusive. Here we report that the OsNLP3 (NIN-like protein 3) regulates NUE and grain yield in rice under N sufficient conditions. OsNLP3 transcript level is significantly induced by N starvation and its protein nucleocytosolic shuttling is specifically regulated by nitrate. Loss-of-function of OsNLP3 reduces plant growth, grain yield, and NUE under sufficient nitrate conditions, whereas under low nitrate or different ammonium conditions, osnlp3 mutants show no clear difference from the wild type. Importantly, under sufficient N conditions in the field, OsNLP3 overexpression lines display improved grain yield and NUE compared with the wild type. OsNLP3 orchestrates the expression of multiple N uptake and assimilation genes by directly binding to the nitrate-responsive cis-elements in their promoters. Overall, our study demonstrates that OsNLP3, together with OsNLP1 and OsNLP4, plays overlapping and differential roles in N acquisition and NUE, and modulates NUE and the grain yield increase promoted by N fertilizer. Therefore, OsNLP3 is a promising candidate gene for the genetic improvement of grain yield and NUE in rice.

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