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130 results for “Leuciscidae”
Fig. 1 in Limnotrachelobdella okae (Hirudinida: Piscicolidae) Parasitic on Big-scaled Redfin, Pseudaspius hakonensis (Cypriniformes: Leuciscidae), in Two Brackish Water Lakes, Hokkaido, Japan
Fig. 1. Limnotrachelobdella okae parasitic on big-scaled redfin, Pseudaspius hakonensis, from Lake Tofutsu, Hokkaido, Japan. A, leech (open triangle) and scar (closed triangle) on body surface; B, leech attached to pelvic fin. Note hemorrhage at and around site of caudal sucker attachment. Scale bars: A, 50 mm; B, 10 mm.
Fig. 3. Limnotrachelobdella okae, 61.0 in Limnotrachelobdella okae (Hirudinida: Piscicolidae) Parasitic on Big-scaled Redfin, Pseudaspius hakonensis (Cypriniformes: Leuciscidae), in Two Brackish Water Lakes, Hokkaido, Japan
Fig. 3. Limnotrachelobdella okae, 61.0 mm total length in 70% ethanol. NSMT-An 1879, from big-scaled redfin, Pseudaspius hakonensis, from Lake Tofutsu, Hokkaido, Japan. A, entire body, ventral view; B and C, trachelosome including oral sucker and clitellum, ventral and dorsal views, respectively; D and E, caudal sucker and posterior portion of urosome, ventral and dorsolateral views, respectively; F, Urosome segments including 5th–7th pairs of pulsatile vesicles. Abbreviations: c, clitellum; cs, caudal sucker; eb, everted bursa; mg, male gonopore; os, oral sucker; t, trachelosome; u, urosome; 5pv, 5th pulsatile vesicle; 6pv, 6th pulsatile vesicle; 7pv, 7th pulsatile vesicle. Each position of pulsatile vesicles 1–13 is indicated by an Arabic numeral. Horizontal lines indicate boundaries of urosome segments. Scale bars: A, 10 mm; B, C, 5 mm; D, E, 3 mm; F, 5 mm.
Fig. 2. Limnotrachelobdella okae, 61.2 in Limnotrachelobdella okae (Hirudinida: Piscicolidae) Parasitic on Big-scaled Redfin, Pseudaspius hakonensis (Cypriniformes: Leuciscidae), in Two Brackish Water Lakes, Hokkaido, Japan
Fig. 2. Limnotrachelobdella okae, 61.2 mm total length in 70% ethanol. NSMT-An 1880, from big-scaled redfin, Pseudaspius hakonensis, from Lake Abashiri, Hokkaido, Japan. A, fresh specimen, dorsal view; B and C, ethanol-preserved specimen, dorsal and ventral views, respectively. Abbreviations: cs, caudal sucker; os, oral sucker; t, trachelosome; u, urosome. Each position of pulsatile vesicles 1–13 is indicated by an Arabic numeral. Scale bars: A–C, 10 mm.
Figure 3 in Intraspecific variation in Gyrodactylus mediotorus and G. crysoleucas (Gyrodactylidae) from Nearctic shiners (Leuciscidae): evidence for ongoing speciation, host-switching, and parasite translocation
Figure 3. Bayesian inference (BI) phylogram of Gyrodactylus spp. parasitizing Nearctic Cypriniformes based on sequences of the ITS regions (927 bp). Values above branches indicate posterior probabilities (PP) from BI analyses and bootstrap support (BS) from ML. Values below 0.80 (BI) and 70 (ML) are shown as dashes.
Figure 2 in Intraspecific variation in Gyrodactylus mediotorus and G. crysoleucas (Gyrodactylidae) from Nearctic shiners (Leuciscidae): evidence for ongoing speciation, host-switching, and parasite translocation
Figure 2. Photomicrographs (A–C) and line drawings (B–D) of Gyrodactylus mediotorus King, Marcogliese, Forest, McLaughlin and Bentzen, 2013 from the blacktail shiner, Cyprinella venusta (A–B) and from the sand shiner, Notropis cf. stramineus (Guadalupe River) (C–D).
Figure 1 in Intraspecific variation in Gyrodactylus mediotorus and G. crysoleucas (Gyrodactylidae) from Nearctic shiners (Leuciscidae): evidence for ongoing speciation, host-switching, and parasite translocation
Figure 1. Photomicrographs (A) and line drawings (B) of Gyrodactylus crysoleucas from the blacktail shiner, Cyprinella venusta.
Fig. 2. A in Novel data support validity of Phoxinus chrysoprasius (Pallas, 1814) (Actinopterygii, Leuciscidae)
Fig. 2. A haplotype network based on cytochrome oxidase I (CO1) fragment using 112 previously published GenBank sequences and representing 20 genetic clades numbered as in Palandačić et al. (2017, 2020), of which 12 are considered valid species including P. chrysoprasius (Pallas, 1814) and Kuban' Phoxinus (an available species name not known). The lines carry the number of mutational steps (shown in red).
Fig. 1 in Novel data support validity of Phoxinus chrysoprasius (Pallas, 1814) (Actinopterygii, Leuciscidae)
Fig. 1. Map of the localities of Phoxinus Agassiz, 1835 in river drainages of the northern and north-eastern coasts of the Black Sea and the Caspian Sea based on numerous published sources (references available in Supp. file 1) and public museum collections (Museum of Zoology, National Museum of Natural History, Kyiv, Ukraine; Natural History Museum, Vienna, Austria; Zoological Research Museum Alexander Koenig, Bonn, Germany). Coloured circles and numbers correspond to genetically examined individuals of clades specified in Palandačić et al. (2017, 2020): yellow circle = P. marsilii, Clade 9; black circles = 'Baltic Phoxinus', Clade 17; grey circles = P. colchicus, Clade 18; purple circle = 'Kuban Phoxinus', Clade 19; pink circle = 'Crimean Phoxinus', Clade 20.
Fig. 4 in Novel data support validity of Phoxinus chrysoprasius (Pallas, 1814) (Actinopterygii, Leuciscidae)
Fig. 4. DFA based on 11 counts, two coded characters, and 55 relative measurements, for males and females separately (A) and for females only (B). Numbers of samples or clades as in Fig. 3. Abbreviations: f = females; m = males. DFA statistics values: A. Wilks' Lambda 0.00000, approx. F (156.189) = 11.390, p <0.0000. B. Wilks' Lambda 0.00002, approx. F (48.48) = 36.279, p <0.0000 (perfect discrimination).
Fig. 3 in Novel data support validity of Phoxinus chrysoprasius (Pallas, 1814) (Actinopterygii, Leuciscidae)
Fig. 3. DFA based on 11 counts and 2 coded characters as in Supp. file 4. Clade 5 = 5a, Danubian tributaries in Bulgaria (Nishava, Beli Vit, and Palakaria samples and P. csikii Hankó, 1922 from type locality). Clade 14 = non-Danubian rivers of the Black Sea coast in Bulgaria (14a, Izvorska, Veleka, Karaagach and Kamchiya) and Turkey (14b, Gönen and Sapanca). Clade 9 = P. marsilii Heckel, 1836. Clade 20 = Crimea, Salhir. DFA statistics values: Wilks' Lambda 0.16694, approx. F (45.1345) = 14.709, p <0.0000 (perfect discrimination).
Fig. 5. A in Novel data support validity of Phoxinus chrysoprasius (Pallas, 1814) (Actinopterygii, Leuciscidae)
Fig. 5. A. Neotype of Phoxinus chrysoprasius (Pallas, 1814), ♂ (ZFMK 93640-59). B. ♀ (ZFMK 93640- 59), 87.2 mm SL, same locality and date as the neotype.
Data from: Limited evidence for extensive genetic differentiation between X and Y chromosomes in Hybognathus amarus (Cypriniformes:Leuciscidae)
<p>We used Nextera-tagmented reductively amplified DNA (nextRAD) sequencing data to discover SNPs in Rio Grande silvery minnow samples of known and unknown sex; and we produced two contig level genomes from<span> Nanopore long-read sequencing. </span><span>Raw NextRAD was aligned to each of the genomes. </span><span>Subsequent SNP calling and filtering were repeated independently to obtain two datasets, one using the female genome as reference (female-referenced dataset) and another using the male genome (male-referenced dataset). The SNP calling identified 4.46 M raw variants in female-referenced dataset and of these 16,714 biallelic SNPs were retained after all filtering steps. For this set of SNPs, the average depth of coverage for the retained 64 females was 35.81 (ranging from 8.94 to 86.88) and 33.14 for the retained 53 males (ranging from 18.93 to 65.56). When using the male genome as reference we obtained 3.77 M raw variants and 17,920 biallelic SNPs. In this case the average depth of coverage for the same 64 females was 36.01 (ranging from 8.99 to 87.34) and for the same 53 males was 33.36 (ranging from 19.23 to 66.27).</span></p>
Data from: Limited evidence for extensive genetic differentiation between X and Y chromosomes in Hybognathus amarus (Cypriniformes:Leuciscidae)
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FIGURE 1 in Spirlins of the southern Black Sea basin, with the description of a new species (Teleostei: Leuciscidae)
FIGURE 1. Site scale records of Alburnoides species in the southern Marmara and Black Sea basins based on materials examined in this study and additional records listed by Turan et al. (2017a, 2019).
FIGURE 3 in Morphological and mtDNA data reveal broader distribution of Alburnoides holciki (Teleostei: Leuciscidae) in inland waters of Central Asia
FIGURE 3. BI consensus tree based on the COI barcode gene fragment of A. holciki and allies. Numbers at nodes represent Bayesian posterior probabilities/bootstrap values. Scale bar represents the number of substitutions per site.
FIGURE 2 in Morphological and mtDNA data reveal broader distribution of Alburnoides holciki (Teleostei: Leuciscidae) in inland waters of Central Asia
FIGURE 2. Variation in body shape and coloration among individuals of A. holciki from the Amu Darya basin: A) Vakhsh River; B) Kafirnigan River; C) Zeravshan River. All individuals were COI barcoded. Scale bar is 10 mm.
FIGURE 1 in Alburnus nasreddini, a synonym of A. escherichii (Teleostei: Leuciscidae)
FIGURE 1. Records of Alburnus escherichii based on materials examined and additional records listed.
FIGURE 5 in Alburnus nasreddini, a synonym of A. escherichii (Teleostei: Leuciscidae)
FIGURE 5. Habitats of Alburnus escherichii, from top: stream Refahiye, Yeşilırmak drainage; stream Deliköyboğazı Lake Ilgın basin; stream Eymir, Sakarya drainage; stream Eylikler, Lake Beyşehir basin.
FIGURE 3 in Alburnus nasreddini, a synonym of A. escherichii (Teleostei: Leuciscidae)
FIGURE 3. Alburnoides nasreddini: a. FFR 04641 100 mm SL; stream Deliköyboğazı, Lake Çavuşlu (Ilgın) basin; b. FSJF 1911, 90 mm SL; stream at Ortaköy, Lake Akşehir basin.
Supplementary material 3 from: Artaev ON, Turbanov IS, Bolotovskiy AA, Gandlin AA, Levin BA (2024) Taxonomic revision of Phoxinus minnows (Leuciscidae) from Caucasus, with description of a new narrow-ranged endemic species. Zoosystematics and Evolution 100(1): 291-308. https://doi.org/10.3897/zse.100.115696
Meristic and qualitative characters of Phoxinus adagumicus sp. nov., P. chrysoprasius, P. colchicus and other Phoxinus species published in the literature
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