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19 results on '"Plasson, Carole"'

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1. Biological and Chemical Characterization of Musa paradisiaca Leachate.

2. LAM2: An Unusual Laminaran Structure for a Novel Plant Elicitor Candidate.

3. Black Poplar ( Populus nigra L.) Root Extracellular Trap, Structural and Molecular Remodeling in Response to Osmotic Stress.

4. Elicitation of Roots and AC-DC with PEP-13 Peptide Shows Differential Defense Responses in Multi-Omics.

5. New Insights into Plant Extracellular DNA. A Study in Soybean Root Extracellular Trap.

6. Effect of a Bacillus subtilis strain on flax protection against Fusarium oxysporum and its impact on the root and stem cell walls.

7. Identification of two compounds able to improve flax resistance towards Fusarium oxysporum infection.

8. A Novel In Vitro Tool to Study Cyst Nematode Chemotaxis.

9. Multiple xylosyltransferases heterogeneously xylosylate protein N-linked glycans in Chlamydomonas reinhardtii.

10. Characterization of a GDP-Fucose Transporter and a Fucosyltransferase Involved in the Fucosylation of Glycoproteins in the Diatom Phaeodactylum tricornutum .

11. Comparative in depth RNA sequencing of P. tricornutum's morphotypes reveals specific features of the oval morphotype.

12. Heterologous expression of the N-acetylglucosaminyltransferase I dictates a reinvestigation of the N-glycosylation pathway in Chlamydomonas reinhardtii.

13. Root exudate of Solanum tuberosum is enriched in galactose-containing molecules and impacts the growth of Pectobacterium atrosepticum.

14. Determination of Multimodal Isotopic Distributions: The Case of a (15)N Labeled Protein Produced into Hairy Roots.

15. Plant-specific glycosylation patterns in the context of therapeutic protein production.

16. Cytosolic N-terminal arginine-based signals together with a luminal signal target a type II membrane protein to the plant ER.

17. N-glycan trimming by glucosidase II is essential for Arabidopsis development.

18. Production of recombinant proteins in suspension-cultured plant cells.

19. Plant N-glycan processing enzymes employ different targeting mechanisms for their spatial arrangement along the secretory pathway.

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