[HTML][HTML] Fitting into the harsh reality: regulation of iron-deficiency responses in dicotyledonous plants

R Ivanov, T Brumbarova, P Bauer - Molecular plant, 2012 - cell.com
Iron is an essential element for life on Earth and its shortage, or excess, in the living
organism may lead to severe health disorders. Plants serve as the primary source of dietary …

All together now: regulation of the iron deficiency response

N Riaz, ML Guerinot - Journal of Experimental Botany, 2021 - academic.oup.com
Iron (Fe) is one of the essential micronutrients required by both plants and animals. In
humans, Fe deficiency causes anemia, the most prevalent nutritional disorder. Most people …

Homing in on iron homeostasis in plants

J Jeong, ML Guerinot - Trends in plant science, 2009 - cell.com
Iron is essential for plants but is not readily accessible and is also potentially toxic. As plants
are a major dietary source of iron worldwide, understanding plant iron homeostasis is pivotal …

[HTML][HTML] Iron homeostasis in Arabidopsis thaliana: transcriptomic analyses reveal novel FIT-regulated genes, iron deficiency marker genes and functional gene …

HJ Mai, S Pateyron, P Bauer - BMC Plant Biology, 2016 - Springer
Abstract Background FIT (FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION
FACTOR) is the central regulator of iron uptake in Arabidopsis thaliana roots. We performed …

[HTML][HTML] Getting a sense for signals: regulation of the plant iron deficiency response

MN Hindt, ML Guerinot - Biochimica et Biophysica Acta (BBA)-Molecular …, 2012 - Elsevier
Understanding the Fe deficiency response in plants is necessary for improving both plant
health and the human diet, which relies on Fe from plant sources. In this review we focus on …

Transcriptional profiling of the Arabidopsis iron deficiency response reveals conserved transition metal homeostasis networks

TJW Yang, WD Lin, W Schmidt - Plant Physiology, 2010 - academic.oup.com
Iron (Fe) deficiency is counteracted by a suite of responses to ensure maintenance of vital
processes for which Fe is essential. Here, we report on transcriptional changes upon Fe …

[HTML][HTML] Iron deficiency in plants: an insight from proteomic approaches

AF López-Millán, MA Grusak, A Abadía… - Frontiers in plant …, 2013 - frontiersin.org
Iron (Fe) deficiency chlorosis is a major nutritional disorder for crops growing in calcareous
soils, and causes decreases in vegetative growth as well as marked yield and quality losses …

Time to pump iron: iron-deficiency-signaling mechanisms of higher plants

EL Walker, EL Connolly - Current opinion in plant biology, 2008 - Elsevier
Iron is an essential nutrient for plants, yet it often limits plant growth. On the contrary,
overaccumulation of iron within plant cells leads to oxidative stress. As a consequence, iron …

[HTML][HTML] The adaptive mechanism of plants to iron deficiency via iron uptake, transport, and homeostasis

X Zhang, D Zhang, W Sun, T Wang - International journal of molecular …, 2019 - mdpi.com
Iron is an essential element for plant growth and development. While abundant in soil, the
available Fe in soil is limited. In this regard, plants have evolved a series of mechanisms for …

Molecular mechanisms governing Arabidopsis iron uptake

T Brumbarova, P Bauer, R Ivanov - Trends in plant science, 2015 - cell.com
Plants are the principal source of dietary iron (Fe) for most of Earth's population and Fe
deficiency can lead to major health problems. Developing strategies to improve plant Fe …