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Morphological and Genetic Diversity of Opisthosporidia : New Aphelid Paraphelidium tribonemae gen. et sp. nov. / Karpov, Sergey A.; Tcvetkova, Victoria S.; Mamkaeva, Maria A.; Torruella, Guifré; Timpano, Hélène; Moreira, David; Mamanazarova, Karomat S.; López-García, Purificación.

в: Journal of Eukaryotic Microbiology, Том 64, № 2, 01.03.2017, стр. 204-212.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Karpov, SA, Tcvetkova, VS, Mamkaeva, MA, Torruella, G, Timpano, H, Moreira, D, Mamanazarova, KS & López-García, P 2017, 'Morphological and Genetic Diversity of Opisthosporidia: New Aphelid Paraphelidium tribonemae gen. et sp. nov.', Journal of Eukaryotic Microbiology, Том. 64, № 2, стр. 204-212. https://doi.org/10.1111/jeu.12352, https://doi.org/10.1111/jeu.12352

APA

Karpov, S. A., Tcvetkova, V. S., Mamkaeva, M. A., Torruella, G., Timpano, H., Moreira, D., Mamanazarova, K. S., & López-García, P. (2017). Morphological and Genetic Diversity of Opisthosporidia: New Aphelid Paraphelidium tribonemae gen. et sp. nov. Journal of Eukaryotic Microbiology, 64(2), 204-212. https://doi.org/10.1111/jeu.12352, https://doi.org/10.1111/jeu.12352

Vancouver

Author

Karpov, Sergey A. ; Tcvetkova, Victoria S. ; Mamkaeva, Maria A. ; Torruella, Guifré ; Timpano, Hélène ; Moreira, David ; Mamanazarova, Karomat S. ; López-García, Purificación. / Morphological and Genetic Diversity of Opisthosporidia : New Aphelid Paraphelidium tribonemae gen. et sp. nov. в: Journal of Eukaryotic Microbiology. 2017 ; Том 64, № 2. стр. 204-212.

BibTeX

@article{0c81add21e6e41c891ec724de780a5cd,
title = "Morphological and Genetic Diversity of Opisthosporidia: New Aphelid Paraphelidium tribonemae gen. et sp. nov.",
abstract = "Aphelids are a poorly known group of parasitoids of algae that have raised considerable interest due to their pivotal phylogenetic position. Together with Cryptomycota and the highly derived Microsporidia, they have been recently re-classified as the Opisthosporidia, which constitute the sister group to the fungi within the Holomycota. Despite their huge diversity, as revealed by molecular environmental studies, and their phylogenetic interest, only three genera have been described (Aphelidium, Amoeboaphelidium, and Pseudaphelidium), from which 18S rRNA gene sequences exist only for Amoeboaphelidium and Aphelidium species. Here, we describe the life cycle and ultrastructure of a new representative of Aphelida, Paraphelidium tribonemae gen. et sp. nov., and provide the first 18S rRNA gene sequence obtained for this genus. Molecular phylogenetic analysis indicates that Paraphelidium is distantly related to both Aphelidium and Amoebaphelidium, highlighting the wide genetic diversity of aphelids. Paraphelidium tribonemae has amoeboflagellate zoospores containing a lipid-microbody complex, dictyosomes, and mitochondria with rhomboid cristae, which are also present in trophonts and plasmodia. The amoeboid trophont uses pseudopodia to feed from the host cytoplasm. Although genetically distinct, the genus Paraphelidium is morphologically indistinguishable from other aphelid genera and has zoospores able to produce lamellipodia with subfilopodia like those of Amoeboaphelidium.",
keywords = "Ecology, life cycle, molecular phylogeny, parasitoids of algae, ultrastructure",
author = "Karpov, {Sergey A.} and Tcvetkova, {Victoria S.} and Mamkaeva, {Maria A.} and Guifr{\'e} Torruella and H{\'e}l{\`e}ne Timpano and David Moreira and Mamanazarova, {Karomat S.} and Purificaci{\'o}n L{\'o}pez-Garc{\'i}a",
year = "2017",
month = mar,
day = "1",
doi = "10.1111/jeu.12352",
language = "English",
volume = "64",
pages = "204--212",
journal = "Journal of Eukaryotic Microbiology",
issn = "1066-5234",
publisher = "Wiley-Blackwell",
number = "2",

}

RIS

TY - JOUR

T1 - Morphological and Genetic Diversity of Opisthosporidia

T2 - New Aphelid Paraphelidium tribonemae gen. et sp. nov.

AU - Karpov, Sergey A.

AU - Tcvetkova, Victoria S.

AU - Mamkaeva, Maria A.

AU - Torruella, Guifré

AU - Timpano, Hélène

AU - Moreira, David

AU - Mamanazarova, Karomat S.

AU - López-García, Purificación

PY - 2017/3/1

Y1 - 2017/3/1

N2 - Aphelids are a poorly known group of parasitoids of algae that have raised considerable interest due to their pivotal phylogenetic position. Together with Cryptomycota and the highly derived Microsporidia, they have been recently re-classified as the Opisthosporidia, which constitute the sister group to the fungi within the Holomycota. Despite their huge diversity, as revealed by molecular environmental studies, and their phylogenetic interest, only three genera have been described (Aphelidium, Amoeboaphelidium, and Pseudaphelidium), from which 18S rRNA gene sequences exist only for Amoeboaphelidium and Aphelidium species. Here, we describe the life cycle and ultrastructure of a new representative of Aphelida, Paraphelidium tribonemae gen. et sp. nov., and provide the first 18S rRNA gene sequence obtained for this genus. Molecular phylogenetic analysis indicates that Paraphelidium is distantly related to both Aphelidium and Amoebaphelidium, highlighting the wide genetic diversity of aphelids. Paraphelidium tribonemae has amoeboflagellate zoospores containing a lipid-microbody complex, dictyosomes, and mitochondria with rhomboid cristae, which are also present in trophonts and plasmodia. The amoeboid trophont uses pseudopodia to feed from the host cytoplasm. Although genetically distinct, the genus Paraphelidium is morphologically indistinguishable from other aphelid genera and has zoospores able to produce lamellipodia with subfilopodia like those of Amoeboaphelidium.

AB - Aphelids are a poorly known group of parasitoids of algae that have raised considerable interest due to their pivotal phylogenetic position. Together with Cryptomycota and the highly derived Microsporidia, they have been recently re-classified as the Opisthosporidia, which constitute the sister group to the fungi within the Holomycota. Despite their huge diversity, as revealed by molecular environmental studies, and their phylogenetic interest, only three genera have been described (Aphelidium, Amoeboaphelidium, and Pseudaphelidium), from which 18S rRNA gene sequences exist only for Amoeboaphelidium and Aphelidium species. Here, we describe the life cycle and ultrastructure of a new representative of Aphelida, Paraphelidium tribonemae gen. et sp. nov., and provide the first 18S rRNA gene sequence obtained for this genus. Molecular phylogenetic analysis indicates that Paraphelidium is distantly related to both Aphelidium and Amoebaphelidium, highlighting the wide genetic diversity of aphelids. Paraphelidium tribonemae has amoeboflagellate zoospores containing a lipid-microbody complex, dictyosomes, and mitochondria with rhomboid cristae, which are also present in trophonts and plasmodia. The amoeboid trophont uses pseudopodia to feed from the host cytoplasm. Although genetically distinct, the genus Paraphelidium is morphologically indistinguishable from other aphelid genera and has zoospores able to produce lamellipodia with subfilopodia like those of Amoeboaphelidium.

KW - Ecology

KW - life cycle

KW - molecular phylogeny

KW - parasitoids of algae

KW - ultrastructure

UR - http://www.scopus.com/inward/record.url?scp=84983239183&partnerID=8YFLogxK

U2 - 10.1111/jeu.12352

DO - 10.1111/jeu.12352

M3 - Article

C2 - 27487286

VL - 64

SP - 204

EP - 212

JO - Journal of Eukaryotic Microbiology

JF - Journal of Eukaryotic Microbiology

SN - 1066-5234

IS - 2

ER -

ID: 7620080