Changes in the Transcriptomic Profiles of Allohexaploid Wheat in Response to Low Fe Stress

Y Wang, Y Hua, T Zhou, J Huang, C Yue - 2022 - researchsquare.com
Background: Around the world, especially in aerobic soils, because the solubility of iron (Fe)
is very low, plants are often stressed by low Fe tress, and the growth, yield, and quality of …

Combined morpho-physiological, ionomic and transcriptomic analyses reveal adaptive responses of allohexaploid wheat (Triticum aestivum L.) to iron deficiency

Y Hua, Y Wang, T Zhou, J Huang, C Yue - BMC Plant Biology, 2022 - Springer
Background Plants worldwide are often stressed by low Fe availability around the world,
especially in aerobic soils. Therefore, the plant growth, seed yield, and quality of crop …

Molecular analysis of iron deficiency response in hexaploid wheat

M Wang, Y Kawakami, NK Bhullar - Frontiers in Sustainable Food …, 2019 - frontiersin.org
Iron deficiency leads to severe chlorosis in crop plants, including wheat, thereby reducing
total yield and quality. Furthermore, grains of most bread wheat varieties are poor source of …

Transcriptome and biochemical analysis in hexaploid wheat with contrasting tolerance to iron deficiency pinpoints multi-layered molecular process

V Meena, G Kaur, R Joon, V Shukla… - Plant Physiology and …, 2024 - Elsevier
Iron (Fe) is an essential plant nutrient that is indispensable for many physiological activities.
This study is an effort to identify the molecular and biochemical basis of wheat genotypes …

[HTML][HTML] Physiological and molecular responses to combinatorial iron and phosphate deficiencies in hexaploid wheat seedlings

G Kaur, V Shukla, V Meena, A Kumar, D Tyagi, J Singh… - Genomics, 2021 - Elsevier
Iron (Fe) and phosphorus (P) are the essential mineral nutrients for plant growth and
development. However, the molecular interaction of the Fe and P pathways in crops …

[HTML][HTML] Transcriptomic dataset reveals the molecular basis of genotypic variation in hexaploid wheat (T. aestivum L.) in response to Fe/Zn deficiency

OP Gupta, V Pandey, R Saini, S Narwal, VK Malik… - Data in Brief, 2020 - Elsevier
The datasets depicted in the paper are related to the original article entitled “Identifying
transcripts associated with efficient transport and accumulation of Fe and Zn in hexaploid …

Integrative analysis of hexaploid wheat roots identifies signature components during iron starvation

G Kaur, V Shukla, A Kumar, M Kaur… - Journal of …, 2019 - academic.oup.com
Iron (Fe) is an essential micronutrient for all organisms. In crop plants, Fe deficiency can
decrease crop yield significantly; however, our current understanding of how major crops …

Asymmetric expression of homoeologous genes in wheat roots modulates the early phase of iron-deficiency signalling

G Kaur, V Meena, A Kumar, G Suman, D Tyagi… - Environmental and …, 2023 - Elsevier
Iron (Fe) limitation leads to significant changes in the gene expression in plants to induce
iron uptake and mobilization with simultaneous restriction of Fe-dependent metabolism and …

[HTML][HTML] Comparative physiological, biochemical and transcriptomic analysis of hexaploid wheat (T. aestivum L.) roots and shoots identifies potential pathways and …

OP Gupta, V Pandey, R Saini, T Khandale, A Singh… - Genomics, 2021 - Elsevier
The combined effect of iron (Fe) and zinc (Zn) starvation on their uptake and transportation
and the molecular regulatory networks is poorly understood in wheat. To fill this gap, we …

Transcriptome analysis of wheat roots in response to heavy metal Pb stress

Y WANG, M NIE, Y WANG, X Hu, W DING… - Journal of Henan …, 2020 - hnnykx.org.cn
In order to explore the molecular mechanism of wheat in response to heavy metal Pb stress,
the wheat cultivar AK58 was treated with different concentrations [0 (CK), 40, 80,160 mg/L] of …