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 plantArabidopsis 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 pr...
Abstract Background Different strategies (genetics, biochemistry, and proteomics) can be used to stu...
Embryogenesis represents a critical phase in the life cycle of flowering plants. Here, we characteri...
The development of complex eukaryotic organisms can be viewed as the selective expression of distinc...
The growth of plant organs is driven by cell division and subsequent cell expansion. The transition ...
Plants are essential for life and are extremely diverse organisms with unique molecular capabilities...
Plants are essential for life and are extremely diverse organisms with unique molecular capabilities...
Plant health and development are directly depending on a plant’s ability to react to a constantly ch...
We carried out large-scale, quantitative analyses of the maize (Zea mays) leaf proteome and phosphop...
We performed large-scale, quantitative analyses of the maize (Zea mays) leaf proteome and phosphopro...
International audienceBACKGROUND: Different strategies (genetics, biochemistry, and proteomics) can ...
In the past 10 years, we have witnessed remarkable advances in the field of plant molecular biology....
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
Because proteins are the major functional components of cells, knowledge of their cellular localizat...
In contrast to most animals, plants develop continuously, with new organs being initiated and elabor...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
Abstract Background Different strategies (genetics, biochemistry, and proteomics) can be used to stu...
Embryogenesis represents a critical phase in the life cycle of flowering plants. Here, we characteri...
The development of complex eukaryotic organisms can be viewed as the selective expression of distinc...
The growth of plant organs is driven by cell division and subsequent cell expansion. The transition ...
Plants are essential for life and are extremely diverse organisms with unique molecular capabilities...
Plants are essential for life and are extremely diverse organisms with unique molecular capabilities...
Plant health and development are directly depending on a plant’s ability to react to a constantly ch...
We carried out large-scale, quantitative analyses of the maize (Zea mays) leaf proteome and phosphop...
We performed large-scale, quantitative analyses of the maize (Zea mays) leaf proteome and phosphopro...
International audienceBACKGROUND: Different strategies (genetics, biochemistry, and proteomics) can ...
In the past 10 years, we have witnessed remarkable advances in the field of plant molecular biology....
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
Because proteins are the major functional components of cells, knowledge of their cellular localizat...
In contrast to most animals, plants develop continuously, with new organs being initiated and elabor...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
Abstract Background Different strategies (genetics, biochemistry, and proteomics) can be used to stu...
Embryogenesis represents a critical phase in the life cycle of flowering plants. Here, we characteri...
The development of complex eukaryotic organisms can be viewed as the selective expression of distinc...