Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/66644
metadata.dc.identifier.doi: https://doi.org/10.56042/ijbb.v62i11.16688
Title: Comprehensive in silico analysis of upstream sequences of TaNRT2 gene family of bread wheat: Unveiling effects of hormonal cross-talk on differential homeolog expressions of TaNRT2.1-6 under low nitrogen conditions
Authors: Kumar, Anuj
Shamnas V, Muhammed
Kumar Singh, Amit
Prakash Mishra, Gyan
Kumar Sinha, Subodh
Keywords: Cis-regulatory elements;Gibberellic acid (GA3);High-affinity nitrate transporter (NRT2);Salicylic acid (SA);Wheat
Issue Date: Nov-2025
Publisher: NIScPR - CSIR
Abstract: Nitrate is one of the major nitrogen forms available in soil that are crucial for plant growth and development. This study employed multiple bioinformatics tools for a comprehensive in silico analysis of approximately 3 kb upstream regions of all TaNRT2 family genes, which encode members of high-affinity nitrate transporters (HATS) in wheat, retrieved from the Chinese Spring reference genome sequence. The analysis concentrated on identifying Cis-Regulatory Elements (CREs), Transcription Factor Binding Sites (TFBS), evolutionary relationships, tandem repeats, and CpG/CpNpG islands. Furthermore, transcript expression patterns were studied based on CREs of three homeologs of TaNRT2.1-6 in root and shoot tissues at the seedling stage under low nitrate conditions along with Gibberellic acid (GA3) and Salicylic acid (SA). The sequence analysis of 3 kb upstream sequence revealed varied types and occurrences of Cis-Regulatory Elements and Transcription Factor Binding Sites, predicting variations in nitrate-dependent gene expression. Key TFBS (LBD, GATA, NIN-like, Dof, MYB, NAC, MIKC_MADS, and bZIP), involved in growth regulation under low nitrogen conditions, were identified in all TaNRT2 promoters. The present study provides a detailed analysis of the TaNRT2 gene promoters in wheat, offering insights for designing future studies to understand regulatory mechanisms underlying wheat’s N-responsive growth responses.
Page(s): 1187-1197
ISSN: ISSN: 0975-0959 (Online); 0301-1208 (Print)
Appears in Collections:IJBB Vol.62(11) [November 2025]

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