Overexpression of FLZ12 Suppresses Root Hair Development and Enhances Iron-Deficiency Tolerance in Arabidopsis
Mingke Yan, Xin Zhang, Jinghui Gao

TL;DR
Overexpression of FLZ12 in Arabidopsis reduces root hair development but improves tolerance to iron deficiency.
Contribution
FLZ12 is identified as a dual-function protein regulating root hair development and iron-deficiency responses in plants.
Findings
Overexpression of FLZ12 impairs root hair development under normal conditions.
FLZ12-overexpressing plants show enhanced iron-deficiency tolerance and better growth.
FLZ12 accumulates in vascular tissues and localizes in the nucleus during iron starvation.
Abstract
Background: The Arabidopsis FCS-LIKE ZINC FINGER (FLZ) family proteins play crucial roles in responses to various biotic and abiotic stresses, but the functions of many family members remain uncharacterized. Methods: In this study, we investigated the function of FLZ12, a member of the FLZ family, using a reverse genetic approach. Results: We found that overexpression of FLZ12 impaired root hair development, as evidenced by marked reductions in both root hair length and number under normal growth conditions. However, deprivation of phosphate could partially restore root hair formation, although it still impeded root hair elongation. Notably, FLZ12-overexpressing lines exhibited greatly enhanced tolerance to iron deficiency, with seedlings exhibiting more vigorous and robust growth compared to wild-type plants. In contrast, knockout of FLZ12 resulted in slight impact on seedling…
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Taxonomy
TopicsPlant Micronutrient Interactions and Effects · Plant nutrient uptake and metabolism · Plant Stress Responses and Tolerance
