Latest 66 Papers

Assembly and annotation of Solanum dulcamara and Solanum nigrum plant genomes, two nightshades with different susceptibilities to Ralstonia solanacearum

Authors: Franco Ortega, S., James, S. R., Gilbert, L., Hogg, K., Stevens, H., Daff, J., Friman, V. P., Harper, A. L.

Date: 2025-02-17 · Version: 1

DOI: 10.1101/2025.02.12.637948

Model Organism: Solanum dulcamara

TaWUS2D regulates the number of grains per spikelet by enhancing the number of fertile ovaries in Multi-Ovary Wheat

Authors: Schoen, A. W., Sharma, P. K., Mahlandt, A., Chen, A., Sheng, H., Kochian, L., Gao, P., Xiang, D., Quilichini, T., Venglat, P., Wang, S., Yadav, I. S., Gu, Y., Rodriguez-Leal, D., Luo, W., Qi, Y., Meier, N., Kajla, A., Willman, M., Brown-Guedira, G., Youngblood, C., Hulse-Kemp, A., Murphy, A., Gill, B., Uauy, C., Datla, R., Rawat, N., Tiwari, V.

Date: 2025-02-08 · Version: 1

DOI: 10.1101/2025.02.05.636547

Model Organism: Triticum aestivum

Transcriptome responses of two Halophila stipulacea seagrass populations from pristine and impacted habitats, to single and combined thermal and excess nutrient stressors, reveal local adaptive features and core stress-response genes

Authors: Nguyen, H. M., Yaakov, B., Beca-Carretero, P., Procaccini, G., Wang, G., Dassanayake, M., Winters, G., Barak, S.

Date: 2025-01-27 · Version: 2

DOI: 10.1101/2025.01.21.634158

Model Organism: Halophila stipulacea

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