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963 results for “Gobies”
Figure 3 from: Murase A, Miki R, Motomura H (2017) Southern limits of distribution of the intertidal gobies Chaenogobius annularis and C. gulosus support the existence of a biogeographic boundary in southern Japan (Teleostei, Perciformes, Gobiidae). ZooKeys 725: 79-95. https://doi.org/10.3897/zookeys.725.19952
Figure 3 Map showing the sampling sites in the present study (squares) and the site of a previous study (triangle, Yaku-shima Island: Murase 2013, 2015) for the quantitative survey in rock pools along the eastern coast of Kyushu, southern Japan.
Figure 1 from: Murase A, Miki R, Motomura H (2017) Southern limits of distribution of the intertidal gobies Chaenogobius annularis and C. gulosus support the existence of a biogeographic boundary in southern Japan (Teleostei, Perciformes, Gobiidae). ZooKeys 725: 79-95. https://doi.org/10.3897/zookeys.725.19952
Figure 1 Fresh specimens of the two species of Chaenogobius: A Chaenogobius annularis, KPM-NI 42850 (photo number, KPM-NR 179153), 52.7 mm SL, Nobeoka City, Miyazaki Prefecture B Chaenogobius gulosus, KPM-NI 42951 (KPM-NR 179221), 73.0 mm SL, Kadogawa Bay, Miyazaki Prefecture. Photos by A. Murase.
Figure 6 from: Murase A, Miki R, Motomura H (2017) Southern limits of distribution of the intertidal gobies Chaenogobius annularis and C. gulosus support the existence of a biogeographic boundary in southern Japan (Teleostei, Perciformes, Gobiidae). ZooKeys 725: 79-95. https://doi.org/10.3897/zookeys.725.19952
Figure 6 Images of juveniles of the two species of Chaenogobius on the coasts of Kyushu, southern Japan: A Chaenogobius annularis, fresh specimen, KPM-NI 42964 (photo number KPM-NR 179226), 17.6 mm SL, collected at rockpool environment in Usuki City, Oita Prefecture B Chaenogobius gulosus, fresh specimen, un-catalogued specimen (personal collection number, UMNB-I 3941), 19.2 mm SL, collected with seine net at a small beach in Totoro Port, Nobeoka City, Miyazaki Prefecture, April 2017 C Chaenogobius gulosus, swimming individuals in Tomioka Port, Reihoku Town, Amakusa, Kumamoto Prefecture, May 2017. Photos by A. Murase.
Figure 2 from: Murase A, Miki R, Motomura H (2017) Southern limits of distribution of the intertidal gobies Chaenogobius annularis and C. gulosus support the existence of a biogeographic boundary in southern Japan (Teleostei, Perciformes, Gobiidae). ZooKeys 725: 79-95. https://doi.org/10.3897/zookeys.725.19952
Figure 2 Conventional information on the distributional range of the two species of Chaenogobius (sensu Akihito et al. 2013 and Kwun et al. 2017) and a map of mainland Kyushu, southern Japan, showing the position of a long sandy shore on the eastern coast of Kyushu (a bold gray line on left-hand map). The grey-dash and solid lines on the Japanese Archipelago with adjacent areas (right-hand map) indicate the distributional range shared by the two species and that of only C. annularis respectively. Abbreviations for prefecture and island names mentioned in the text are as follows: Ot Oita Prefecture My Miyazaki Prefecture Kg Kagoshima Prefecture TnI Tanega-shima Island YkI Yaku-shima Island.
Fig. 1. A in Skull of a dromaeosaurid dinosaur Shri devi from the Upper Cretaceous of the Gobi Desert suggests convergence to the North American forms
Fig. 1. A. Map of Mongolia and Inner Mongolia of China with the Upper Cretaceous sites yielding remains of dromaeosaurid dinosaurs. B. Photograph of Khulsan locality, from where the specimen described in this paper was collected, photographed in the 1971 during the PolishMongolian Paleontological Expeditions (from the Collections of the Institute of Palaeobiology PAS). Geographic data from: Jerzykiewicz and Russell 1991; Jerzykiewicz et al. 1993; Norell and Makovicky 1999; Dingus et al. 2008; Godefroit et al. 2008; Watabe et al. 2010; Tsogtbaatar et al. 2019; Chen et al. 2022. Map modified from Czepiński 2020b. Transcriptions of the locality names follow Benton (2000).
Figure 3 in Accounting for variability in life-history traits for the definition of amphidromous goby fry fisheries closure periods
Figure 3. – Representation of the six to nine month fisheries closure periods ensuring that at least 50% and 75% of abundance and life history trait diversity for Sicyopterus lagocephalus and Cotylopus acutipinnis covered by the discontinuous and continuous alternatives. The months were those selected in the best ranked alternative in the MULTIMOORA analysis.
Figure 2 in Accounting for variability in life-history traits for the definition of amphidromous goby fry fisheries closure periods
Figure 2. – Proportion of the yearly abundance and variability of life-history traits of Sicyopterus lagocephalus (in purple) and Cotylopus acutipinnis (in yellow) covered by the best ranked alternatives (with a duration from five to 10 months) of the MULTIMOORA analysis. The best alternatives of discontinuous fisheries closure periods are displayed in panel A, the best alternatives of continuous periods in panel B.
Figure 4 in New distributional records of four amphidromous gobies (Gobioidei: Sicydiinae) in continental Vietnam
Figure 4. – Map showing approximate distributions of Stiphodon atropurpureus (deep-blue broken line), Stiphodon percnopterygionus (pink broken line), and Stiphodon multisquamus (green broken line) known to date and their newly discovered habitat in central Vietnam (red circle).
Figure 1 in New distributional records of four amphidromous gobies (Gobioidei: Sicydiinae) in continental Vietnam
Figure 1. – Photos from the field: (A) and (B) of typical habitats observed during surveys near Da Nang, Vietnam; and live individuals captured in the field: (C) Sicyopus zosterophorus (male), (D) Sicyopterus lagocephalus (male), (E) Stiphodon percnopterygionus (male), and (F) Stiphodon atropurpureus (top = male, bottom = female).
Figure 3 in New distributional records of four amphidromous gobies (Gobioidei: Sicydiinae) in continental Vietnam
Figure 3. – Map showing approximate distributions of Sicyopterus lagocephalus (sky-blue broken line) and Sicyopus zosterophorus (orange broken line) previously known and their newly discovered habitat in central Vietnam (red circle).
Figure 1 in First distributional record of the goby Mangarinus waterousi (Perciformes: Gobiidae) from Vellar estuary, southeast India
Figure 1. – Map showing sampling stations in the Vellar estuary (St-1–St-3) and Pazhayar fish landing centre, where Mangarinus waterousi was first recorded.
Figure 4 in First distributional record of the goby Mangarinus waterousi (Perciformes: Gobiidae) from Vellar estuary, southeast India
Figure 4. – Mangarinus waterousi, fresh specimen from Pazhayar fish land- tics were later able to be taken from those specimens, presently at ing, Tamil Nadu. Photo by H.K. Larson. Vivekananda College, Kanyakumari (Figs 3, 4). The description below is based on the seven specimens from the Vellar River estu- Table I. – Ranges and means of morphometric characteristics of the Manary and the morphometric and meristic details are given in tables I specimens from Vellar southeast India. garinus waterousi (n = 7) estuary, and II.
Figure 3 in First distributional record of the goby Mangarinus waterousi (Perciformes: Gobiidae) from Vellar estuary, southeast India
Figure 3. – Mangarinus waterousi, specimen from Pazhayar fish landing, Tamil Nadu. Photo by A. Murugan.
PLATE 5 in A new subspecies of Glabroculus elvira (Eversmann, 1854) (Lepidoptera, Lycaenidae) from the Dzhungarian Gobi desert, Mongolia
PLATE 5. Distribution of Glabroculus elvira Ev. in Mongolia and eastern Kazakhstan.
PLATE 7 in Two new taxa of Plebejus Kluk, 1780 (Lepidoptera, Lycaenidae) from the Gobi desert, Mongolia
PLATE 7. Distribution of Plebejus spp. in Mongolia and East Kazakhstan.
PLATE 6 in A new species of Neolycaena de Nicville, 1890 (Lepidoptera, Lycaenidae) from the Dzhungarian Gobi desert, Mongolia
PLATE 6. Distribution of Neolycaena spp. in Mongolia and East Kazakhstan.
PLATE 1 in A new species of Neolycaena de Nicville, 1890 (Lepidoptera, Lycaenidae) from the Dzhungarian Gobi desert, Mongolia
PLATE 1. Neolycaena spp., upperside.
PLATE 2 in A new species of Neolycaena de Nicville, 1890 (Lepidoptera, Lycaenidae) from the Dzhungarian Gobi desert, Mongolia
PLATE 2. Neolycaena spp., upperside.
Figure 3 in First record of the Western Greece goby - Economidichthys pygmaeus (Holly, 1929), in Greater Prespa Lake (Albania)
Figure 3. Length classes of 16 individuals of Economidichthys pygmaeus in the littoral zone of the Greater Prespa Lake (Albanian).
Linked collectors and determiners for: Redescription of the goby genus Gobiosoma (Teleostei: Gobiidae: Gobiosomatini), with the synonymy of the genus Enypnias.
Natural history specimen data linked to collectors and determiners held within, "Redescription of the goby genus Gobiosoma (Teleostei: Gobiidae: Gobiosomatini), with the synonymy of the genus Enypnias". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5a748e83-7595-48af-bba6-0e6954fcacd1">https://bionomia.net/dataset/5a748e83-7595-48af-bba6-0e6954fcacd1</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5a748e83-7595-48af-bba6-0e6954fcacd1">https://gbif.org/dataset/5a748e83-7595-48af-bba6-0e6954fcacd1</a>. Formatted as a Frictionless Data package.
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