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Morphostasis in alveolate evolution
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title
Morphostasis in alveolate evolution
(English)
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author
Brian S. Leander
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1
object named as
Brian S. Leander
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Patrick John Keeling
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object named as
Patrick J. Keeling
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publication date
August 2003
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number of pages
8
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published in
Trends in Ecology & Evolution
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volume
18
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issue
8
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page(s)
395-402
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Tempo and mode of speciation in the sea
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Global dispersal of free-living microbial eukaryote species
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Dinoflagellate phylogeny revisited: reconciling morphological and molecular based phylogenies
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The Diversity of Eukaryotes
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The troublesome parasites — molecular and morphological evidence that Apicomplexa belong to the dinoflagellate-ciliate clade
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Multiple protein phylogenies show that Oxyrrhis marina and Perkinsus marinus are early branches of the dinoflagellate lineage
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Re-examining alveolate evolution using multiple protein molecular phylogenies.
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Phylogenetic analysis of Perkinsus based on actin gene sequences.
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'Total evidence' refutes the inclusion of Perkinsus species in the phylum Apicomplexa
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Serological affinities of the oyster pathogen Perkinsus marinus (Apicomplexa) with some dinoflagellates (Dinophyceae)
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Perkinsus qugwadi sp.nov. (incertae sedis), a pathogenic protozoan parasite of Japanese scallops, Patinopecten yessoensis , cultured in British Columbia, Canada
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Ultrastructure and identification of the predatory flagellateColpodella pugnax Cienkowski (Apicomplexa) with a description ofColpodella turpis n. sp. and a review of the genus
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The phylogeny of colpodellids (Alveolata) using small subunit rRNA gene sequences suggests they are the free-living sister group to apicomplexans
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Cryptophagus subtilis: a new parasite of cryptophytes affiliated with the Perkinsozoa lineage
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Acrocoelus glossobalani gen. nov. et sp. nov., a protistan flagellate from the gut of the enteropneust Glossabalanus minutus
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Isolation of the major basic nuclear protein and its localization on chromosomes of the dinoflagellate, Oxyrrhis marina
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An unusual mitotic mechanism in the parasitic protozoan Syndinium sp
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Scanning Electron Microscopy of Gregarines (Protozoa, Sporozoa) and Its Contribution to the Theory of Gregarine Movement
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Lytic cycle of Toxoplasma gondii
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The evolutionary expansion of the Sporozoa
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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
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Principles of protein and lipid targeting in secondary symbiogenesis: euglenoid, dinoflagellate, and sporozoan plastid origins and the eukaryote family tree
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Nuclear-encoded, plastid-targeted genes suggest a single common origin for apicomplexan and dinoflagellate plastids.
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Mixotrophy among Dinoflagellates
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Dinoflagellate nuclear SSU rRNA phylogeny suggests multiple plastid losses and replacements
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A single origin of the peridinin- and fucoxanthin-containing plastids in dinoflagellates through tertiary endosymbiosis
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Tracing the Thread of Plastid Diversity through the Tapestry of Life.
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DOI
10.1016/S0169-5347(03)00152-6
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release_veasyk7dlbcgdemmaexfyvujpm
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