scholarly article | Q13442814 |
P819 | ADS bibcode | 2015PLoSO..1025063V |
P356 | DOI | 10.1371/JOURNAL.PONE.0125063 |
P932 | PMC publication ID | 4411025 |
P698 | PubMed publication ID | 25915503 |
P5875 | ResearchGate publication ID | 275580264 |
P50 | author | Timur Simdyanov | Q59549469 |
Gita Paskerova | Q59693991 | ||
Andrea Valigurová | Q79369389 | ||
P2093 | author name string | Andrei Diakin | |
Magdaléna Kováčiková | |||
P2860 | cites work | The Revised Classification of Eukaryotes | Q17792525 |
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A coccidian (Apicomplexa: Eimeriidae) with extracytoplasmally located stages in the kidney tubules of golden carp (Carassius auratus gibelio L.) (Cyprinidae) | Q72816030 | ||
Fine structure of the epicytoplasmic eimerid coccidium Acroeimeria pintoi Lainson & Paperna, 1999, a gut parasite of the lizard Ameiva ameiva in north Brazil | Q73349621 | ||
Apical organelles and host-cell invasion by Apicomplexa | Q77184156 | ||
Fine structure and putative feeding mechanism of the archigregarine Selenidium orientale (Apicomplexa: Gregarinomorpha) | Q79382258 | ||
Ditrypanocystis sp. (Apicomplexa, Gregarinia, Selenidiidae): the mode of survival in the gut of Enchytraeus albidus (Annelida, Oligochaeta, Enchytraeidae) is close to that of the coccidian genus Cryptosporidium | Q79406564 | ||
MORN1 has a conserved role in asexual and sexual development across the apicomplexa | Q24655935 | ||
Cryptosporidium pathogenicity and virulence | Q26823336 | ||
A novel family of Toxoplasma IMC proteins displays a hierarchical organization and functions in coordinating parasite division | Q27313499 | ||
Cryptosporidium is more closely related to the gregarines than to coccidia as shown by phylogenetic analysis of apicomplexan parasites inferred using small-subunit ribosomal RNA gene sequences | Q28146098 | ||
Marine gregarines: evolutionary prelude to the apicomplexan radiation? | Q28266188 | ||
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Sophisticated adaptations of Gregarina cuneata (Apicomplexa) feeding stages for epicellular parasitism | Q34382517 | ||
What is Cryptosporidium? Reappraising its biology and phylogenetic affinities | Q36564240 | ||
Host cell actin remodeling in response to Cryptosporidium. | Q37177252 | ||
Dinitroanilines bind alpha-tubulin to disrupt microtubules | Q37221164 | ||
Microtubule cytoskeleton behavior in the initial steps of host cell invasion by Besnoitia besnoiti. | Q39391491 | ||
A role for host phosphoinositide 3-kinase and cytoskeletal remodeling during Cryptosporidium parvum infection. | Q39509732 | ||
Cryptosporidium parvum infection requires host cell actin polymerization | Q39522195 | ||
Morphological analysis of the cellular interactions between the eugregarine Gregarina garnhami (Apicomplexa) and the epithelium of its host, the desert locust Schistocerca gregaria. | Q39546400 | ||
Interaction of Cryptosporidium hominis and Cryptosporidium parvum with primary human and bovine intestinal cells | Q40337680 | ||
Cryptosporidium parvum attachment to and internalization by human biliary epithelia in vitro: a morphologic study | Q40551367 | ||
Chronology of the ultrastructural modifications during the growth of Gregarina blaberae | Q41262595 | ||
Eugregarine trophozoite detachment from the host epithelium via epimerite retraction: fiction or fact? | Q42454103 | ||
The fine structure of the sporozoite of Lankesteria culicis | Q42998469 | ||
Electron microscopic observation of the invasion process of Cryptosporidium parvum in severe combined immunodeficiency mice | Q43722294 | ||
Electron microscopic investigation on the evolution stages of the trophozoite of Didymophyes gigantea (Sporozoa, Gregarinida). I. The fine structure of the proto- and epimerite and the relationship between host and parasite (author's transl) | Q43802671 | ||
Disruption of microtubules uncouples budding and nuclear division in Toxoplasma gondii | Q43899687 | ||
Cryptosporidia: epicellular parasites embraced by the host cell membrane. | Q44402258 | ||
Immunodetection of the microvillous cytoskeleton molecules villin and ezrin in the parasitophorous vacuole wall of Cryptosporidium parvum (Protozoa: Apicomplexa). | Q44444318 | ||
Life cycle of Cryptosporidium muris in two rodents with different responses to parasitization | Q46982319 | ||
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P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 4 | |
P304 | page(s) | e0125063 | |
P577 | publication date | 2015-04-27 | |
P1433 | published in | PLOS One | Q564954 |
P1476 | title | Protococcidian Eleutheroschizon duboscqi, an Unusual Apicomplexan Interconnecting Gregarines and Cryptosporidia | |
P478 | volume | 10 |
Q54982992 | 3D Reconstruction of Lipid Droplets in the Seed of Brassica napus. |
Q83229299 | Apicomplexan-like parasites are polyphyletic and widely but selectively dependent on cryptic plastid organelles |
Q26781573 | Epicellular Apicomplexans: Parasites "On the Way In" |
Q60045045 | Identification of a PH domain-containing protein which is localized to crystalloid bodies of Plasmodium ookinetes |
Q30245283 | It's official - Cryptosporidium is a gregarine: What are the implications for the water industry? |
Q33825469 | Motility in blastogregarines (Apicomplexa): Native and drug-induced organisation of Siedleckia nematoides cytoskeletal elements. |
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