An adaptive teosinte mexicana introgression modulates phosphatidylcholine levels and is associated with maize flowering time

Author:

Barnes Allison C.1ORCID,Rodríguez-Zapata Fausto12ORCID,Juárez-Núñez Karla A.2ORCID,Gates Daniel J.3,Janzen Garrett M.45ORCID,Kur Andi1,Wang Li4,Jensen Sarah E.6,Estévez-Palmas Juan M.2ORCID,Crow Taylor M.7ORCID,Kavi Heli S.1,Pil Hannah D.1,Stokes Ruthie L.1ORCID,Knizner Kevan T.8,Aguilar-Rangel Maria R.2ORCID,Demesa-Arévalo Edgar9,Skopelitis Tara9,Pérez-Limón Sergio2ORCID,Stutts Whitney L.110ORCID,Thompson Peter110ORCID,Chiu Yu-Chun10ORCID,Jackson David9ORCID,Muddiman David C.810ORCID,Fiehn Oliver11ORCID,Runcie Daniel7,Buckler Edward S.6ORCID,Ross-Ibarra Jeffrey3ORCID,Hufford Matthew B.4ORCID,Sawers Ruairidh J. H.212,Rellán-Álvarez Rubén12ORCID

Affiliation:

1. Department of Molecular and Structural Biochemistry, North Carolina State University, Raleigh, NC 27695

2. National Laboratory of Genomics for Biodiversity 36821, Irapuato, Mexico

3. Department of Evolution and Ecology, Center for Population Biology, and Genome Center, University of California, Davis, CA 95616

4. Department of Ecology, Evolution, and Organismal Biology, Iowa State University, Ames, IA 50011

5. Department of Plant Biology, University of Georgia, Athens, GA 30602

6. US Department of Agriculture–Agricultural Research Service, Cornell University, Ithaca, NY 14853

7. Department of Plant Sciences, University of California, Davis, CA 95616

8. Department of Chemistry, North Carolina State University, Raleigh, NC 27695

9. Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724

10. Molecular Education, Technology and Research Innovation Center, North Carolina State University, Raleigh, NC 27695

11. West Coast Metabolomics Center, University of California, Davis, CA 95618

12. Department of Plant Science, The Pennsylvania State University, PA 16802

Abstract

Native Americans domesticated maize ( Zea mays ssp. mays ) from lowland teosinte parviglumis ( Zea mays ssp. parviglumis) in the warm Mexican southwest and brought it to the highlands of Mexico and South America where it was exposed to lower temperatures that imposed strong selection on flowering time. Phospholipids are important metabolites in plant responses to low-temperature and phosphorus availability and have been suggested to influence flowering time. Here, we combined linkage mapping with genome scans to identify High PhosphatidylCholine 1 ( HPC1 ), a gene that encodes a phospholipase A1 enzyme, as a major driver of phospholipid variation in highland maize. Common garden experiments demonstrated strong genotype-by-environment interactions associated with variation at HPC1, with the highland HPC1 allele leading to higher fitness in highlands, possibly by hastening flowering. The highland maize HPC1 variant resulted in impaired function of the encoded protein due to a polymorphism in a highly conserved sequence. A meta-analysis across HPC1 orthologs indicated a strong association between the identity of the amino acid at this position and optimal growth in prokaryotes. Mutagenesis of HPC1 via genome editing validated its role in regulating phospholipid metabolism. Finally, we showed that the highland HPC1 allele entered cultivated maize by introgression from the wild highland teosinte Zea mays ssp. mexicana and has been maintained in maize breeding lines from the Northern United States, Canada, and Europe. Thus, HPC1 introgressed from teosinte mexicana underlies a large metabolic QTL that modulates phosphatidylcholine levels and has an adaptive effect at least in part via induction of early flowering time.

Funder

Consejo Nacional de Ciencia y Tecnología

Consejo Nacional de Ciencia y Tecnología

National Science Foundation

U.S. Department of Agriculture

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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