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11 results for “Kyphosus”
Data files for: Huston, D.C. et al. 2021. Stable isotope signatures of an acanthocephalan and trematode from the herbivorous marine fish Kyphosus bigibbus (Perciformes: Kyphosidae). Journal of Parasitology. 107: 726–730
<p>Data files for the paper: Huston, D.C. et al. 2021. Stable isotope signatures of an acanthocephalan and trematode from the herbivorous marine fish Kyphosus bigibbus (Perciformes: Kyphosidae). Journal of Parasitology. 107(5) 726–730</p> <p>Includes raw data, .csv files for import of data into R, R script file, and excel spreadsheet file used to create Figure 1.</p>
FIGURE 6 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 6. Ordination plot of first and second axis of principal components analysis of 14 morphometric measurements and three meristic characters (see text for list of variables). Open circles represents K. gladius sp. nov., open squares represents K. sydneyanus, and triangles represents K. bigibbus. The holotype for K. gladius is represented by a black circle (WAMP.33456- 001), the crossed circle and black square represent the holotypes of Segutilum klunzingeri (SMNS 2673) and Pimelepterus sydneyanus (BMNH 1883.11.29.5), respectively.
FIGURE 5 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 5. Relationships between Australian Indo-Pacific species of Kyphosus: A) Bayesian analysis of mtDNA cyt b, control region, partial 12S, and tRNA-regions (tRNA-Thr, tRNA-Pro and tRNA-Phe), B) Bayesian analysis of nDNA RAG1, RAG2 and Tmo-4C4. Bayesian posterior probabilities are given as percentages next to branches, all branches have a support of 100% unless otherwise specified. Numbers above branches indicate Bayesian posterior probabilities.
FIGURE 7 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 7. Minimum spanning network showing the molecular difference in partial cyt b mtDNA in K. gladius sp. nov., K. sydneyanus and K. bigibbus. Length of branches reflects the number of substitutions between haplotypes. Size of circles reflects number of individuals with identical haplotype. Black dots represents hypothetical unsampled haplotypes.
FIGURE 3 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 3. Photo of holotype, paratypes of K. gladius sp. nov. and non-type of K. sydneyanus from Western Australia: A) Kyphosus gladius sp. nov., holotype, WAM P.33456-001, 439 mm SL, B) K. gladius sp. nov., paratype, photo of preserved specimen, WAM P.30668-001, 286 mm SL, C) photo of freshly caught non-type K. sydneyanus, WAM P.33456-002, 193 mm SL (top) and paratype K. gladius sp. nov., WAM P.33456-002, 211 mm SL (bottom), collected at Canal Rocks, south off Perth (33°40' S, 114°59' E) on 30 May 2010.
FIGURE 4 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 4. Underwater photographs of Kyphosus spp. at Rottnest Island, Perth, Western Australia in July 2011: A) Kyphosus gladius sp. nov. (circle) and K. sydneyanus (square), specimens not collected, B) K. sydneyanus (square) among school of Kyphosus gladius sp. nov. (circles), specimens not collected. Photos by KDC.
FIGURE 1 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 1. Capture locations of Kyphosus gladius sp. nov. (open circles), K. sydneyanus (red stars), K. bigibbus (yellow squares) and K. cornelii (blue triangles). One symbol may represent more than one record.
FIGURE 2 in Kyphosus gladius, a new species of sea chub from Western Australia (Teleostei: Kyphosidae), with comments on Segutilum klunzingeri Whitley
FIGURE 2. Holotype of K. gladius sp. nov., WAM P.33456-001, 439 mm SL, drawing by SWK.
Figure 2. Kyphosus vaigiensis, 531.1 in Range extension of Kyphosus vaigiensis (Quoy & Gaimard, 1825) in the northeastern Mediterranean, İskenderun Bay, Turkey
Figure 2. Kyphosus vaigiensis, 531.1 mm total length from İskenderun Bay (northeastern Mediterranean): on the right, the first gill arch (photograph by C.E. Ozyurt).
Figure 1 in Range extension of Kyphosus vaigiensis (Quoy & Gaimard, 1825) in the northeastern Mediterranean, İskenderun Bay, Turkey
Figure 1. Map of the İskenderun Bay showing the location where the Kyphosus vaigiensis specimen was caught.
Figure 3 in Range extension of Kyphosus vaigiensis (Quoy & Gaimard, 1825) in the northeastern Mediterranean, İskenderun Bay, Turkey
Figure 3. The neighbor-joining phylogenetic tree for our specimen and the 45 related specimens in the BOLD database. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) is shown next to the branches. In the phylogram, each species is represented by its name, sampling location, and barcode index number, respectively. The obtained sequences are enclosed in a red box for clarity.
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