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The gene repertoire of Pythium porphyrae (Oomycota) suggests an adapted plant pathogen tackling red algae
Yacine Badis, Jong Won Han, Tatyana A. Klochkova, Claire M. M. Gachon, Gwang Hoon Kim
ALGAE. 2020;35(2):133-144.   Published online 2020 June 15    DOI: https://doi.org/10.4490/algae.2020.35.6.4

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The gene repertoire of Pythium porphyrae (Oomycota) suggests an adapted plant pathogen tackling red algae
ALGAE. 2020;35(2):133-144   Crossref logo
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A pathogen of New Zealand Pyropia plicata (Bangiales, Rhodophyta), Pythium porphyrae (Oomycota)
ALGAE. 2017;32(1):29-39   Crossref logo
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Occurrence and pathogenicity of Pythium (Oomycota) on Ulva species (Chlorophyta) at different salinities
ALGAE. 2020;35(1):79-89   Crossref logo
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Carbohydrate regulation of attachment, encystment, and appressorium formation by Pythium porphyrae (Oomycota) zoospores on Porphyra yezoensis (Rhodophyta)
Journal of Phycology. 2001;36(2):359-366   Crossref logo
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Protective effects of extracts from six local strains of Pyropia yezoensis against oxidative damage in vitro and in zebrafish model
ALGAE. 2020;35(2):189-200   Crossref logo
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Platysiphon verticillatus and Arcticophycus glacialis: gen. et comb. nov. (Stschapoviales, Phaeophyceae) based on ecological considerations, life history, morphology, and ultrastructure
ALGAE. 2019;34(3):199-216   Crossref logo
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Taxonomy of Ulva causing blooms from Jeju Island, Korea with new species, U. pseudo-ohnoi sp. nov. (Ulvales, Chlorophyta)
ALGAE. 2019;34(4):253-266   Crossref logo
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Physicochemical responses ofPythium porphyrae(Oomycota), the causative organism of red rot disease inPorphyrato acidification
Aquaculture Research. 2009;40(15):1777-1784   Crossref logo
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Regulation of Interferon-stimulated Gene (<italic>ISG</italic>)<italic>12</italic>, <italic>ISG15</italic>, and <italic>MX1</italic> and <italic>MX2</italic> by Conceptus Interferons (IFNTs) in Bovine Uterine Epithelial Cells
Asian-Australasian Journal of Animal Sciences. 2013;26(6):795-803   Crossref logo
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Growth rates and nitrate uptake of co-occurring red-tide dinoflagellates Alexandrium affine and A. fraterculus as a function of nitrate concentration under light-dark and continuous light conditions
ALGAE. 2019;34(3):237-251   Crossref logo
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