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Genome-Wide Identification of DUF668 Gene Family and Expression Analysis under , Chilling, and Waterlogging Stresses in . | LitMetric

Genome-Wide Identification of DUF668 Gene Family and Expression Analysis under , Chilling, and Waterlogging Stresses in .

Int J Mol Sci

MARA Key Laboratory of Sustainable Crop Production in the Middle Reaches of the Yangtze River, Co-Construction by Ministry and Province, College of Agriculture, Yangtze University, Jingzhou 434025, China.

Published: January 2024

AI Article Synopsis

  • The DUF superfamilies include proteins like DUF668, which are identified by conserved sequences but lack known functions, particularly in plant stress responses.
  • Twelve genes related to ZoDUF668 were identified in ginger, showing varied distribution across six chromosomes and similar conserved structures within subfamilies.
  • The study found that the expression of these genes varies under different stress conditions, indicating their potential roles in stress resistance in ginger plants.

Article Abstract

The domains of unknown function (DUF) superfamilies contain proteins with conserved amino acid sequences without known functions. Among them, DUF668 was indicated widely involving the stress response of plants. However, understanding ZoDUF668 is still lacking. Here, 12 genes were identified in ginger by the bioinformatics method and unevenly distributed on six chromosomes. Conserved domain analysis showed that members of the same subfamily had similar conserved motifs and gene structures. The promoter region of contained the light, plant hormone and stress-responsive elements. The prediction of miRNA targeting relationship showed that nine ginger miRNAs targeted four genes through cleavage. The expression patterns of 12 genes under biotic and abiotic stress were analyzed using RT-qPCR. The results showed that the expression of seven genes was significantly downregulated under infection, six genes were upregulated under cold stress, and five genes were upregulated under waterlogging stress. These results indicate that the gene has different expression patterns under different stress conditions. This study provides excellent candidate genes and provides a reference for stress-resistance research in ginger.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10815606PMC
http://dx.doi.org/10.3390/ijms25020929DOI Listing

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