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Intracellular Infection of Diverse Diatoms by an Evolutionary Distinct Relative of the Fungi ArchiMer
Chambouvet, Aurélie; Monier, Adam; Maguire, Finlay; Itoïz, Sarah; Del Campo, Javier; Elies, Philippe; Edvardsen, Bente; Eikreim, Wenche; Richards, Thomas A..
The Fungi are a diverse kingdom, dominating terrestrial environments and driving important ecologies. Although fungi, and the related Opisthosporidia, interact with photosynthetic organisms on land and in freshwater as parasites, symbionts, and/or saprotrophic degraders [1, 2], such interactions in the marine environment are poorly understood [3, 4, 5, 6, 7, 8]. One newly identified uncultured marine lineage has been named novel chytrid-like-clade-1 (NCLC1) [4] or basal-clone-group-I [5, 6]. We use ribosomal RNA (rRNA) encoding gene phylogenies to demonstrate that NCLC1 is a distinct branch within the Opisthosporidia (Holomycota) [7]. Opisthosporidia are a diverse and largely uncultured group that form a sister branch to the Fungi or, alternatively, the...
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Ano: 2019 URL: https://archimer.ifremer.fr/doc/00591/70337/68391.pdf
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Proteinaceous secretion of bioadhesive produced during crawling and settlement of Crassostrea gigas larvae ArchiMer
Foulon, Valentin; Artigaud, Sebastien; Buscaglia, Manon; Bernay, Benoit; Fabioux, Caroline; Petton, Bruno; Elies, Philippe; Boukerma, Kada; Hellio, Claire; Guerard, Fabienne; Boudry, Pierre.
Bioadhesion of marine organisms has been intensively studied over the last decade because of their ability to attach in various wet environmental conditions and the potential this offers for biotechnology applications. Many marine mollusc species are characterized by a two-phase life history: pelagic larvae settle prior to metamorphosis to a benthic stage. The oyster Crassostrea gigas has been extensively studied for its economic and ecological importance. However, the bioadhesive produced by ready to settle larvae of this species has been little studied. The pediveliger stage of oysters is characterized by the genesis of a specific organ essential for adhesion, the foot. Our scanning electron microscopy and histology analysis revealed that in C. gigas the...
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Ano: 2018 URL: https://archimer.ifremer.fr/doc/00462/57379/59452.pdf
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