Biotechnology Bulletin ›› 2026, Vol. 42 ›› Issue (8): 133-141.doi: 10.13560/j.cnki.biotech.bull.1985.2025-1113

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Identification of the Pseudo-response Regulator PRR Gene Family in Broomcorn Millet and Its Response to Photoperiod

CUI Xiu-yan1, DAI Chun-yang1, ZHANG Yi-ting1, TIAN Xiang2, CHEN Ling2, QIAO Zhi-jun2, WANG Hai-gang2(), WANG Jun-jie2()   

  1. 1.College of Agronomy, Shanxi Agricultural University, Taigu 030800
    2.Center for Agricultural Genetic Resources Research, Shanxi Agricultural University, Taiyuan 030031
  • Received:2025-10-16 Online:2026-08-26 Published:2026-08-17
  • Contact: WANG Hai-gang, WANG Jun-jie E-mail:nkywhg@126.com;xiaoleiwangjie@163.com

Abstract:

Objective Pseudo-response regulators (PRRs) play crucial roles in regulating circadian rhythms and flowering time in plants. This study aimed to systematically identify the PRR gene family in broomcorn millet (Panicum miliaceum L.) at the whole-genome level, providing a theoretical basis for understanding their biological functions. Method Bioinformatics methods were employed to analyze the physicochemical properties, conserved motifs, gene structures, collinearity, and phylogenetic relationships of the PRR gene family in broomcorn millet. The expression patterns of PRR genes under different photoperiod treatments were investigated using real-time quantitative PCR (RT-qPCR). Result A total of seven PRR genes were identified from the broomcorn millet genome, designated as PmPRR1 to PmPRR7, which were unevenly distributed across five chromosomes. Phylogenetic analysis revealed that the PmPRR genes belong to Group 1 to Group 3 subfamilies. Analysis of conserved protein motifs showed that six genes contained Motif1, Motif2, and Motif3, indicating high conservation among them. Promoter cis-acting element analysis suggested that PmPRR genes are associated with light response, plant growth and development, stress responses, and hormone regulation. RT-qPCR results demonstrated significant differences in the expressions of PmPRR genes under different photoperiod treatments (short-day, 8 h; intermediate-day, 14 h; long-day, 16 h). Conclusion This study identified seven PmPRR genes. The expression patterns of genes from different subfamilies vary under different photoperiods, indicating that PmPRRs play an important regulatory role in the response of broomcorn millet to photoperiod changes.

Key words: broomcorn millet, pseudo-response regulators, photoperiod, bioinformatics, RT-qPCR