20 results on '"Sappl, Pia"'
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2. Breastfeeding with cystic fibrosis
3. PETAL LOSS, a trihelix transcription factor that represses growth in Arabidopsis thaliana , binds the energy-sensing SnRK1 kinase AKIN10
4. Differentiating Arabidopsis Shoots from Leaves by Combined YABBY Activities
5. Desensitization of GSTF8 Induction by a Prior Chemical Treatment Is Long Lasting and Operates in a Tissue-Dependent Manner
6. Functional domains of the PETAL LOSS protein, a trihelix transcription factor that represses regional growth in Arabidopsis thaliana
7. Stress-induced co-expression of alternative respiratory chain components in Arabidopsis thaliana
8. Proteomic Analysis of Glutathione S-Transferases of Arabidopsis thaliana Reveals Differential Salicylic Acid-Induced Expression of the Plant-Specific Phi and Tau Classes
9. The Arabidopsis glutathione transferase gene family displays complex stress regulation and co-silencing multiple genes results in altered metabolic sensitivity to oxidative stress
10. Cell type boundaries organize plant development
11. Author response: Cell type boundaries organize plant development
12. A genomic study of the glutathione transferase gene family of Arabidopsis thaliana
13. Live-imaging of plant development: latest approaches
14. PETAL LOSS, a trihelix transcription factor that represses growth in Arabidopsis thaliana, binds the energy-sensing SnRK1 kinase AKIN10.
15. Untangling Multi‐gene Families in Plants by Integrating Proteomics into Functional Genomics
16. Desensitization of GSTF8 Induction by a Prior Chemical Treatment Is Long Lasting and Operates in a Tissue-Dependent Mannerm.1[W].
17. Desensitization of GSTF8 Induction by a Prior Chemical Treatment Is Long Lasting and Operates in a Tissue-Dependent Mannerm.1[W].
18. Untangling multi-gene families in plants by integrating proteomics into functional genomics
19. Proteomic Analysis of Glutathione S-Transferases of Arabidopsis thalianaReveals Differential Salicylic Acid-Induced Expression of the Plant-Specific Phi and Tau Classes
20. Live Imaging of Arabidopsis Leaf and Vegetative Meristem Development.
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