4.6 Article

Transcriptomic and lipidomic profiles of glycerolipids during Arabidopsis flower development

Journal

NEW PHYTOLOGIST
Volume 203, Issue 1, Pages 310-322

Publisher

WILEY
DOI: 10.1111/nph.12774

Keywords

Arabidopsis thaliana; flower development; glycerolipids; lipidomics; synchronized flower development

Categories

Funding

  1. Temasek Life Sciences Laboratory
  2. National Research Foundation of Singapore [NRFCRP001-108]
  3. PRESTO, Japan Science and Technology Agency, Honcho Kawaguchi, Saitama, Japan
  4. Institute of Plant and Microbial Biology, Academia Sinica, Taipei
  5. Singapore National Research Foundation under CRP [2007-04]
  6. Biomedical Research Council of Singapore [R-183-000-211-305]
  7. National Medical Research Council [R-183-000-224-213]
  8. SystemsX.ch RTD project LipidX
  9. Japanese Society for the Promotion of Science (JSPS)

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Flower glycerolipids are the yet-to-be discovered frontier of the lipidome. Although ample evidence suggests important roles for glycerolipids in flower development, stage-specific lipid profiling in tiny Arabidopsis flowers is challenging. Here, we utilized a transgenic system to synchronize flower development in Arabidopsis. The transgenic plant PAP1::AP1-GR ap1-1 cal-5 showed synchronized flower development upon dexamethasone treatment, which enabled massive harvesting of floral samples of homogenous developmental stages for glycerolipid profiling. Glycerolipid profiling revealed a decrease in concentrations of phospholipids involved in signaling during the early development stages, such as phosphatidic acid and phosphatidylinositol, and a marked increase in concentrations of nonphosphorous galactolipids during the late stage. Moreover, in the midstage, phosphatidylinositol 4,5-bisphosphate concentration was increased transiently, which suggests the stimulation of the phosphoinositide metabolism. Accompanying transcriptomic profiling of relevant glycerolipid metabolic genes revealed simultaneous induction of multiple phosphoinositide biosynthetic genes associated with the increased phosphatidylinositol 4,5-bisphosphate concentration, with a high degree of differential expression patterns for genes encoding other glycerolipid-metabolic genes. The phosphatidic acid phosphatase mutant pah1 pah2 showed flower developmental defect, suggesting a role for phosphatidic acid in flower development. Our concurrent profiling of glycerolipids and relevant metabolic gene expression revealed distinct metabolic pathways stimulated at different stages of flower development in Arabidopsis.

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