Identification of miRNAs Responsive to a Defined Period of Iron Deficiency and Resupply in Arabidopsis thaliana
Qianmiao Zhao, Fei Liu, Jin Xu, Ping Zhang

TL;DR
This study identifies miRNAs in Arabidopsis that respond to iron deficiency and recovery, linking them to plant growth and nutrient balance.
Contribution
The study reveals novel miRNA regulatory networks and cis-elements involved in iron deficiency and resupply in Arabidopsis.
Findings
Fe deficiency reduced Fe and chlorophyll efficiency but increased root Cu accumulation.
Fe resupply restored chlorophyll efficiency and rebalanced micronutrient levels.
Thirteen miRNAs with IDE1 motifs and three key modules were identified in Fe homeostasis.
Abstract
Iron (Fe), as one of the essential micronutrients for plants, plays a pivotal role in regulating growth and development through homeostatic balance. Fe deficiency is a common agricultural stress that causes visible leaf chlorosis and impairs plant growth. In this study, Arabidopsis thaliana seedlings grown under Fe deficiency for 4 days were subjected to 6 h Fe resupply via foliar spray or root supply, followed by measurements of chlorophyll fluorescence and metal ion contents in leaves and roots. Fe deficiency significantly reduced Fe levels and the maximum quantum yield of fluorescence (Fv/Fm), while increasing copper (Cu) accumulation in roots. Zinc (Zn) and manganese (Mn) levels were also altered, depending on tissue type. Fe resupply restored Fv/Fm, increased Mn levels, and rebalanced micronutrient content. MicroRNA (miRNA) mediates adaptation to Fe deficiency via…
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Taxonomy
TopicsPlant Molecular Biology Research · Plant Micronutrient Interactions and Effects · Plant Gene Expression Analysis
