Overexpression of <i>zmm28</i> increases maize grain yield in the field.
basic_science · Level V
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- Record sourced from PubMed, PMID 31685622.
- Also identified by DOI 10.1073/pnas.1902593116 and PMC identifier 6876154.
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Abstract
Increasing maize grain yield has been a major focus of both plant breeding and genetic engineering to meet the global demand for food, feed, and industrial uses. We report that increasing and extending expression of a maize MADS-box transcription factor gene, <i>zmm28</i>, under the control of a moderate-constitutive maize promoter, results in maize plants with increased plant growth, photosynthesis capacity, and nitrogen utilization. Molecular and biochemical characterization of <i>zmm28</i> transgenic plants demonstrated that their enhanced agronomic traits are associated with elevated plant carbon assimilation, nitrogen utilization, and plant growth. Overall, these positive attributes are associated with a significant increase in grain yield relative to wild-type controls that is consistent across years, environments, and elite germplasm backgrounds.
Medical subject headings
- Crops, Agricultural
- Edible Grain
- Genes, Plant
- Zea mays