Zobrazeno 1 - 10
of 42
pro vyhledávání: '"Terri A Long"'
Autor:
Alexandr Koryachko, Anna Matthiadis, Durreshahwar Muhammad, Jessica Foret, Siobhan M Brady, Joel J Ducoste, James Tuck, Terri A Long, Cranos Williams
Publikováno v:
PLoS ONE, Vol 10, Iss 8, p e0136591 (2015)
Time course transcriptome datasets are commonly used to predict key gene regulators associated with stress responses and to explore gene functionality. Techniques developed to extract causal relationships between genes from high throughput time cours
Externí odkaz:
https://doaj.org/article/699113b474f84c6b9cab203ff3ff5d99
Autor:
Selene R. Schmittling, DurreShahwar Muhammad, Samiul Haque, Terri A. Long, Cranos M. Williams
Publikováno v:
BMC Genomics, Vol 24, Iss 1, Pp 1-15 (2023)
Abstract Background Plants respond to stress through highly tuned regulatory networks. While prior works identified master regulators of iron deficiency responses in A. thaliana from whole-root data, identifying regulators that act at the cellular le
Externí odkaz:
https://doaj.org/article/0bdfeee9e0aa47e297628c6ffa5f83ea
Autor:
DurreShahwar Muhammad, Natalie M Clark, Samiul Haque, Cranos M Williams, Rosangela Sozzani, Terri A Long
Publikováno v:
Plant Physiology. 190:2017-2032
Plants must tightly regulate iron (Fe) sensing, acquisition, transport, mobilization, and storage to ensure sufficient levels of this essential micronutrient. POPEYE (PYE) is an iron responsive transcription factor that positively regulates the iron
Publikováno v:
Molecules and Cells. 45:294-305
E3 ligase BRUTUS (BTS), a putative iron sensor, is expressed in both root and shoot tissues in seedlings of
Publikováno v:
Current opinion in plant biology. 64
To ensure optimal utilization and bioavailability, iron uptake, transport, subcellular localization, and assimilation are tightly regulated in plants. Herein, we examine recent advances in our understanding of cellular responses to Fe deficiency. We
Autor:
Judy Callis, Roger P. Hangarter, Ivan Baxter, Mary C. Wildermuth, Gustavo C. MacIntosh, Peggy G. Lemaux, Joanna Friesner, Ramin Yadegari, Mary Williams, José R. Dinneny, Adán Colón-Carmona, Elizabeth S. Haswell, Ying Sun, Richard M. Amasino, Mentewab Ayalew, Hemayat Ullah, Kimberly Sierra-Cajas, Maria Elena Zavala, Alexandra M. Schnoes, Victoria L. May, Roger W. Innes, Nathanaël Prunet, Anna Stepanova, Terri A. Long, Natalie Henkhaus, Grace Alex Mason, Terry Woodford‐Thomas, Kiona Elliott, Siobhan M. Brady
Publikováno v:
Plant direct, vol 5, iss 4
Plant Direct
Plant Direct, Vol 5, Iss 4, Pp n/a-n/a (2021)
Plant Direct
Plant Direct, Vol 5, Iss 4, Pp n/a-n/a (2021)
Population growth and climate change will impact food security and potentially exacerbate the environmental toll that agriculture has taken on our planet. These existential concerns demand that a passionate, interdisciplinary, and diverse community o
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ad469493b93451172b3df7a929889bf6
https://escholarship.org/uc/item/18t3c65m
https://escholarship.org/uc/item/18t3c65m
Autor:
Imani Madison, Natalie M. Clark, Michael Schwartz, Adam P Fisher, Terri A. Long, Lisa Van den Broeck, Ryan J. Spurney, Thomas T. Nguyen, Mariah Gobble, Rosangela Sozzani
Publikováno v:
Quantitative Plant Biology. 2
Stem cells give rise to the entirety of cells within an organ. Maintaining stem cell identity and coordinately regulating stem cell divisions is crucial for proper development. In plants, mobile proteins, such as WUSCHEL-RELATED HOMEOBOX 5 (WOX5) and
Autor:
Terri A. Long, Natalie M. Clark, Michael Schwartz, Imani Madison, Rosangela Sozzani, Thomas T. Nguyen, Adam P Fisher, Mariah Gobble, Ryan J. Spurney, Lisa Van den Broeck
Stem cells give rise to the entirety of cells within an organ. Maintaining stem cell identity and coordinately regulating stem cell divisions is crucial for proper development. In plants, mobile proteins, such as WOX5 and SHR, regulate divisions in t
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::d10f24fc59a4bf5ccfdcc66d93ad9bc0
https://doi.org/10.1101/2020.11.30.404426
https://doi.org/10.1101/2020.11.30.404426
Publikováno v:
J Biol Chem
Iron metabolism and the plant immune system are both critical for plant vigor in natural ecosystems and for reliable agricultural productivity. Mechanistic studies of plant iron home-ostasis and plant immunity have traditionally been carried out in i
Publikováno v:
Current opinion in plant biology. 57
Computational solutions enable plant scientists to model protein-mediated stress responses and characterize novel gene functions that coordinate responses to a variety of abiotic stress conditions. Recently, density functional theory was used to stud