Latest 20 Papers

EBSn, a robust synthetic reporter for monitoring ethylene responses in plants

Authors: Fernandez-Moreno, J.-P., Fenech, M., Yaschenko, A. E., Zhao, C., Neubauer, M., Davis, H. N., Marchi, A. J., Concannon, R., Keren-Keiserman, A., Reuveni, M., Levitsky, V. G., Oshchepkov, D., Dolgikh, V., Goldshmidt, A., Ascencio-Ibanez, J. T., Zemlyanskaya, E., Alonso, J. M., Stepanova, A. N.

Date: 2025-05-28 · Version: 1

DOI: 10.1101/2025.05.23.655144

Model Organism: Arabidopsis thaliana

An ERF transcription factor StPTI5, a novel regulator of endophyte community maintenance in potato

Authors: Lukan, T., Kraigher, B., Pogacar, K., Stare, K., Grubar Kovacic, T., Zagorscak, M., Petek, M., Stefanic, P., Vozelj, A., Levak, V., Mahkovec Povalej, T., Garcia, J. M., Pozo, M. J., Mandic-Mulec, I., Gruden, K.

Date: 2025-04-24 · Version: 1

DOI: 10.1101/2025.04.24.650297

Model Organism: Solanum tuberosum

Manipulation of in planta ethylene levels modulates the metabolome of Populus tremula x tremuloides in a microbial-dependent manner.

Authors: Fracchia, F., Guinet, F., Warion, S., Bednareck, M., Chervin, C., Engle, N. L., Tschaplinski, T. J., Veneault-Fourrey, C., Deveau, A.

Date: 2025-03-17 · Version: 1

DOI: 10.1101/2025.03.17.643694

Model Organism: Populus tremula × Populus tremuloides

Ethylene modulates cell wall mechanics for root responses to compaction

Authors: Zhang, J., Qu, Z., Liu, Z., Li, J., Farrar, E., Chara, O., Ogorek, L. P., Borges, A., Sakamoto, S., Mitsuda, N., Zhu, X., Zhu, M., Shi, J., Liang, W., Bennett, M., Pandey, B., Zhang, D., Persson, S.

Date: 2025-03-03 · Version: 1

DOI: 10.1101/2025.03.02.640043

Model Organism: Arabidopsis thaliana

POLARIS is a copper-binding peptide required for ethylene signalling control in Arabidopsis.

Authors: Mudge, A. M., Mehdi, S., Michaels, W. E., Oroza-Puente, B., Shen, W., Tomlinson, C., Wei, W., Hoppen, C., Uzun, B., Roy, D., Hetherington, F. M., Topping, J. F., Sadanandom, A., Groth, G., Robinson, N. J., Lindsey, K.

Date: 2025-02-04 · Version: 6

DOI: 10.1101/2023.06.15.545071

Model Organism: Arabidopsis thaliana

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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