Latest 17 Papers

Network analysis of flowering time genes suggests regulatory changes among SOC1 orthologues in response to cold in Brassica napus

Authors: Sidhu, G. S., Burrows, S., Woolfenden, H., Wells, R., Morris, R. J.

Date: 2026-01-20 · Version: 2
DOI: 10.64898/2025.12.16.694548

Category: Plant Biology

Model Organism: Brassica napus

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

Universal modules for decoding amplitude and frequency of Ca2+ signals in plants

Authors: Vergara-Valladares, F., Rubio-Melendez, M. E., Charpentier, M., Michard, E., Dreyer, I.

Date: 2025-12-16 · Version: 1
DOI: 10.64898/2025.12.13.694100

Category: Plant Biology

Model Organism: General

Antirrhinum flower shape: unravelling gene expression across developmental axes and boundaries

Authors: Cunha, A. M., Raimundo, J., Verweij, A., Bradley, D., Coen, E., Costa, M. M. R.

Date: 2025-11-11 · Version: 1
DOI: 10.1101/2025.11.10.687484

Category: Plant Biology

Model Organism: Antirrhinum majus

Symbiotic diversification relies on an ancestral gene network in plants

Authors: Castanedo, L., Melkonian, K., Vernie, T., Chauderon, L., Pellen, T., Bianconi, M., Lefort, C., Libourel, C., Le Ru, A., Aziz, S., Latorre, C., Thiercelin, O., Rodde, N., Cauet, S., Callot, C., Forrest, L., Nishiyama, T., Wickell, D., Li, F.-W., Keller, J., Delaux, P.-M.

Date: 2025-11-03 · Version: 2
DOI: 10.1101/2025.04.01.646537

Category: Plant Biology

Model Organism: Marchantia paleacea

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

Soil phosphate availability modulates the arbuscular mycorrhizal fungal community and mycorrhizal nutrition in wheat

Authors: Trinquier, M., Lecloux, E., Bruno, P., Gasciolli, V., Jouany, C., Roux, C., Lefebvre, B., Ardanuy, A.

Date: 2025-08-09 · Version: 1
DOI: 10.1101/2025.08.08.669323

Category: Plant Biology

Model Organism: Triticum aestivum

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

2-Oxoglutarate-dependent dioxygenases contribute to cardenolide biosynthesis in Erysimum cheiranthoides (wormseed wallflower)

Authors: Younkin, G., Holland, C. K., Jander, G.

Date: 2025-04-16 · Version: 1
DOI: 10.1101/2025.04.10.648230

Category: Plant Biology

Model Organism: Erysimum cheiranthoides

Comparative transcriptomics uncovers plant and fungal genetic determinants of mycorrhizal compatibility

Authors: Marques-Galvez, J. E., de Freitas Pereira, M., Nehls, U., Ruytinx, J., Barry, K., Peter, M., Martin, F., Grigoriev, I. V., Veneault-Fourrey, C., Kohler, A.

Date: 2025-04-14 · Version: 1
DOI: 10.1101/2025.04.11.648352

Category: Plant Biology

Model Organism: Populus

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