Arabidopsis ecotype Ct-1, with its altered nitrate sensing ability, exhibits enhanced growth under low nitrate conditions in comparison to Col-0

  • Lee, Seokjin; 
  • Tri Le, Quang; 
  • Yang, Seonyoung; 
  • Hwang, Kwang Yeon; 
  • Lee, Hojoung
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초록

To address the urgent need for sustainable solutions to the increased use of nitrogen fertilizers in agriculture, it is imperative to acquire an in-depth comprehension of the intricate interplay between plants and nitrogen. In this context, our research aimed to elucidate the molecular mechanism behind NO3- sensing/signaling in plants, which can enhance nitrogen utilization efficiency. Previous reports have revealed that the density and quantity of root hairs exhibit responsive behavior to varying levels of NO3-, while the precise molecular mechanisms governing these changes remain elusive. To further investigate this phenomenon, we specifically selected the Ct-1 ecotype, which manifested a greater abundance of root hairs compared to the Col-0 ecotype under conditions of low NO3-. Our investigations unveiled that the dissimilarities in the amino acid sequence of NRT1.1, a transceptor responsible for regulating nitrate signaling and transport, accounted for the observed variation in root hair numbers. These results suggest that NRT1.1 represents a promising target for gene editing technology, offering potential applications in enhancing the efficiency of nitrogen utilization in agricultural crops. © 2023 Elsevier B.V.

키워드

Arabidopsis thaliana; Col-0; Ct-1; Ecotypes; Nitrate; NRT1.1; TRANSPORTER; CHL1; RESPONSES; PLANT; GENE; NITROGEN; INDUCTION; THALIANA; MUTATION; DENSITY
제목
Arabidopsis ecotype Ct-1, with its altered nitrate sensing ability, exhibits enhanced growth under low nitrate conditions in comparison to Col-0
저자
Lee, Seokjin; Tri Le, Quang; Yang, Seonyoung; Hwang, Kwang Yeon; Lee, Hojoung
DOI
10.1016/j.plantsci.2023.111827
발행일
2023-11
유형
Article
저널명
Plant Science
권
336