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166 results for “Liparidae”

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FIGURE 1 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 1. Species of Allocareproctus: A) A. jordani, UW 112283, 74.8 mm, male; B) A. tanix, UW 112294, holotype, 65.6 mm, male; C) A. kallaion, UW 112244, holotype, 157.0 mm, female; D) A. unangas, UW 112308, holotype, 82.5 mm, female; E) A. ungak, UW 111933, holotype, 91.0 mm, female. Scale bar = 10 mm.

opennotspecifiedApr 2006View details →
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FIGURE 6 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 6. Pectoral girdles of species of Allocareproctus: A) A. jordani, UW 112283, 74.2 mm; B) A. tanix, UW 113166, paratype, 63.8 mm; C) A. kallaion, UW 112236, paratype, 129.0 mm; D) A. unangas, UW 112088, paratype, 84.2 mm; E) A. ungak, UW 45239, paratype, 84.5 mm. Scale bar = 5 mm. c = coracoid, f = interradial fenestra, r = radial, s = scapula. Illustrations by B.M. Vinter.

opennotspecifiedApr 2006View details →
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FIGURE 13 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 13. Plots of principal component scores for meristic characters of species of Allocareproctus: Allocareproctus jordani (×), A. tanix (), A. kallaion(), A. unangas (), A. ungak (♢).

opennotspecifiedApr 2006View details →
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FIGURE 3 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 3. Allocareproctus kallaion, UW 112244, holotype, 157 mm, female. Head and anterior portion of body showing papillae associated with cephalic pores and exserted tips of anterior dorsal­fin rays. Illustration by B.M. Vinter.

opennotspecifiedApr 2006View details →
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FIGURE 8 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 8. Distribution of Allocareproctus tanix based on all known material, four specimens in four lots.

opennotspecifiedApr 2006View details →
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FIGURE 9 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 9. Distribution of Allocareproctus kallaion based on all known material, 48 specimens in 15 lots.

opennotspecifiedApr 2006View details →
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FIGURE 12 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 12. Orobuccal valve of A) Allocareproctus jordani and B) Allocareproctus kallaion. Anterior to left, operculum lifted out and dorsally. Illustrations by B.M. Vinter.

opennotspecifiedApr 2006View details →
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FIGURE 2 in Revision of the snailfish genus Allocareproctus Pitruk & Fedorov (Teleostei: Liparidae), with descriptions of four new species from the Aleutian Islands

FIGURE 2. Teeth of species of Allocareproctus: A) A. jordani, UW 112283, 17 mm HL; B) A. tanix, UW 113166, paratype, 17.8 mm HL; C) A. kallaion, UW 112236, paratype, 31.4 mm HL; D) A. unangas, UW 112088, paratype, 22 mm HL; E) A. ungak, UW 45239, paratype, 22 mm HL. Scale bar = 0.25 mm.

opennotspecifiedApr 2006View details →
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FIGURE 10 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 10. Phylogeny of the liparid clade Aenigmoliparia from the majority rule (50%) consensus tree from the Bayesian inference of a 490 bp alignment of 270 cytochrome c oxidase subunit one gene (COI) sequences. Nodal values represent Bayesian posterior probabilities and bootstrap values from the maximum likelihood analysis (above and below branches, respectively). Species names are followed by a catalog number or BOLD "Sequence ID" number when represented by a sequence from a single specimen in our dataset. N indicates number of sequences, when multiple sequences support a branch tip. Boldface species names indicate species placed in different positions in COI and RADseq trees. Only unique sequences were subjected to the analyses (Appendix Table 1); other identical sequences surveyed are listed in Appendix Table 2.

opennotspecifiedJul 2019View details →
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FIGURE 7 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 7. Majority-rule (50%) consensus phylogenetic tree of Shen et al. (2017, after fig. S6), derived from a Bayesian inference of a 440 bp alignment of cytochrome c oxidase subunit 1 gene (COI) sequences for 84 samples of 83 liparid species. Bayesian posterior probabilities are above branches. Tree is rooted with species of the Cyclopteridae. Corrected identifications based on our study are in parentheses.

opennotspecifiedJul 2019View details →
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FIGURE 9 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 9. Phylogeny of the genus Liparis, excluding L. fucensis depicted in Figure 8, from the majority rule (50%) consensus tree from the Bayesian inference of a 490 bp alignment of 270 cytochrome c oxidase subunit one gene (COI) sequences. Nodal values represent Bayesian posterior probabilities and bootstrap values from the maximum likelihood analysis (above and below, respectively). Species names are followed by a catalog number or BOLD "Sequence ID" number when represented by a sequence from a single specimen in our dataset. N indicates number of sequences, when multiple sequences support a branch tip. Only unique sequences were subjected to the analyses (Appendix Table 1); other identical sequences surveyed are listed in Appendix Table 2.

opennotspecifiedJul 2019View details →
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FIGURE 6 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 6. Majority rule (50%) consensus phylogenetic tree of Gardner et al. (2016, after fig. 4), derived from Bayesian inference and maximum parsimony analysis of a 492 bp alignment of cytochrome c oxidase subunit 1 gene (COI) sequences of 492 bp for 128 samples of 23 liparid species. Bootstrap values are above and Bayesian posterior probabilities are below branches that lead to multiple species. Tree is rooted with Liparis gibbus. Corrected identifications based on our study are in parentheses.

opennotspecifiedJul 2019View details →
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FIGURE 12 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 12. Phylogeny of selected eastern North Pacific liparids inferred using genome-wide restriction-site associated DNA sequences (RADseq; –p 28, –r 0.5) with maximum likelihood and Bayesian methods. Majority rule (50%) consensus tree of individual sequences. Nodal values represent Bayesian posterior probabilities and bootstrap values from the maximum likelihood analysis (above and below branches, respectively); double asterisks denote Bayesian posterior probabilities of 1 and bootstrap support of 100%. Species names are followed by the University of Washington Fish Collection catalog number for the specimen. Boldface species names indicate species placed in different positions in COI and RADseq trees.

opennotspecifiedJul 2019View details →
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FIGURE 4 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 4. Unrooted neighbor-joining tree of Steinke et al. (2009, after fig. 4), derived from cluster analysis of a 650 bp alignment of cytochrome c oxidase subunit 1 gene (COI) sequences for 78 samples of 19 liparid species. Bootstrap values>80 are above branches leading to multiple species. Corrected identifications based on our study are in parentheses.

opennotspecifiedJul 2019View details →
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FIGURE 2 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 2. Phylogenetic hypothesis of Balushkin (1996, after fig. 4), derived from a manual cladistic analysis of morphological data, including seven osteological and external characters, for 26 liparid genera.

opennotspecifiedJul 2019View details →
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FIGURE 1 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 1. Phylogenetic hypothesis of Kido (1988, after fig. 20), derived from a maximum parsimony analysis of morphological data, using 34 osteological and external characters, for 60 liparid species.

opennotspecifiedJul 2019View details →
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FIGURE 3 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 3. Majority-rule (50%) consensus tree of Knudsen et al. (2007, after fig. 3), derived from a Bayesian analysis of three combined datasets composed of mitochondrial DNA (16S and cytochrome b) and morphological data for 24 liparid species. Tree is rooted with species of the Cyclopteridae. Posterior probabilities are above branches.

opennotspecifiedJul 2019View details →
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FIGURE 5 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 5. Consensus phylogenetic tree of Duhamel et al. (2010, after fig. 3), derived from Bayesian and maximum parsimony analyses of a 668 bp alignment of cytochrome c oxidase subunit 1 gene (COI) sequences for 157 samples of 46 liparid species. Bayesian posterior probabilities are above branches that lead to multiple species. Tree is rooted with species of the Cyclopteridae and Zoarcidae. Corrected identifications based on our study are in parentheses.

opennotspecifiedJul 2019View details →
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FIGURE 8 in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 8. Phylogeny of the Liparidae. Majority rule (50%) consensus tree from the Bayesian inference of a 490 bp alignment of 270 cytochrome c oxidase subunit one gene (COI) sequences. Nodal values represent Bayesian posterior probabilities and bootstrap values from the maximum likelihood analysis (above and below, respectively). Species names are followed by a catalog number or BOLD "Sequence ID" number when represented by a sequence from a single specimen in our dataset. N indicates number of sequences, when multiple sequences support a branch tip. Only unique sequences were subjected to the analyses (Appendix Table 1); other identical sequences surveyed are listed in Appendix Table 2. Clades Liparis, Aenigmoliparia, and Paraliparia are depicted in Figures 9, 10, and 11, respectively.

opennotspecifiedJul 2019View details →
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FIGURE 13 H–O in Molecular phylogenetics of snailfishes (Cottoidei: Liparidae) based on MtDNA and RADseq genomic analyses, with comments on selected morphological characters

FIGURE 13 H–O. Pectoral girdles of selected species of the Cyclopteridae and Liparidae: H) Prognatholiparis ptychomandibularis, UW 156749; I) Acantholiparis opercularis, UW 118624; J) Careproctus sp. cf. melanurus, UW 119240; K) Paraliparis dactylosus, UW 116232; L) Rhinoliparis attenuatus, UW 113736; M) P. cephalus, UW 117527; N) Paraliparis pectoralis, UW 117515; O) P. ulochir, UW 150802.

opennotspecifiedJul 2019View details →

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