Transcriptome profiling reveals key genes in regulation of the tepal trichome development in Lilium pumilum D.C

Plant Cell Rep. 2021 Oct;40(10):1889-1906. doi: 10.1007/s00299-021-02753-x. Epub 2021 Jul 14.

Abstract

A number of potential genes and pathways involved in tepal trichome development were identified in a natural lily mutant by transcriptome analysis and were confirmed with trichome and trichomeless species. Trichome is a specialized structure found on the surface of the plant with an important function in survival against abiotic and biotic stress. It is also an important economic trait in crop breeding. Extensive research has investigated the foliar trichome in model plants (Arabidopsis and tomato). However, the developmental mechanism of tepal trichome remains elusive. Lilium pumilum is an edible ornamental bulb and a good breeding parent possessing cold and salt-alkali resistance. Here, we found a natural mutant of Lilium pumilum grown on a highland whose tepals are covered by trichomes. Our data indicate that trichomes of the mutant are multicellular and branchless. Notably, stomata are also developed on the tepal of the mutant as well, suggesting there may be a correlation between trichome and stomata regulation. Furthermore, we isolated 27 differentially expressed genes (DEGs) by comparing the transcriptome profiling between the natural mutant and the wild type. These 27 genes belong to 4 groups: epidermal cell cycle and division, trichome morphogenesis, stress response, and transcription factors. Quantitative real-time PCR in Lilium pumilum (natural mutant and the wild type) and other lily species (Lilium leichtlinii var. maximowiczii/trichome; Lilium davidii var. willmottiae/, trichomeless) confirmed the validation of RNA-seq data and identified several trichome-related genes.

Keywords: Lilium pumilum; Lily; Tepal; Transcriptome; Trichome.

MeSH terms

  • Gene Expression Profiling
  • Gene Expression Regulation, Plant
  • Gene Ontology
  • Lilium / cytology
  • Lilium / genetics*
  • Lilium / growth & development
  • Microscopy, Electron, Transmission
  • Mutation
  • Plant Cells
  • Plant Proteins / genetics
  • Plant Proteins / metabolism
  • Reproducibility of Results
  • Transcription Factors / genetics
  • Transcription Factors / metabolism
  • Trichomes / cytology*
  • Trichomes / genetics*
  • Trichomes / growth & development

Substances

  • Plant Proteins
  • Transcription Factors