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75 results for “Cyprinus”
FIGURE 11. A in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 11. A, drawing of ' Barbus (Tor) khudree', B, and 'Barbus (Tor) mussullah' from Hora (1943: pl. 1) (reproduced with kind permission of the Bombay Natural History Society); C, Tor khudree, ZSI/SRC uncat., 109 mm SL, Dhom Dam, Krishna River; D, Tor sp., ZSI/SRC uncat., 114 mm SL, Krishna River, Satara.
FIGURE 10. A in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 10. A, drawing of Barbus mussullah from Sykes (1841: pl. 61, fig. 4); B, adult Hypselobarbus canarensis (~ 350 mm SL), Netravati River, Karnataka (specimen not preserved).
FIGURE 7 in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 7: Map showing various collection localities of Hypselobarbus curmuca, H. canarensis and H. mussullah: A, Mula-Mutha River, Pune, Maharashtra; B, Holebagilu, Sharavathi River, Karnataka; C, Mylavaram Dam, Pennar River, Cuddapah, Andhra Pradesh; D, Vedavathi River, Holehoddu, Shimoga, Karnataka; E, Uppinangadi, Netravati River, Karnataka; F, Behinilae, Kumaradhara River, Karnataka; G, Thannikudy, Periyar River, Kerala; H, Pullikkayam, Kallar River, Kerala.
FIGURE 8. A in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 8. A, drawing of Barbus kolus from Sykes (1841: pl. 62, fig. 1); B, adult Hypselobarbus curmuca (~ 300 mm SL) from Tunga River, Karnataka (specimen not preserved).
FIGURE 4 in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 4. Hypselobarbus canarensis, (neotype) ZSI/SRC F 4003, 270 mm SL, Kumaradhara River, Dakshin Kanada.
FIGURE 2. Hypselobarbus curmuca, MKC 408, 145 in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 2. Hypselobarbus curmuca, MKC 408, 145 mm SL: A, first gill arch (inset shows gill-raker structure); B, fifth ceratobranchial. Hypselobarbus canarensis, ZSI/SRC F 8750, 185 mm SL: C, first gill arch (inset shows gill-raker structure); D, fifth ceratobranchial. Hypselobarbus mussullah, ZSI/SRC F 8752, 128 mm SL: E, first gill arch (inset shows gill-raker structure); F, fifth ceratobranchial. (Scale bar = 5mm)
FIGURE 6 in The erection of a new genus, Neotegorhynchus n. g. (Palaeacanthocephala Illiosentidae), with a redescription of Neotegorhynchus cyprini n. comb. from Cyprinus carpio from the Yangtze River basin, China
FIGURE 6. Phylogram of acanthocephalans infered with maximum likelihood basing on the concatenated COI and SSU rDNA. Numbers near the node indicate the bootstrap support for maximum likelihood analysis and the posterior probability Bayesian inference analysis.
FIGURE 5 in The erection of a new genus, Neotegorhynchus n. g. (Palaeacanthocephala Illiosentidae), with a redescription of Neotegorhynchus cyprini n. comb. from Cyprinus carpio from the Yangtze River basin, China
FIGURE 5. Phylogram of acanthocephalans infered with maximum likelihood basing on the COI data. Numbers near the node indicate the bootstrap support for maximum likelihood analysis and the posterior probability Bayesian inference analysis.
FIGURE 2 in The erection of a new genus, Neotegorhynchus n. g. (Palaeacanthocephala Illiosentidae), with a redescription of Neotegorhynchus cyprini n. comb. from Cyprinus carpio from the Yangtze River basin, China
FIGURE 2. Light microscope photographs of Neotegorhynchus cyprini comb. n. from Cyprinus carpio from China, A—a part of proboscis receptacle; B—posterior part of female; C—middle ventral hooks; D—middle dorsal hooks; E—copulation; F—basal hooks of proboscis and tegumental spines. Scale bars: A—200 μm; B, D, E—100 μm; C, F—500 μm.
FIGURE 2 in Morphological and molecular identification of Myxobolus parakoi sp. nov. (Myxozoa: Myxobolidae), from Cyprinus carpio in Chongqing China
FIGURE 2. ML and BI phylogenetic tree based on SSU rDNA sequences of Myxobolus/Henneguya closely related to Myxobolus parakoi sp. nov.. Numbers given at nodes of branches are bootstrap support (BS) and Bayesian posterior probabilities (PP). The new species in the present study is indicated in bold. The arrow points to the shape of the different spores. "//" is shortened to one third of the original length.
FIGURE 1 in Morphological and molecular identification of Myxobolus parakoi sp. nov. (Myxozoa: Myxobolidae), from Cyprinus carpio in Chongqing China
FIGURE 1. Mature spores of Myxobolus parakoi sp. nov.. (A) Single spore. (B) Multiple spores. (C) Schematic illustrations of Myxobolus parakoi sp. nov. in frontal view. Scale bar = 10 μm.
FIGURE S1 in Morphological and molecular identification of Myxobolus parakoi sp. nov. (Myxozoa: Myxobolidae), from Cyprinus carpio in Chongqing China
FIGURE S1. Regions of alignment of SSU rDNA gene sequences of M. koi, M. orissae, M. tanakai and Myxobolus parakoi sp. nov.. Matched sites are represented by dots. Regions are separated by vertical lines.
Receptor cavity-based screening reveals potential allosteric modulators of gonadotropin receptors in carp (Cyprinus carpio)
<p>The dataset include phase database consisting of prepared ligand used in screening of potential allosteric modulators for carp FSHR and LHR. the original dataset were sourced from The compound libraries from <a href="https://enamine.net/compound-libraries">https://enamine.net/compound-libraries</a> and are free to access and downloaded and used as per the mentioned sites terms and conditions the Datasets given here are processed databases constructed using the Phase module (Phase, Schrödinger, LLC, New York, NY, 2021.).</p>
Data from: Nuclear internal transcribed spacer-1 as a sensitive genetic marker for environmental DNA studies in common carp Cyprinus carpio
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Otolith and muscle stable isotope analyses to assess food-web interactions between threatened bigmouth buffalo (Ictiobus cyprinellus) and invasive common carp (Cyprinus carpio)
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Copper and zinc generated by the Aquascape IonGen pond clarifier system can be detrimental to koi (Cyprinus carpio) health
BackgroundCopper is frequently used as an algicide, and copper ion generators such as the Aquascape IonGen claim to be safe for use in systems containing fish. In 2012, a die-off of koi (Cyprinus carpio) in a pond in Raleigh, North Carolina, occurred after the IonGen was added to the system.MethodsPhysical and postmortem examinations suggested that heavy metal toxicity was the likely cause of morbidity and mortality. This was supported by a heavy metal screening of the owners' pond. Additional experiments were performed to determine if the IonGen produced toxic levels of copper and zinc.ResultsThe tank containing the IonGen had higher concentrations of copper and zinc, and copper levels exceeded those associated with toxicity in both hard and soft water.ConclusionThe results of this study indicate that ion generators might not be safe for fish, and copper should only be used as an algicide if concentrations are closely monitored.
FIGURE 9. Barbus kolus, AMS B.7518, 153 in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 9. Barbus kolus, AMS B.7518, 153 mm SL, F. Day, Deccan (as identified by F. Day).
FIGURE 3 in On the identities of Barbus mussullah Sykes and Cyprinus curmuca Hamilton with notes on the status of Gobio canarensis Jerdon (Teleostei: Cyprinidae)
FIGURE 3. Hypselobarbus curmuca, (neotype) ZSI/SRC F 8748, 145 mm SL, Tunga River.
Text-fig. 7. Maxillary (labial view) with maxillary foramen (arrows) from A – Cyprinus carpio (Cyprininae) showing the schematic reconstruction of the nervus trigeminus and the rostral barbel, B – Ctenopharyngodon idella (Xenocyprininae), C – Tinca tinca (Tincinae), (images not to scale). in Revision Of The Cyprinids From The Early Oligocene Of The České Středohoří Mountains, And The Phylogenetic Relationships Of Protothymallus Laube, 1901 (Teleostei, Cyprinidae, Gobioninae)
Text-fig. 7. Maxillary (labial view) with maxillary foramen (arrows) from A – Cyprinus carpio (Cyprininae) showing the schematic reconstruction of the nervus trigeminus and the rostral barbel, B – Ctenopharyngodon idella (Xenocyprininae), C – Tinca tinca (Tincinae), (images not to scale).
Copper and zinc generated by the Aquascape IonGen pond clarifier system can be detrimental to koi (Cyprinus carpio) health
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