Abstract
The nutritional value of wheat grains, particularly their protein and metabolite composition, is a result of the grain-filling process, especially in the endosperm. Here, we employ laser microdissection (LMD) combined with shotgun proteomics and metabolomics to generate a cell type-specific proteome and metabolome inventory of developing wheat endosperm at the early (15 DAA) and late (26 DAA) grain-filling stages. We identified 1803 proteins and 41 metabolites from four different cell types (aleurone (AL), sub-aleurone (SA), starchy endosperm (SE) and endosperm transfer cells (ETCs). Differentially expressed proteins were detected, 67 in the AL, 31 in the SA, 27 in the SE and 50 in the ETCs between these two-time points. Cell-type accumulation of specific SUT and GLUT transporters, sucrose converting and starch biosynthesis enzymes correlate well with the respective sugar metabolites, suggesting sugar upload and starch accumulation via nucellar projection and ETC at 15 DAA in contrast to the later stage at 26 DAA. Changes in various protein levels between AL, SA and ETC support this metabolic switch from 15 to 26 DAA. The distinct spatial and temporal abundances of proteins and metabolites revealed a contrasting activity of nitrogen assimilation pathways, e.g. for GOGAT, GDH and glutamic acid, in the different cell types from 15 to 26 DAA, which can be correlated with specific protein accumulation in the endosperm. The integration of cell-type specific proteome and metabolome data revealed a complex metabolic interplay of the different cell types and a functional switch during grain development and grain-filling processes.
| Original language | English |
|---|---|
| Pages (from-to) | 555-571 |
| Number of pages | 17 |
| Journal | Plant Biotechnology Journal |
| Volume | 22 |
| Issue number | 3 |
| Early online date | Dec 2023 |
| DOIs | |
| Publication status | Published - Mar 2024 |
Funding
S.Z. was supported by the China Scholarship Council (CSC) (Grant number: 201706850037) and completion grant of the Vienna Doctoral School Ecology and Evolution of the Faculty of Life Sciences, University of Vienna, Austria. H.K. is supported by the doctoral programme MENTOR (Molecular Mechanisms to Improve Plant Resilience), funded by the Austrian Science Fund (FWF) under project number DOC 111. A.G. is thankful to the European Union Horizon 2020 research and innovation programme under grant agreement number GA 2020 862–858 (ADAPT). P.C. is thankful to the Austrian Science Fund (FWF, DerWissenschaftsfonds), grant agreement number I 5234, for their support.
Austrian Fields of Science 2012
- 106031 Plant physiology
- 106037 Proteomics
- 106057 Metabolomics
- 106028 Plant anatomy
Keywords
- aleurone
- endosperm transfer cells
- proteomics and metabolomics
- starchy endosperm
- sub-aleurone
- wheat
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