4.7 Article

Enhanced OsNLP4-OsNiR cascade confers nitrogen use efficiency by promoting tiller number in rice

Journal

PLANT BIOTECHNOLOGY JOURNAL
Volume 19, Issue 1, Pages 167-176

Publisher

WILEY
DOI: 10.1111/pbi.13450

Keywords

rice; tiller; yield; nitrogen-use efficiency

Funding

  1. National Natural Science Foundation of China [31671269]
  2. National Key Research and Development Project [2016YFD0100700, 2016YFD0101107]
  3. Fundamental Research Funds for the Central Universities [JCQY201901]
  4. National Natural Science Foundation [31672223]

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The excessive use of nitrogen fertilizers has harmful effects on the environment, but by studying the genetic regulation of nitrogen use efficiency-related genes, wheat yield and NUE can be improved. By discovering the interaction between OsNLP4 and OsNiR, and constructing NREs to enhance nitrogen assimilation, the number of tillers and yield can be significantly increased.
Increased use of nitrogen fertilizers has deleterious impact on the environment. Increase in yield potential at low nitrogen supply is regarded as a cereal breeding goal for future agricultural sustainability. Although natural variations of nitrogen transporters have been investigated, key genes associated with assimilation remain largely unexplored for nitrogen use efficiency (NUE) enhancement. Here, we identified a NIN-like protein NLP4 associated with NUE through a GWAS in rice. We found that OsNLP4 transactivatedOsNiRencoding nitrite reductase that was critical in nitrogen assimilation in rice. We further constructed quadrupling NREs (Nitrate-responsive cis-elements) in the promoter ofOsNiR(p4xNRE:OsNiR) and enhanced nitrogen assimilation significantly. We demonstrated that OsNLP4-OsNiR increased tiller number and yield through enhancing nitrogen assimilation and NUE. Our discovery highlights the genetic modulation of OsNLP4-OsNiR signalling cascade as a strategy for high NUE and yield breeding in rice.

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