BMC Plant Biology (Feb 2022)

Genome-wide identification of Tomato Golden 2-Like transcription factors and abiotic stress related members screening

  • Zi-yu Wang,
  • Shuang Zhao,
  • Jun-fang Liu,
  • Hai-yan Zhao,
  • Xu-ying Sun,
  • Tai-ru Wu,
  • Tong Pei,
  • Yue Wang,
  • Qi-feng Liu,
  • Huan-huan Yang,
  • He Zhang,
  • Jing-bin Jiang,
  • Jing-fu Li,
  • Ting-ting Zhao,
  • Xiang-yang Xu

DOI
https://doi.org/10.1186/s12870-022-03460-9
Journal volume & issue
Vol. 22, no. 1
pp. 1 – 17

Abstract

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Abstract Background Golden 2-Like (G2-like) transcription factors play an important role in plant development. However, the roles of these G2-like regulatory genes in response to abiotic stresses in tomato are not well understood. Results In this study, we identified 66 putative G2-like genes in tomato (Solanum lycopersicum) and classified them into 5 groups (I to V) according to gene structure, motif composition and phylogenetic analysis. The G2-like genes were unevenly distributed across all 12 chromosomes. There were nine pairs of duplicated gene segments and four tandem duplicated SlGlk genes. Analysis of the cis-regulatory elements (CREs) showed that the promoter regions of SlGlks contain many kinds of stress- and hormone-related CREs. Based on RNA-seq, SlGlks were expressed in response to three abiotic stresses. Thirty-six differentially expressed SlGlks were identified; these genes have multiple functions according to Gene Ontology (GO) analysis and are enriched mainly in the zeatin biosynthesis pathway. Further studies exhibited that silencing SlGlk16 in tomato would reduce drought stress tolerance by earlier wilted, lower superoxide dismutase (SOD), peroxidase (POD) activities, less Pro contents and more MDA contents. Conclusions Overall, the results of this study provide comprehensive information on G2-like transcription factors and G2-like genes that may be expressed in response to abiotic stresses.

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