40 results on '"van West Pieter"'
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2. Impact of abiotic factors and husbandry on saprolegniosis in salmonid farms
3. The molecular dialog between oomycete effectors and their plant and animal hosts
4. Current practices and emerging possibilities for reducing the spread of oomycete pathogens in terrestrial and aquatic production systems in the European Union
5. Transformation systems, gene silencing and gene editing technologies in oomycetes
6. Can Ulcerative Dermal Necrosis (UDN) in Atlantic salmon be attributed to ultraviolet radiation and secondary Saprolegnia parasitica infections?
7. The chaperone Lhs1 contributes to the virulence of the fish-pathogenic oomycete Aphanomyces invadans
8. Saprolegnia infection after vaccination in Atlantic salmon is associated with differential expression of stress and immune genes in the host
9. Biological Concepts for the Control of Aquatic Zoosporic Diseases
10. The fungal ecology of seabird nesting sites in the Falkland Islands indicates a niche for mycoparasites
11. Aphanomyces invadans, the causal agent of Epizootic Ulcerative Syndrome, is a global threat to wild and farmed fish
12. Galleria melonella as an experimental in vivo host model for the fish-pathogenic oomycete Saprolegnia parasitica
13. Maullinia braseltonii sp. nov. (Rhizaria, Phytomyxea, Phagomyxida): A Cyst-forming Parasite of the Bull Kelp Durvillaea spp. (Stramenopila, Phaeophyceae, Fucales)
14. Nonagonal cadherins: A new protein family found within the Stramenopiles
15. Development of eukaryotic zoospores within polycyclic aromatic hydrocarbon (PAH)-polluted environments: A set of behaviors that are relevant for bioremediation
16. Reprint of: Saprolegnia strains isolated from river insects and amphipods are broad spectrum pathogens
17. Animal pathogenic Oomycetes
18. A putative serine protease, SpSsp1, from Saprolegnia parasitica is recognised by sera of rainbow trout, Oncorhynchus mykiss
19. Functional characterization of a tyrosinase gene from the oomycete Saprolegnia parasitica by RNAi silencing
20. Saprolegnia strains isolated from river insects and amphipods are broad spectrum pathogens
21. The impact of the water moulds Saprolegnia diclina and Saprolegnia parasitica on natural ecosystems and the aquaculture industry
22. A family of small tyrosine rich proteins is essential for oogonial and oospore cell wall development of the mycoparasitic oomycete Pythium oligandrum
23. Secretion, delivery and function of oomycete effector proteins
24. Avirulence Protein 3a (AVR3a) from the Potato Pathogen Phytophthora infestans Forms Homodimers through Its Predicted Translocation Region and Does Not Specifically Bind Phospholipids
25. Immune gene expression in trout cell lines infected with the fish pathogenic oomycete Saprolegnia parasitica
26. Pythium polare, a new heterothallic oomycete causing brown discolouration of Sanionia uncinata in the Arctic and Antarctic
27. The oomycete Pythium oligandrum expresses putative effectors during mycoparasitism of Phytophthora infestans and is amenable to transformation
28. Identification of appressorial and mycelial cell wall proteins and a survey of the membrane proteome of Phytophthora infestans
29. Towards an understanding on how RxLR-effector proteins are translocated from oomycetes into host cells
30. New insights into animal pathogenic oomycetes
31. Zoospore development in the oomycetes
32. Saprolegnia parasitica, an oomycete pathogen with a fishy appetite: new challenges for an old problem
33. Potassium homeostasis influences the locomotion and encystment of zoospores of plant pathogenic oomycetes
34. Elevated amino acid biosynthesis in Phytophthora infestans during appressorium formation and potato infection
35. Proteomic analysis of asexual development of Phytophthora palmivora
36. Advances in research on oomycete root pathogens
37. tef1, a Phytophthora infestans gene encoding translation elongation factor 1α
38. Internuclear Gene Silencing in Phytophthora infestans
39. TheipiO Gene ofPhytophthora infestansIs Highly Expressed in Invading Hyphae during Infection
40. Structure and genomic organization of the ipiB and ipiO gene clusters of Phytophthora infestans
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