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22 results for “Merlucciidae”

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Figure 3 in Merluccius polli and M. senegalensis (Merlucciidae) as first records from the Canary Islands (north-eastern Atlantic), with morphology data

Figure 3. – Radiographs of M. senegalensis from the Canary Islands (TFMCBM-VP/01449, adult, 804 mm TL). Insert: Detail of five cervical vertebrae.

opencc-by-4.0Dec 2020View details →
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Figure 2 in Merluccius polli and M. senegalensis (Merlucciidae) as first records from the Canary Islands (north-eastern Atlantic), with morphology data

Figure 2. – Radiographs of M. polli from the Canary Islands (TFMCBM-VP/01952, maturing female, 624 mm TL). Insert: Detail of five cervical vertebrae.

opencc-by-4.0Dec 2020View details →
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Figure 1 in Merluccius polli and M. senegalensis (Merlucciidae) as first records from the Canary Islands (north-eastern Atlantic), with morphology data

Figure 1. – The Canary Islands. Collection locations for the first records. Ì: Merluccius polli; ■: Merluccius senegalensis.

opencc-by-4.0Dec 2020View details →
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Fig. 1 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 1. Merluccius hubbsi: area of collection of samples obtained during surveys and the operations of the commercial fishing fleet of Santos and Guarujá in the period from 1996 to 2002.

opencc-by-4.0Sep 2006View details →
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Fig. 10 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 10. Merluccius hubbsi: relative frequency of females by stage of gonadal maturation identified microscopically by class of total lenght (n = 326).

opencc-by-4.0Sep 2006View details →
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Fig. 2 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 2. Merluccius hubbsi: relative frequency of females by stage of gonadal maturation identified macroscopically by class of total lenght (n = 326).

opencc-by-4.0Sep 2006View details →
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Fig. 6 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 6. Merluccius hubbsi: oocyte with complete vitellogenesis (1.5mm length field).

opencc-by-4.0Sep 2006View details →
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Fig. 4 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 4. Merluccius hubbsi: oocyte in cortical alveolar stage (arrow) (1.5mm length field).

opencc-by-4.0Sep 2006View details →
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Fig. 3 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 3. Merluccius hubbsi: oocyte in perinucleolar stage (center) (0.16mm length field).

opencc-by-4.0Sep 2006View details →
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Fig. 8 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 8. Merluccius hubbsi: postovulatory follicle (arrow) (1.5mm length field).

opencc-by-4.0Sep 2006View details →
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Fig. 7 in Identification of the stages of ovarian maturation of the Argentine hake Merluccius hubbsi Marini, 1933 (Teleostei: Merlucciidae): advantages and disadvantages of the use of the macroscopic and microscopic scales

Fig. 7. Merluccius hubbsi: oocyte with nuclear migration (1.5mm length field).

opencc-by-4.0Sep 2006View details →
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FIGURES 13–15 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURES 13–15. Line drawings of Palliatus magellanicus n. sp. 13. Disporic sporoblast, stained with Indian ink. 14. Developing sporoblast, with deeply staining cords arrowed. 15. Spore stained with Giemsa. Scale bar: 10μm.

opennotspecifiedDec 2013View details →
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FIGURE 8–10 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURE 8–10. Line drawings of Myxidium baueri. 8. Spore unstained, valvular view. 9. Spore unstained, sutural view. 10. Spore, valvular view, stained with Giemsa. Scale bar: 5μm.

opennotspecifiedDec 2013View details →
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FIGURE 7 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURE 7. Maximum Parsimony tree of 18S rDNA sequences from Pseudalataspora kovalevae (in bold) and most closely related myxosporean species as determined by BLAST analysis. Cystodiscus melleni (syn. Myxidium melleni) was chosen as the outgroup. Bootstrap values indicating ≥ than 50% support for Maximum Parsimony and Maximum Likelihood analyses are shown. Host species and geographical location from which parasites were isolated are listed.

opennotspecifiedDec 2013View details →
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FIGURE 6. Pseudalataspora kovalevae n in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURE 6. Pseudalataspora kovalevae n. sp. Fresh spores under Nomarski interference-contrast illumination. Scale bar: 10μm.

opennotspecifiedDec 2013View details →
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FIGURE 12 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURE 12. Maximum Parsimony tree of 18S rRNA gene sequences from Myxidium baueri (in bold) and most closely related myxosporean species as determined by BLAST analysis. Tetracapsuloides bryosalmonae was chosen as the outgroup. Bootstrap values indicating ≥ than 50% support for Maximum Parsimony and Maximum Likelihood analyses are shown. Host species and geographical location from which parasites were isolated are listed.

opennotspecifiedDec 2013View details →
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FIGURES 1–5 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURES 1–5. Line drawings of Pseudalataspora kovalevae n. sp. 1. Disporic sporoblast, unstained. Scale bar: 10 μm. 2, 3. Spores, unstained. Scale bar: 5μm. 4, 5. Spores stained with Giemsa. Scale bar: 5μm.

opennotspecifiedDec 2013View details →
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FIGURE 11 in Two new species of myxosporean parasites (Myxosporea: Bivalvulida) from gall bladders of Macruronus magellanicus Lönnberg, 1907 (Teleostei: Merlucciidae)

FIGURE 11. Myxidium baueri. Fresh spore under Nomarski interference-contrast illumination. Scale bar: 10μm.

opennotspecifiedDec 2013View details →
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FIGURE 7 in Pseudalataspora vanderlingeni n. sp. (Myxosporea: Bivalvulida) from gall bladders of the Cape hakes Merluccius capensis Castelnau, and M. paradoxus Franca (Teleostei: Merlucciidae)

FIGURE 7. Maximum Likelihood consensus tree showing relationship of Pseudalataspora vanderlingeni (in bold), isolated from Merluccius capensis, to other Ceratomyza species, based on 18S rDNA sequence analysis. Bootstrap values indicating ≥ than 70% support for Maximum Likelihood and Maximum Parsimony analyses respectively are shown. Host species, geographical origin and accession numbers are listed after species names. 1myxosporean species also isolated from Archamia fucata; 2 also isolated from Cheilodipterus quinquelineatus/ Nectamia fusca/ Ostorhinchus cookii/ Apogon doederleini/; 3also isolated from Plectroglyphidodon leucozonus/ Chrysiptera cyanea/ Pomacentrus chrysurus/ Neoglyphidodon melas; 4 also isolated from Clupea harengus; 5also isolated from Aulopus filamentosus; 6also isolated from Aulopus filamentosus; 7also isolated from Aulopus filamentosus; 8myxosporean species isolated from monogenean Diplectanocotyla sp. on the gills of Megalops cyprinoides; 9also isolated from Belone belone.

opennotspecifiedOct 2018View details →
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FIGURE 1–5. FIGURE 1 in Pseudalataspora vanderlingeni n. sp. (Myxosporea: Bivalvulida) from gall bladders of the Cape hakes Merluccius capensis Castelnau, and M. paradoxus Franca (Teleostei: Merlucciidae)

FIGURE 1–5. FIGURE 1. Pseudalataspora vanderlingeni: unstained disporic sporoblast. FIGURE 2. Pseudalataspora vanderlingeni: unstained spore in anterior/sutural view. FIGURE 3 & 4. Pseudalataspora vanderlingeni: unstained spores in valvular view. FIGURE 5. Pseudalataspora vanderlingeni: spore stained with Giemsa in valvular view. Scale bar = 10 µm.

opennotspecifiedOct 2018View details →

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