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Fig. 2 in Investigation of Ichthyophthirius multifiliis infection in fish from natural water bodies in the Lhasa and Nagqu regions of Tibet

Fig. 2. Pairwise comparisons of locality. Localities: BZ, Boqu Zangbo (river); CEL, Cuoe lake; CNL, Cuona lake; CW, Chabalang Wetland; LR, Lhasa River; LW, Lalu Wetland; SL, Selincuo Lake ZZ, Za'gya Zangbo (river). *: Indicates a significant difference between location 1 and location 2.

opencc-by-4.0Apr 2024View details →
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Fig. 1 in Investigation of Ichthyophthirius multifiliis infection in fish from natural water bodies in the Lhasa and Nagqu regions of Tibet

Fig. 1. The map shows the sampling locations of fish in Tibet: 1. North shore of Selincuo (89.112679E, 32.102116N, 4558 m altitude); 2. Za'gya Zangbo (river) (90.723403E, 32.437662N, 5060 m altitude); 3. Boqu Zangbo (river) (89.292002E, 31.606048N, 4579 m altitude); 4. Boqu estuary (89.354410E, 31.762732N, 4554 m altitude); 5. Cuona lake (91.547087E, 32.012987N, 4726 m altitude); 6. Cuoe lake (91.545788E, 31.474142N, 4541 m altitude); 7. Lalu Wetland (91.099541E, 29.668837N, 4989 m altitude); 8. Chabalang Wetland (90.832207E, 29.380565N, 3590 m altitude).

opencc-by-4.0Apr 2024View details →
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F I G U R E 4 in Length-weight relationships of 55 mesopelagic fishes from the eastern tropical North Atlantic: Across- and within-species variation (body shape, growth stanza, condition factor)

F I G U R E 4 Distribution of form factor a3.0 for 55 mesopelagic species related to (a) body shape, (b) taxonomic family and (c) species. Form factor calculated from Equation 2 using across-species slope of S = 1.358 based on 1223 fish species presented in equation 17 in Froese (2006)

opencc-by-4.0May 2022View details →
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F I G U R E 3 in Length-weight relationships of 55 mesopelagic fishes from the eastern tropical North Atlantic: Across- and within-species variation (body shape, growth stanza, condition factor)

F I G U R E 3 Scatter plot of mean log a (SL) over mean b for 55 mesopelagic species with information on body shape. Body shape:, elongated;, fusiform;, short-deep

opencc-by-4.0May 2022View details →
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F I G U R E 2 in Length-weight relationships of 55 mesopelagic fishes from the eastern tropical North Atlantic: Across- and within-species variation (body shape, growth stanza, condition factor)

F I G U R E 2 Frequency distribution of (a) mean log a (binwidth 0.2) and (b) mean exponent b (binwidth 0.1) based on 55 records (measured in centimetres and grams) of mesopelagic species of the eastern tropical North Atlantic during cruise WH383

opencc-by-4.0May 2022View details →
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F I G U R E 2 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra

F I G U R E 2 Comparative morphological overview and lateral line system. (a) Main morphological characteristics of head region of (a) G. adriatica sp. nov. (PMR VP4618 – Holotype), (b) G. orientalis sp. nov. (PMR VP4585 – Holotype), (c) G. hofrichteri sp. nov. (PMR VP4595 – Holotype) and (d) G. pigra (Nardo 1827) (PMR VP3529 – Neotype). (e) Position of pores (bold) and neuromasts (italic) shown on the example of G. willdenowi (Risso 1810) (PMR VP4574 – Neotype) and the main morphological characteristics in the head region of this species. (f) Longitudinal infralateral and suborbital transversal rows of superficial neuromasts can be placed on the well-defined bottom of a deep (+) or shallow (–) groove. U, upper opercular tip; Abbreviations: L, lower opercular tip; SR, supralabial row; NR, nasal row; LIR, longitudinal infralateral; STR, suborbital transversal row; POR, postorbital transversal row; PTR, preopercular transversal row; SLR, subopercular longitudinal row; MR, mandibular row; AVR, anterior ventral row; PVR, posterior ventral row; ADR, anterior dorsal row; PDR, posterior dorsal row; HR, hyomandibular row; SR1, supraopercular row; SR2, suprapectoral row; DLR, dorsolateral longitudinal row; VLR, ventrolateral longitudinal row. Photographs by M. Wagner and M. Kovacˇic

opencc-by-4.0Nov 2020View details →
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Figure 14 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 14. Caudal vertebrae and caudal skeleton of Tharsis dubius (JME-SOS 02633) in lateral view. Note the polyural condition of ural centra U1 to U6. Arrows point to the dorsal processes of caudal fin rays. Note that the dorsal processes have additional elongate processes. Abbreviations are as follows: an.p, anterior process; d.scu, piece of dorsal scute; E1–3, epural 1–3; H1–3, hypurals 1–3; nsPU2, 1, neural spine of preural centrum 2, 1; PH, parhypural; PU4, 1, preural centrum 4, 1; UN1, 5, uroneural 1, 5.

opencc-by-4.0Jan 2019View details →
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Figure 12 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 12. Hypothesis of phylogenetic relationships of the Late Jurassic Ascalabos, Ebertichthys and Tharsis among the most primitive teleosts (Tharsis elleri n. sp. highlighted in bold). Synapomorphies supporting the main nodes are listed below; for a complete list see Arratia (2017: 114–118). Uniquely derived characters are identified with an asterisk (∗). See Supplement S1 for descriptions of characters listed below. Node A (Teleosteomorpha or total-group teleost): 13[0]∗, 24[1], 29[1], 45[0]∗, 56[1], 62[1], 104[0]∗, 123[1], 124[1], 128[1], 136[1], 143[1], 145[1], 162[1]∗, 171[1], 187[1], 190[1]∗, 191[1]∗, 194[1] and 195[1]∗. Characters 190–192, 194 and 195 are soft anatomical features that are unknown in fossils, but the parsimony analysis predicts that they were present at this phylogenetic level. Node B: 26[1], 30[1], 39[1], 59[1∗], 61[1], 87[1], 89[1], 107[1], 114[1], 126[1], 142[1], 152[1] and 167[1]. Node C (Teleostei- or apomorphy-based group): 3[1], 11[1], 23[2], 53[1], 70[1], 71[1], 73[1], 77[2], 78[1], 115[1], 173[2] and 178[1]. Node C1 (Pholidophoriformes): 2[1], 7[1], 23[1], 124[0], 125[1]∗, 129[1] and 165[1]. Node C2 (Pholidophoridae): 1[1]∗, 3[2], 11[0], 20[1], 26[0], 27[1], 77[1], 88[0], 89[0], 111[0], 114[0], 115[0], 133[1], 142[0] and 152[0].Node D: 16[1]∗, 86[1]∗, 87[2], 91[1], 123[3], 149[1], 151[1], 167[0], 171[0] and 187[0]. Node E: 23[0], 26[0], 30[0], 47[1], 75[1], 76[1]∗, 127[1], 173[3] and 175[2]. Node F: 11[0], 67[2], 72[1], 74[1]∗, 119[1]∗ and 133[1]. Node G: 8[2], 28[1], 35[1], 56[2], 92[1]∗, 107[3]∗, 108[1]∗, 109[1]∗, 116[1]∗, 121[1], 122[2], 130[1], 132[1], 138[1], 140[1], 141[1], 144[1], 147[1], 160[1], 164[1], 170[2], 174[1]∗, 177[1], 180[1], 181[2] and 188[1]. Node H: 22[1], 30[1], 33[1], 34[1], 35[2], 37[1], 53[3], 55[1], 78[0], 108[2]∗, 109[2]∗, 110[1]∗, 142[0], 165[1], 168[2] and 176[1]. Node H1 (Ascalaboidae): 112[1]∗, 133[0] and 135[1]. Node H2 (Ebertichthys + Ascalabos): 44[1], 65[1]∗, 103[1], 105[1]∗, 118[1]∗, 128[0] and 164[0]. Node H3 (Tharsis dubius Tharsis elleri): 41[1], 48[1], 72[0], + 154[1], 168[1], 196[1]∗, 197[1]∗ and 198[1]∗. Node I: 36[1], 38[1], 129[1], 161[1], 163[1] and 166[1]. Node J (Varasichthyidae): 94[1]∗, 95[1], 120[1], 122[1], 154[1], 167[1], 173[2], 182[1]∗ and 183[1]∗. Node J1: 141[0], 142[1], 144[0] and 146[1]. Node J2: 30[0], 145[0], 152[3], 154[0] and 155[1]. Node K (crown-group Teleostei): 41[1], 71[0], 73[0], 117[1], 134[2]∗, 152[3], 156[1], 175[0] and 177[0]. Node L (elopomorphs): 30[0], 57[1]∗, 62[0], 148[1]∗, 153[1], 155[1] and 177[2]. Node L1: 70[0], 142[1] and 144[1]. Node M (osteoglossomorphs): 8[0], 36[0], 43[1], 46[1]∗, 48[1], 49[1], 55[2], 56[0], 67[1], 83[1]∗, 100[1], 103[1], 128[0], 136[0], 143[0], 149[2] and 173[0]. Node N: 30[2] and 32[1]∗.

opencc-by-4.0Jan 2019View details →
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Figure 11. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 11. Tharsis elleri n. sp. Cycloid scale from the caudal peduncle of the holotype JME-SOS 08326.

opencc-by-4.0Jan 2019View details →
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Figure 13 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 13. Tharsis dubius in lateral view. (a) Restoration of skull (NHM P.51759). (b) Caudal skeleton (NHM P.927), showing only the proximal region of hypurals interpreted here as 6 to 9. Two black arrows point to the dorsal processes of principal caudal fin rays. Slightly modified from Patterson and Rosen (1977). Abbreviations are as follows: ang, angular; de, dentary; d.scu, dorsal scute; dsp, dermosphenotic; E1–3, epural 1–3; ebfu, epaxial basal fulcra; ffr, fringing fulcrum; H1–3, hypurals 1–3; H9?, hypural 9?; hsPU2, haemal spine of preural centrum 2; io1–4, infraorbitals 1–4; iop, interopercle; met, mesethmoid; mx, maxilla; na, nasal bone; nsPU2, neural spine of preural centrum 2; op, opercle; pa (fr), parietal (frontal); par, parasphenoid; PH, parhypural; pmx, premaxilla; pop, preopercle; ppa (pa), postparietal (parietal); PU4, 1, preural centrum 4, 1; PR1, 10, principal caudal ray 1, 10; pt, pterotic, qu, quadrate; smx1–2, supramaxillae 1–2; sob, supraorbital bone; soc, supraoccipital; sop, subopercle; UN1–7, uroneural 1–7.

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Figure 10. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 10. Tharsis elleri n. sp. Caudal endoskeleton and tail in lateral view of the holotype JME-SOS 08326. (a) Photograph of the posterior part of the body of the specimen under UV light. Scale bar equals 5 mm. (b) Drawing of the caudal skeleton. Arrow points to the hypurapophysis. Abbreviations are as follows: d.H, displaced hypural; d.UN, displaced uroneural; H1–4, hypurals 1–4; hsPU2, haemal spine of preural centrum 2; nsPU2, neural spines of preural centrum 2; PH, parhypural; pr.c, procurrent ray; PU1, 4, preural centra 1, 4; UN1–4, uroneurals 1–4; PR1–19, principal rays 1–19; v.csu, ventral caudal scute.

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Figure 8. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 8. Tharsis elleri n. sp. (a) First dorsal pterygiophore of the holotype JME-SOS 08326. (b) First dorsal pterygiophore and associated bones of Ebertichthys ettlingensis (modified from Arratia, 2016). Abbreviations are as follows: 1std.pt, first dorsal pterygiophore; ANT, anterior direction; pr.dr, dorsal procurrent rays; sn, supraneurals.

opencc-by-4.0Jan 2019View details →
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Figure 9 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 9. Caudal endoskeleton and tail in lateral view of the holotype JME-SOS 08326. (a) Photograph of the posterior part of the body of the specimen under UV light. (b) Drawing of the caudal skeleton. The white arrow points to the hypurapophysis; the two black arrows point to the dorsal processes of principal caudal fin rays. Abbreviations are as follows: d.scu, dorsal caudal scute; E1–3, epural 1–3; ebfu, epaxial basal fulcra; ffu, fringing fulcrum; H1–2, hypurals 1–2; hbfu?, hypaxial basal fulcra?; hsPU2, haemal spine of preural centrum 4; nsPU, neural spines of preural centrum 2; PH, parhypural; prp, procurrent ray; PU1, 4, preural centra 1, 4; "UD", "urodermal"; UN1–4, uroneurals 1–4; PR1–19, principal rays 1–19; v.csu, ventral caudal scute.

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Figure 7. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 7. Tharsis elleri n. sp. (a) Section of the abdominal region of the vertebral column of the paratype JME-SOS 08367 illustrating the parapophyses (arrows) fused to their respective centrum. Scale bar equals 5 mm. (b) Abdominal vertebrae of Tharsis dubius (JME-SOS 02633) illustrating the autogenous condition of the parapophysis. Abbreviations are as follows: epin.p, epineural process; na, neural arch; ns, neural spine; paph, parapophysis; ri, rib; vc, vertebral centrum.

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Figure 6. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 6. Tharsis elleri n. sp. Details of the middle body region and of certain vertebrae. (a) Limit between abdominal and caudal regions in the holotype JME-SOS 08326 under UV light, dorsal and pelvic fins, and intestine. Scale bar is 5 mm. (b) Line drawing of vertebral region illustrated in (a). The arrows in (a) and (b) mark the same rib. (c) Line drawing of similar vertebral region in the paratype (JME-SOS 08367). Abbreviations are as follows: 1st.dpt, first dorsal pterygiophore; a.pt, remains of anal pterygiophore; d.f, dorsal fin; epin.p, epineural process; ha, haemal arch; hs, haemal spine; na, neural arch; ns, neural spine; paph, parapophyses; pel.f, pelvic fin; pel.p, pelvic plate; ri, rib; vc, vertebral centra.

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Figure 5. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 5. Tharsis elleri n. sp. Drawing of the partially preserved sclerotic bones in the paratype JME-SOS 08367. An arrow points to the ventral contact between anterior and posterior sclerotic bones.

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Figure 2. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 2. Tharsis elleri n. sp. in lateral view. (a) Holotype JME-SOS 08326 under normal light. (b) Holotype JM-SOS 08326 under UV light. (c) Paratype JME-SOS 08367 under normal light. (d) Paratype JME-SOS 08367 under UV light. Scale bars equal 1 cm.

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Figure 3 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 3. Photographs of the head of Tharsis elleri n. sp. under UV light. (a) Holotype (JME-SOS 08326). (b) Paratype (JME-SOS 08367). Scale bars equal 1 cm. Abbreviations are as follows: ang, angular; asp, autosphenotic; br.r, branchiostegal ray; cl, cleithrum; cor, coracoid; de, dentary; exc, extrascapula; hy, hyomandibula; io1–4, infraorbitals 1–4; iop, interopercle; lat.e, lateral ethmoid; met, mesethmoid; mtg?, metapterygoid; mx, maxilla; op, opercle; pa (fr), parietal bone (frontal); par, parasphenoid; p.f, pectoral fin; p. ax?, pectoral axillary process?; pop, preopercle; ppa (pa), postparietal bone (parietal); pmx, premaxilla; p.ra, pectoral radial; pt, pterotic; ptt, posttemporal; ptt.f, posttemporal fossa; qu, quadrate; ri, rib; scl, supracleithrum; scl.b, sclerotic bones; smx1–2, supramaxillae 1–2; sob, supraorbital bone; soc, supraoccipital; sop, subopercle; sy, symplectic, vc, vertebral centrum.

opencc-by-4.0Jan 2019View details →
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Figure 1 in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 1. Distribution of plattenkalk basins and reef areas in the southern Franconian Jura during the early Tithonian (modified from Viohl, 1996 with the addition of new localities). The new fish described herein was recovered in the Wegscheid Quarry, near Schernfeld.

opencc-by-4.0Jan 2019View details →
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Figure 4. Tharsis elleri n in On a remarkable new species of Tharsis, a Late Jurassic teleostean fish from southern Germany: its morphology and phylogenetic relationships

Figure 4. Tharsis elleri n. sp. Drawing of head bones in lateral view (JME-SOS 08326) based on specimen under normal light. Abbreviations are as follows: ang, angular; asp, autosphenotic; br.r, branchiostegal ray; cl, cleithrum; cor, coracoid; de, dentary; exc, extrascapula; iop, interopercle;, hy hyomandibula; io1–4, infraorbitals 1–4; met, mesethmoid; mx, maxilla; op, opercle; pa (fr), parietal (frontal); par, parasphenoid; pmx, premaxilla; pop, preopercle; pt, pterotic; qu, quadrate; ra, pectoral radial; scl, supracleithrum; scl.b, sclerotic bone; smx1–2, supramaxillae 1–2; sob, supraorbital; sop, subopercle;?, unidentified bone.

opencc-by-4.0Jan 2019View details →

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