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963 results for “Gobies”
FIGURE 32 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 32. Ponticola patimari. Massuleh River, Gilan Province, Iran (Zarei et al. 2021).
FIGURE 31 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 31. Ponticola iranicus. Sefidroud at Imamzadehashem, Gilan Province, Iran.
FIGURE 29 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 29. Ponticola gorlap. Polroud River, Gilan Province, Iran (Zarei et al. 2022a).
FIGURE 25 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 25. Neogobius pallasi. Miankaleh, Mazandaran Province, Iran.
FIGURE 26 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 26. Ponticola cyrius. Kura River at Yalnýzçam, northeastern Turkey. Photo by C. Kaya.
FIGURE 24 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 24. Neogobius melanostomus. Off Anzali, Gilan Province, Iran.
FIGURE 20 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 20. Mesogobius nonultimus. ZM-CBSU S036-1, 126 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 19 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 19. Knipowitschia longecaudata. Off Anzali, Gilan Province, Iran.
FIGURE 14 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 14. Benthophilus pinchuki. ZM-CBSU S005-1, 61.1 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 10 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 10. Benthophilus granulosus. ZM-CBSU S006-1, 33.3 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 3 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 3. Endemic, native, and exotic gobiid species of the South Caspian Sea sub-basin.
FIGURE 23 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 23. Neogobius caspius. Talar, Babolsar, Mazandaran Province, Iran (Zarei et al. 2021).
FIGURE 4 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 4. Number of gobiid species from the South Caspian Sea sub-basin in each ecological group.
FIGURE 12 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 12. Benthophilus leobergius. ZM-CBSU S037-1, 64.2 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 2 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 2. Species richness of gobiid genera in the South Caspian Sea sub-basin.
FIGURE 9 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 9. Benthophilus baeri. ZM-CBSU S002-14, 54.8 mm SL; Off Anzali, Gilan Province, Iran.
Figure 2 from: Murase A, Inui R, Miki R, Miyazaki Y (2017) Revising the distribution of a threatened goby, Apocryptodon punctatus (Perciformes, Oxudercidae), in Japan with the discovery of an isolated population. ZooKeys 645: 71-83. https://doi.org/10.3897/zookeys.645.10755
Figure 2 - Distribution map of Apocryptodon punctatus in Japanese waters. Solid star indicates the present record from Kushima City, Miyazaki Prefecture, Kyushu; solid circles, records with voucher specimens deposited in a museum; gray circle, records with additional museum specimens in the present study; open circles, records with uncatalogued specimens; solid triangle, photo record; open triangles, literature records without a voucher.
Figure 1 from: Murase A, Inui R, Miki R, Miyazaki Y (2017) Revising the distribution of a threatened goby, Apocryptodon punctatus (Perciformes, Oxudercidae), in Japan with the discovery of an isolated population. ZooKeys 645: 71-83. https://doi.org/10.3897/zookeys.645.10755
Figure 1 - Lateral view of a fresh specimen of Apocryptodon punctatus, KPM-NI 40559, 35.6 mm SL, collected from a mudflat estuary of Kushima City, Miyazaki Prefecture, Kyushu, Southern Japan. Top, photo number KPM-NR 166540B; bottom, photo number KPM-NR 166540A.
Figure 5 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 5 Results of quantitative samplings in rockpools at four sites on the eastern coast of Kyushu, southern Japan. Solid bars and plots show mean density (error bars indicating standard error) and occurrence rates of each species of Chaenogobius (upper, C. annularis; lower, C. gulosus) at each site in the two seasons (left, spring; right, autumn) respectively. Abbreviations of the sites on the x-axis are as follows: Ot, Oita; N-My, N-Miyazaki, S-My, S-Miyazaki; TnI, Tanega-shima (these locality names correspond to those used in Fig. 3). Sample sizes, n = 5, except for Tanega-shima in autumn (n = 8).
Figure 4 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 4 Records (circles and a triangle) of Chaenogobius annularis (left) and C. gulosus (right) in south-east Kyushu, southern Japan, based on the examination of museum specimens (qualitative survey). A triangle indicating occurrence of C. gulosus in Tanega-shima Island by possible human-induced transportation.
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