| Literature DB >> 19570199 |
Christoph Bleidorn1, Lars Podsiadlowski, Min Zhong, Igor Eeckhaut, Stefanie Hartmann, Kenneth M Halanych, Ralph Tiedemann.
Abstract
BACKGROUND: Phylogenomic analyses recently became popular to address questions about deep metazoan phylogeny. Ribosomal proteins (RP) dominate many of these analyses or are, in some cases, the only genes included. Despite initial hopes, phylogenomic analyses including tens to hundreds of genes still fail to robustly place many bilaterian taxa.Entities:
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Year: 2009 PMID: 19570199 PMCID: PMC2716322 DOI: 10.1186/1471-2148-9-150
Source DB: PubMed Journal: BMC Evol Biol ISSN: 1471-2148 Impact factor: 3.260
Figure 1ML analysis of the RP-dataset using RAxML with mixed models. Bootstrap support estimated from 100 replicates is given at the nodes.
Figure 2Mitochondrial gene order of . Protein-coding genes and ribosomal RNA genes were identified by blasting on the NCBI Entrez databases. Transfer RNA genes were identified by their potential secondary structures using the tRNAscan-SE Search Server (Lowe and Eddy 1997). Identical patterns between taxa are highlighted. Abbreviations are as follow: ATP synthase subunits (atp6, atp8) cytochrome c oxidase subunits (cox1-cox3), apocytochrome b (cob), nicotinamide adenine dinucleotide ubiquinone oxireductase subunits (nad1-nad6), small and large ribosomal subunit (rrnS, rrnL). Transfer RNA genes are denominated by the corresponding amino acid (one letter code).
Figure 3ML analysis of the mitochondrial gene dataset. Analysis was conducted with RAxML using mixed models. Bootstrap values from 100 replicates are given at the nodes.
Long PCR Primers for amplifications of Endomyzostoma mtDNA:
| CO1-Myz-longF | 5'---ATT TTT TCC TTA CAT TTA GCT GGG GCT AGG-3' | 53 | |
| Cytb-Myz-longR | 5'---TGT TTA ACT CCT AAA GGG TTT GAT GAC CCG C---3' | 53 | |
| Cytb-Myz-longF | 5'---TCC TCA TTA ATA AAA ATC CCG TTC CAC CCG---3' | 54 | |
| Nad5-Myz-618R | 5'---TAC TAG TGC AGA AAC GGG TGT AGG TGC TGC---3' | 54 | |
| Nad5-Myz-615F | 5'---GTA CAC TCA TCA ACA TTA GTA ACA GCA GGC---3' | 54 | |
| 16S-Myz-longR | 5'---CTT TAG AAA AAT AAA CCT GTT ATC CCT GTG G---3' | 54 |
List of taxa included in the ribosomal protein dataset.
| OTU | higher taxon | Genes | % AAs present |
| Cnidaria | 59 | 60.15 | |
| Arthropoda | 77 | 99.61 | |
| Arthropoda | 77 | 99.07 | |
| Mollusca | 76 | 96.46 | |
| Annelida | 60 | 66.44 | |
| Mollusca | 70 | 93.71 | |
| Platyhelminthes | 76 | 95.36 | |
| Kamptozoa | 46 | 54.19 | |
| Rotifera | 70 | 90.82 | |
| Bryozoa | 77 | 98.09 | |
| Nematoda | 77 | 98.99 | |
| Annelida | 76 | 86.63 | |
| Nemertea | 73 | 93.57 | |
| Nemertea | 71 | 90.23 | |
| Annelida | 67 | 84.95 | |
| Tunicata | 77 | 99.49 | |
| Mollusca | 75 | 94.16 | |
| Arthropoda | 77 | 97.63 | |
| Platyhelminthes | 67 | 75.20 | |
| Platyhelminthes | 62 | 75.76 | |
| Platyhelminthes | 73 | 92.17 | |
| Mollusca | 58 | 78.15 | |
| Annelida | 41 | 39.93 | |
| Chaetognatha | 61 | 69.58 | |
| Bryozoa | 76 | 89.93 | |
| Gnathostomulida | 59 | 69.44 | |
| Annelida | 54 | 53.32 | |
| Annelida | 75 | 78.78 | |
| Annelida | 64 | 85.13 | |
| Arthropoda | 57 | 70.38 | |
| Vertebrata | 77 | 99.70 | |
| Cnidaria | 77 | 98.79 | |
| Tardigrada | 74 | 86.16 | |
| Mollusca | 43 | 57.63 | |
| Arthropoda | 71 | 87.07 | |
| Nemertea | 57 | 73.05 | |
| Annelida | 76 | 98.32 | |
| Platyhelminthes | 56 | 70.06 | |
| Myzostomida | 47 | 64.84 | |
| Myzostomida | 62 | 75.47 | |
| Cnidaria | 72 | 85.36 | |
| Platyhelminthes | 70 | 88.46 | |
| Kamptozoa | 71 | 89.31 | |
| Rotifera | 28 | 32.29 | |
| Annelida | 26 | 40.54 | |
| Acanthocephala | 63 | 63.04 | |
| Priapulida | 37 | 36.12 | |
| Platyhelminthes | 77 | 98.42 | |
| Platyhelminthes | 77 | 97.14 | |
| Annelida | 49 | 47.11 | |
| Chaetognatha | 66 | 79.94 | |
| Echinodermata | 76 | 94.80 | |
| Vertebrata | 77 | 99.86 | |
| Brachiopoda | 64 | 78.17 | |
| Annelida | 64 | 78.06 | |
| Annelida | 76 | 96.90 | |
| Gastrotricha | 57 | 57.32 | |
| Annelida | 73 | 92.73 | |
| Nematoda | 70 | 90.44 |
Number of ribosomal protein genes and percentage of amino acids present in the concatenated dataset are given.
List of species included in the mitochondrial genome dataset. Incomplete mitochondrial genomes are indicated with an asterik (*).
| OTU | higher taxon |
| Cnidaria | |
| Nematoda | |
| Nematoda | |
| Arthropoda | |
| Echinodermata | |
| Hemichordata | |
| Rotifera | |
| Cephalochordata | |
| Bryozoa | |
| Nematoda | |
| Annelida | |
| Mollusca | |
| Platyhelminthes | |
| Arthropoda | |
| Platyhelminthes | |
| Annelida | |
| Myzostomida | |
| Onychophora | |
| Platyhelminthes | |
| Echinodermata | |
| Bryozoa | |
| Annelida | |
| Porifera | |
| Platyhelminthes | |
| Mollusca | |
| Annelida | |
| Arthropoda | |
| Platyhelminthes | |
| Arthropoda | |
| Mollusca | |
| Vertebrata | |
| Brachiopoda | |
| Acanthocephala | |
| Arthropoda | |
| Arthropoda | |
| Arthropoda | |
| Kamptozoa | |
| Kamptozoa | |
| Annelida | |
| Cnidaria | |
| Platyhelminthes | |
| Platyhelminthes | |
| Myzostomida | |
| Myzostomida | |
| Arthropoda | |
| Mollusca | |
| Annelida | |
| Mollusca | |
| Nematoda | |
| Annelida | |
| Porifera | |
| Echinodermata | |
| Platyhelminthes | |
| Chaetognatha | |
| Arthropoda | |
| Annelida | |
| Annelida | |
| Phoronida | |
| Annelida | |
| Annelida | |
| Priapulida | |
| Annelida | |
| Hemichordata | |
| Platyhelminthes | |
| Annelida | |
| Chaetognatha | |
| Arthropoda | |
| Platyhelminthes | |
| Annelida | |
| Brachiopoda | |
| Brachiopoda | |
| Arthropoda | |
| Nematoda | |
| Platyhelminthes | |
| Arthropoda | |
| Annelida | |
| Xenoturbellida | |
| Nematoda |