Food and agriculture / food/nitrogen-fixing-cereals
Nitrogen-fixing cereals
Cereal crops that obtain most of their nitrogen from the air, through their own nitrogenase, an engineered symbiosis or a partnered microbiome, so that high yields do not depend on synthetic nitrogen fertilizer.
Scope
In: maize, wheat, rice and other cereals that fix nitrogen in the plant or in a stable association with it. Out: fertilizer-applied microbial inoculants that supplement but do not replace fertilizer (they appear here only as an approach), and plant gene-editing tools, which are biotech/plant-genome-engineering.
- Readiness
- not assessed
- Serves
- Zero hunger, Life on land
- Last reviewed
- 2026-10-04
- Curators
- none yet: volunteer
Metrics
Gaps
Fixation shown in a landrace, not in high-yield cultivars
The high fixation share was measured in a landrace with aerial roots that secrete mucilage, grown in nitrogen-depleted soil. Moving the trait into elite cultivars at full yield, and under fertilization, has not been shown. Engineered root-associated bacteria that keep fixing in fertilized fields have been commercialized, but their abstract reports a yield gain over fertilizer alone, not a share of nitrogen from fixation.
Approaches
- Engineered root-associated diazotroph that fixes nitrogen despite fertilizer wen2021enabling
A working nitrogenase inside plant cells
Expressing the nitrogenase components in plant mitochondria is the route to a crop that fixes its own nitrogen. Sixteen nitrogenase proteins have each been expressed and targeted to the mitochondrial matrix of a model plant, but the NifD component is the least abundant and a full working complex in a plant has not been shown.
Held open by: Plant genome engineering
Approaches
- Fusion of NifD and NifK to equalize their abundance in plant mitochondria allen2017expression
Root-nodule symbiosis not yet engineered into non-legumes
Legumes host nitrogen-fixing rhizobia in root nodules. The objective of engineering nodulation in non-leguminous crops has not been achieved; the open questions are the signalling, infection and nodule-organogenesis programs.
Held open by: Plant genome engineering
Dependencies
Requires
- Plant genome engineering Every route to a self-fertilizing cereal needs many coordinated edits to the plant genome.
Required by
Nothing in the atlas depends on it yet.
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