Molecular evolutionary analyses of nuclear-encoded small subunit ribosomal RNA identify an independent rhizopod lineage containing the Euglyphina and the Chlorarachniophyta.
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Evaluating support for the current classification of eukaryotic diversityPhylogenomics reshuffles the eukaryotic supergroupsMorphology and molecular phylogeny of a marine interstitial tetraflagellate with putative endosymbionts: Auranticordis quadriverberis n. gen. et sp. (Cercozoa)The Complete Chloroplast Genome of the Chlorarachniophyte Bigelowiella natans: Evidence for Independent Origins of Chlorarachniophyte and Euglenid Secondary EndosymbiontsThe twilight of Heliozoa and rise of Rhizaria, an emerging supergroup of amoeboid eukaryotesEndosymbiotic associations within protistsThe endosymbiotic origin, diversification and fate of plastidsSSU rRNA-based phylogenetic position of the genera Amoeba and Chaos (Lobosea, Gymnamoebia): the origin of gymnamoebae revisitedPossible import routes of proteins into the cyanobacterial endosymbionts/plastids of Paulinella chromatophoraPlastid origin and evolution: new models provide insights into old problemsA single origin of the photosynthetic organelle in different Paulinella lineagesMitochondrial DNA restriction fragment length polymorphism (RFLP) and 18S small-subunit ribosomal DNA PCR-RFLP analyses of Acanthamoeba isolated from contact lens storage cases of residents in southwestern KoreaSecond-hand chloroplasts and the case of the disappearing nucleusThe origin of red algae: implications for plastid evolutionEvaluation of taxonomic validity of four species of Acanthamoeba: A. divionensis, A. paradivionensis, A. mauritaniensis, and A. rhysodes, inferred from molecular analyses.Substitution rate calibration of small subunit ribosomal RNA identifies chlorarachniophyte endosymbionts as remnants of green algaeThe miniaturized nuclear genome of eukaryotic endosymbiont contains genes that overlap, genes that are cotranscribed, and the smallest known spliceosomal introns.Ancient gene paralogy may mislead inference of plastid phylogeny.Single cell genome analysis supports a link between phagotrophy and primary plastid endosymbiosis.PRIMARY AND SECONDARY ENDOSYMBIOSIS AND THE ORIGIN OF PLASTIDSChlorarachniophytesEvolution of the diatoms: major steps in their evolution and a review of the supporting molecular and morphological evidence
P2860
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P2860
Molecular evolutionary analyses of nuclear-encoded small subunit ribosomal RNA identify an independent rhizopod lineage containing the Euglyphina and the Chlorarachniophyta.
description
1995 nî lūn-bûn
@nan
1995年の論文
@ja
1995年論文
@yue
1995年論文
@zh-hant
1995年論文
@zh-hk
1995年論文
@zh-mo
1995年論文
@zh-tw
1995年论文
@wuu
1995年论文
@zh
1995年论文
@zh-cn
name
Molecular evolutionary analyse ...... na and the Chlorarachniophyta.
@en
type
label
Molecular evolutionary analyse ...... na and the Chlorarachniophyta.
@en
prefLabel
Molecular evolutionary analyse ...... na and the Chlorarachniophyta.
@en
P2093
P2860
P1476
Molecular evolutionary analyse ...... na and the Chlorarachniophyta.
@en
P2093
Bhattacharya D
Helmchen T
Melkonian M
P2860
P356
10.1111/J.1550-7408.1995.TB01541.X
P577
1995-01-01T00:00:00Z