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March 4, 2026Current Issues in Molecular Biology0 citationsOpen Access

Genome-Wide Analysis Identifies ScTCP6 as a Stress Responsive Gene in Rye

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YRYanyan RenRMRui MaZWZhiruo Wang

Key Points

  • The aim is to characterize the TCP gene family in rye and assess the role of ScTCP6 in stress response.
  • Identified 26 ScTCP genes from the rye genome.
  • Conducted phylogenetic analysis and collinearity comparisons with other cereals.
  • Performed promoter analysis for hormone- and stress-responsive elements.
  • Used qRT-PCR for expression profiling of 12 ScTCP genes under various conditions.
  • ScTCP6 is significantly involved in rye development and response to abiotic stresses.
  • Segmental duplication was the primary mechanism for ScTCP gene expansion.
  • Promoter analysis revealed many stress-responsive cis-elements associated with ScTCP6.
  • Expression patterns of ScTCP genes varied across developmental stages and stress conditions.

Abstract

Teosinte branched1/cycloidea/proliferating cell factor (TCP) transcription factors are key regulators of plant growth and stress adaptation. However, their evolutionary history and functional divergence in rye (Secale cereale L.) remain unclear. Here, 26 ScTCP genes were identified from the reference rye genome. Phylogenetic and collinearity analyses with six representative cereals (Secale cereale, H. vulgare, O. sativa, T. aestivum, Z. mays, and A. tauschii Coss) revealed that segmental duplication, rather than tandem repetition, drove ScTCP expansion, with ScTCP2 located in a conserved syntenic block shared across the Poaceae family. Promoter analysis identified numerous hormone- and stress-responsive cis-elements, while a predicted protein–protein interaction network indicated extensive cross-talk with ERF and MYB transcription factors. Expression profiling of 12 representative ScTCP genes using qRT-PCR across different organs, developmental stages, six abiotic stress conditions, and three hormone treatments showed that ScTCP6 plays an important role in rye development and in responses to hormonal signals and abiotic stresses. Therefore, this study provides the first genome-wide characterization of the TCP gene family in rye and contributes to a broader understanding of the evolution and functional diversification of the TCP superfamily in higher plants.

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Cite This Study

Ren et al. (2026) studied this question.

synapsesocial.com/papers/69a7ccb2d48f933b5eed8644https://doi.org/10.3390/cimb48030266
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