Role of transcription factor complex OsbHLH156–OsIRO2 in regulating manganese, copper, and zinc transporters in rice

J Zhu, J Li, X Hu, J Wang, J Fang… - Journal of …, 2024 - academic.oup.com
Abstract Iron (Fe), manganese (Mn), copper (Cu), and zinc (Zn) are essential micronutrients
that are necessary for plant growth and development, but can be toxic at supra-optimal …

OsNAC15 Regulates Tolerance to Zinc Deficiency and Cadmium by Binding to OsZIP7 and OsZIP10 in Rice

J Zhan, W Zou, S Li, J Tang, X Lu, L Meng… - International Journal of …, 2022 - mdpi.com
Zinc (Zn) deficiency and cadmium (Cd) stress are severe threats to the growth and
development of plants. Increasing Zn content and/or decreasing Cd content in grain are also …

Genome-wide investigation and functional verification of the ZIP family transporters in wild emmer wheat

F Gong, T Qi, Y Hu, Y Jin, J Liu, W Wang, J He… - International Journal of …, 2022 - mdpi.com
The zinc/iron-regulated transporter-like protein (ZIP) family has a crucial role in Zn
homeostasis of plants. Although the ZIP genes have been systematically studied in many …

[HTML][HTML] Identification of Potential Zinc Deficiency Responsive Genes and Regulatory Pathways in Rice by Weighted Gene Co-expression Network Analysis

BP Muvunyi, L Xiang, Z Junhui, H Sang, Y Guoyou - Rice Science, 2022 - Elsevier
Zinc (Zn) malnutrition is a major public health issue. Genetic biofortification of Zn in rice grain
can alleviate global Zn malnutrition. Therefore, elucidating the genetic mechanisms …

Identification of potential Zinc deficiency responsive genes and regulatory pathways in rice genotypes by Weighted Gene Co-expression Network Analysis

BP Muvunyi, X Lu, S He, G Ye - 2021 - researchsquare.com
Background Zinc (Zn) malnutrition has been linked to serious health concerns in humans.
Targeting genetic biofortification of rice grain Zn can efficiently improve the global Zn …