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Estravis-Barcala M, Gaischuk S, Gonzalez-Polo M, et al. (2025) Effect of temperature on circadian clock functioning of trees in the context of global warming. The New Phytologist |
San Martin A, Yanovsky MJ. (2024) Arabidopsis photoperiodic regulator CONSTANS feeds back to control the circadian clock. Molecular Plant |
Agrofoglio YC, Iglesias MJ, Perez-Santángelo S, et al. (2024) Arginine methylation of SM-LIKE PROTEIN 4 antagonistically affects alternative splicing during Arabidopsis stress responses. The Plant Cell |
de Leone MJ, Yanovsky MJ. (2024) The Circadian Clock And Thermal Regulation In Plants: Novel Findings On The Role Of Positive Circadian Clock-Regulators In Temperature Responses. Journal of Experimental Botany |
Careno DA, Assaf CH, Eggermont EDC, et al. (2023) Role of Phytochromes in Red Light-Regulated Alternative Splicing in : Impactful but Not Indispensable. Cells. 12 |
Lorenzo CD, García-Gagliardi P, Gobbini ML, et al. (2023) MsTFL1A delays flowering and regulates shoot architecture and root development in Medicago sativa. Plant Reproduction |
Sorkin ML, Tzeng SC, King S, et al. (2023) COLD REGULATED GENE 27 and 28 Antagonize the Transcriptional Activity of the RVE8/LNK1/LNK2 Circadian Complex. Plant Physiology |
Mateos JL, Sanchez SE, Legris M, et al. (2022) PICLN modulates alternative splicing and light/temperature responses in plants. Plant Physiology |
Careno DA, Santangelo SP, Macknight RC, et al. (2022) The 5'-3' mRNA Decay Pathway Modulates The Plant Circadian Network In Arabidopsis. Plant & Cell Physiology |
de Leone MJ, Hernando CE, Mora-García S, et al. (2020) It's a matter of time: the role of transcriptional regulation in the circadian clock-pathogen crosstalk in plants. Transcription. 11: 100-116 |