AI Article Synopsis

  • The study examines how plant growth is influenced by cell division, expansion, and differentiation throughout the life cycle of Arabidopsis thaliana, from seed germination to maturity and reproduction.
  • Researchers utilized proteomic, phosphoproteomic, and transcriptomic analyses on various aerial tissues to understand the molecular mechanisms behind plant development, unveiling expression changes across different growth stages.
  • The study revealed notable differences between proteomic and transcriptomic data, particularly in seed samples, with all related data made available through ProteomeXchange and ArrayExpress.

Article Abstract

Plant growth and development are regulated by a tightly controlled interplay between cell division, cell expansion and cell differentiation during the entire plant life cycle from seed germination to maturity and seed propagation. To explore some of the underlying molecular mechanisms in more detail, we selected different aerial tissue types of the model plant Arabidopsis thaliana, namely rosette leaf, flower and silique/seed and performed proteomic, phosphoproteomic and transcriptomic analyses of sequential growth stages using tandem mass tag-based mass spectrometry and RNA sequencing. With this exploratory multi-omics dataset, development dynamics of photosynthetic tissues can be investigated from different angles. As expected, we found progressive global expression changes between growth stages for all three omics types and often but not always corresponding expression patterns for individual genes on transcript, protein and phosphorylation site level. The biggest difference between proteomic- and transcriptomic-based expression information could be observed for seed samples. Proteomic and transcriptomic data is available via ProteomeXchange and ArrayExpress with the respective identifiers PXD018814 and E-MTAB-7978.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7547660PMC
http://dx.doi.org/10.1038/s41597-020-00678-wDOI Listing

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