Nuclear protein-coding genes support lungfish and not the coelacanth as the closest living relatives of land vertebrates
about
Multi-locus phylogenetic analysis reveals the pattern and tempo of bony fish evolutionVisual pigments in a living fossil, the Australian lungfish Neoceratodus forsteriThe African coelacanth genome provides insights into tetrapod evolutionNine exceptional radiations plus high turnover explain species diversity in jawed vertebratesOldest coelacanth, from the Early Devonian of AustraliaPrimordial germ cells: the first cell lineage or the last cells standing?Lungfish axial muscle function and the vertebrate water to land transitionIntraclass diversification of immunoglobulin heavy chain genes in the African lungfishCharacteristic tetrapod musculoskeletal limb phenotype emerged more than 400 MYA in basal lobe-finned fishesResolving the Phylogenetic Position of Coelacanth: The Closest Relative Is Not Always the Most Appropriate OutgroupWhole Genome Sequencing of the Asian Arowana (Scleropages formosus) Provides Insights into the Evolution of Ray-Finned FishesAnalysis of the transcriptome of the Indonesian coelacanth Latimeria menadoensisAn endogenous foamy-like viral element in the coelacanth genomeBehavioral evidence for the evolution of walking and bounding before terrestriality in sarcopterygian fishes43 genes support the lungfish-coelacanth grouping related to the closest living relative of tetrapods with the Bayesian method under the coalescence modelThe non-evaginated secondary prosencephalon of vertebratesRise of the earliest tetrapods: an early Devonian origin from marine environmentComplete HOX cluster characterization of the coelacanth provides further evidence for slow evolution of its genomeLungfishes, like tetrapods, possess a vomeronasal systemThe evolution of early vertebrate photoreceptorsVisual ecology of the Australian lungfish (Neoceratodus forsteri)Short-wavelength sensitive opsin (SWS1) as a new marker for vertebrate phylogeneticsCoelacanth genome sequence reveals the evolutionary history of vertebrate genesCalibration choice, rate smoothing, and the pattern of tetrapod diversification according to the long nuclear gene RAG-1Why coelacanths are not 'living fossils': a review of molecular and morphological data.Sequence and organization of coelacanth neurohypophysial hormone genes: evolutionary history of the vertebrate neurohypophysial hormone gene locus.Genome complexity in the coelacanth is reflected in its adaptive immune systemMolecular ecology and adaptation of visual photopigments in craniates.Molecular phylogeny and divergence times of deuterostome animals.Structural and functional divergence of growth hormone-releasing hormone receptors in early sarcopterygians: lungfish and Xenopus.A reinterpretation of the cytoarchitectonics of the telencephalon of the comoran coelacanth.Discovery of J chain in African lungfish (Protopterus dolloi, Sarcopterygii) using high throughput transcriptome sequencing: implications in mucosal immunity.Molecular cloning, characterization, and evolutionary analysis of estrogen receptors from phylogenetically ancient fishAnti-viral immune responses in a primitive lung: characterization and expression analysis of interferon-inducible immunoproteasome subunits LMP2, LMP7 and MECL-1 in a sarcopterygian fish, the Nigerian spotted lungfish (Protopterus dolloi).Early evolution of vertebrate photoreception: lessons from lampreys and lungfishes.The evolution of nitric oxide signalling in vertebrate blood vessels.Epithelial crypts: A complex and enigmatic olfactory organ in African and South American lungfish (Lepidosireniformes, Dipnoi).Histology and ultrastructure of the thymus during development in tilapia, Oreochromis niloticus.The Identification of the Closest Living Relative(s) of Tetrapods: Phylogenomic Lessons for Resolving Short Ancient Internodes.Conserved localization of Pax6 and Pax7 transcripts in the brain of representatives of sarcopterygian vertebrates during development supports homologous brain regionalization
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P2860
Nuclear protein-coding genes support lungfish and not the coelacanth as the closest living relatives of land vertebrates
description
2004 nî lūn-bûn
@nan
2004 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2004 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2004年の論文
@ja
2004年論文
@yue
2004年論文
@zh-hant
2004年論文
@zh-hk
2004年論文
@zh-mo
2004年論文
@zh-tw
2004年论文
@wuu
name
Nuclear protein-coding genes s ...... relatives of land vertebrates
@ast
Nuclear protein-coding genes s ...... relatives of land vertebrates
@en
type
label
Nuclear protein-coding genes s ...... relatives of land vertebrates
@ast
Nuclear protein-coding genes s ...... relatives of land vertebrates
@en
prefLabel
Nuclear protein-coding genes s ...... relatives of land vertebrates
@ast
Nuclear protein-coding genes s ...... relatives of land vertebrates
@en
P2860
P50
P3181
P356
P1476
Nuclear protein-coding genes s ...... relatives of land vertebrates
@en
P2093
Henner Brinkmann
P2860
P304
P3181
P356
10.1073/PNAS.0400609101
P407
P577
2004-04-06T00:00:00Z