Alma Armenta-Medina
Affiliations: | Resilient Agriculture | Global Institute for Food Security, Saskatoon, Canada |
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Tokizawa M, Enomoto T, Chandnani R, et al. (2023) The transcription factors, STOP1 and TCP20, are required for root system architecture alterations in response to nitrate deficiency. Proceedings of the National Academy of Sciences of the United States of America. 120: e2300446120 |
Armenta-Medina A, Gillmor CS, Gao P, et al. (2021) Developmental and genomic architecture of plant embryogenesis: from model plant to crops. Plant Communications. 2: 100136 |
Chung Y, Zhu Y, Wu MF, et al. (2019) Auxin Response Factors promote organogenesis by chromatin-mediated repression of the pluripotency gene SHOOTMERISTEMLESS. Nature Communications. 10: 886 |
Armenta-Medina A, Gillmor CS. (2018) Genetic, molecular and parent-of-origin regulation of early embryogenesis in flowering plants. Current Topics in Developmental Biology. 131: 497-543 |
Lepe-Soltero D, Armenta-Medina A, Xiang D, et al. (2017) Annotating and quantifying pri-miRNA transcripts using RNA-Seq data of wild type and serrate-1 globular stage embryos of Arabidopsis thaliana. Data in Brief. 15: 642-647 |
Armenta-Medina A, Huanca-Mamani W, Sanchez-León N, et al. (2013) Functional analysis of sporophytic transcripts repressed by the female gametophyte in the ovule of Arabidopsis thaliana. Plos One. 8: e76977 |