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16 results on '"Robert Malinowski"'

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1. Plasmodiophora brassicae-Triggered Cell Enlargement and Loss of Cellular Integrity in Root Systems Are Mediated by Pectin Demethylation

2. Transcriptional profiling identifies critical steps of cell cycle reprogramming necessary for Plasmodiophora brassicae ‐driven gall formation in Arabidopsis

3. Phloem exudate metabolic content reflects the response to water-deficit stress in pea plants (Pisum sativum L.)

4. Developmental expression of the cucumber Cs-XTH1 and Cs-XTH3 genes, encoding xyloglucan endotransglucosylase/hydrolases, can be influenced by mechanical stimuli

5. Clubroot Disease Stimulates Early Steps of Phloem Differentiation and Recruits SWEET Sucrose Transporters within Developing Galls

6. Understanding of Leaf Development—the Science of Complexity

7. Gall formation in clubroot-infected Arabidopsis results from an increase in existing meristematic activities of the host but is not essential for the completion of the pathogen life cycle

8. Targeted manipulation of leaf form via local growth repression

9. Overexpression of HARDY, an AP2/ERF gene from Arabidopsis, improves drought and salt tolerance by reducing transpiration and sodium uptake in transgenic Trifolium alexandrinum L

10. Phased Control of Expansin Activity during Leaf Development Identifies a Sensitivity Window for Expansin-Mediated Induction of Leaf Growth

11. The tomato brassinosteroid receptor BRI1 increases binding of systemin to tobacco plasma membranes, but is not involved in systemin signaling

12. Xyloglucan endotransglucosylase/hydrolase genes in cucumber (Cucumis sativus) - differential expression during somatic embryogenesis+

13. A shift toward smaller cell size via manipulation of cell cycle gene expression acts to smoothen Arabidopsis leaf shape

14. Tissue-type specific systemin perception and the elusive systemin receptor

15. Micro-electrode flux estimation confirms that the Solanum pimpinellifolium cu3 mutant still responds to systemin

16. The role of cytokinins in clubroot disease

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