Latest 8 Papers

Effects of atmospheric CO2 levels on the susceptibility of maize to diverse pathogens

Authors: Khwanbua, E., Qi, Y., Ssengo, J., Liu, P., Graham, M. A., Whitham, S.

Date: 2026-01-02 · Version: 1
DOI: 10.64898/2025.12.31.697224

Category: Plant Biology

Model Organism: Zea mays

Predicting complex phenotypes using multi-omics data in maize

Authors: Creach, M., Webster, B., Newton, L., Turkus, J., Schnable, J., Thompson, A., VanBuren, R.

Date: 2025-10-01 · Version: 1
DOI: 10.1101/2025.09.30.679283

Category: Plant Biology

Model Organism: Zea mays

Genome-wide Identification, Structural Features and Single-Cell Expression Atlas of the Carbonic Anhydrase Gene Family in Maize (Zea mays L.)

Authors: Gao, Y., Zhao, C.

Date: 2025-09-21 · Version: 1
DOI: 10.1101/2025.09.21.677582

Category: Plant Biology

Model Organism: Zea mays

Optimizing population simulations to accurately parallel empirical data for digital breeding

Authors: Burns, M. J., Della Coletta, R., Fernandes, S. B., Bohn, M. O., Lipka, A. E., Hirsch, C. N.

Date: 2025-06-24 · Version: 1
DOI: 10.1101/2025.06.18.660215

Category: Plant Biology

Model Organism: Zea mays

Untargeted metabolomics reveals key metabolites and genes underlying salinity tolerance mechanisms in maize

Authors: Brar, M. S., De Souza, A., Ghai, A., Ferreira, J. F. S., Sandhu, D., Sekhon, R.

Date: 2025-04-14 · Version: 1
DOI: 10.1101/2025.04.08.647850

Category: Plant Biology

Model Organism: Zea mays

A reaction norm for flowering time plasticity reveals physiological footprints of maize adaptation

Authors: Drouault, J., Palaffre, C., Millet, E. J., Rodriguez, J., Martre, P., Johnson, K., Parent, B., Welcker, C., Wisser, R. J.

Date: 2025-04-10 · Version: 4
DOI: 10.1101/2024.07.10.602692

Category: Plant Biology

Model Organism: Zea mays

Archaeological Bolivian maize genomes suggest Inca cultural expansion augmented maize diversity in South America

Authors: Chen, H., Baetsen-Young, A., Thompson, A., Day, B., Madzima, T., Wasef, S., Rivera Casanovas, C., Lovis, W., Wrobel, G.

Date: 2025-04-01 · Version: 1
DOI: 10.1101/2025.03.31.646424

Category: Plant Biology

Model Organism: Zea mays

Temporal analysis of physiological phenotypes identifies novel metabolic and genetic underpinnings of senescence in maize

Authors: Brar, M. S., Kumar, R., Kunduru, B., McMahan, C. S., Tharayil, N., Sekhon, R. S.

Date: 2025-03-12 · Version: 1
DOI: 10.1101/2025.03.07.641920

Category: Plant Biology

Model Organism: Zea mays