Overexpression of DWF1 Enhances Low-Nitrogen Stress Tolerance in Potato Plants
Zi Li, Zhuangyan Li, Yifei Lu, Bi Ren, Fuchun Zeng, Shimin Yang, Liming Lu, Liqin Li

TL;DR
Overexpression of the StDWF1 gene in potato plants improves their ability to tolerate low nitrogen conditions, leading to better growth and nitrogen uptake.
Contribution
This study identifies StDWF1 as a key gene enhancing low-nitrogen stress tolerance in potatoes through transgenic overexpression and functional analysis.
Findings
OE2 transgenic lines showed 43% higher root vitality and 23% chlorophyll retention under low nitrogen.
OE2 accumulated 64.1% more nitrate nitrogen and 53% more ammonium nitrogen compared to wild type.
StDWF1 interacts with StGRP1, forming a functional network to improve low-nitrogen tolerance.
Abstract
Nitrogen is an important nutrient required for plant growth and development, but most of the time plants face nitrogen deficiency, all it is important to study the mechanism of low nitrogen tolerance in plants. This study addresses this gap by investigating the role of the StDWF1 gene through the generation and analysis of transgenic potato lines overexpressing StDWF1 (OE1, OE2, OE3). Exogenous BL treatment showed that the StDWF1 gene responded to oleuropein lactone. Phenotypic assessments under normal nitrogen (NN) and low nitrogen (LN) conditions demonstrated that OE2 consistently outperformed WT, showing a 43% increase in root vitality and a 23% retention of chlorophyll under LN. Additionally, OE2 transgenics accumulated significantly higher levels of nitrate nitrogen (64.1% increase) and ammonium nitrogen (53% increase) compared to WT. Enzymatic assays further confirmed elevated…
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Taxonomy
TopicsPlant nutrient uptake and metabolism · Potato Plant Research · Legume Nitrogen Fixing Symbiosis
