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84 results for “Oman Sea”
FIGURE 4. A in Deep-water Thyasiridae (Mollusca: Bivalvia) from the Oman Margin, Arabian Sea, new species and examples of endemism and cosmopolitanism
FIGURE 4. A, Axinulus aff. croulinensis, Oman margin; B, Axinulus croulinensis Jeffreys, Loch Fyne, 40 m, Scotland, National Museum Wales; C, Axinulus undescribed, Gulf of Mexico, National Museum Wales; D, A. brevis Verrill & Bush, Rockall Trough, 1595 m, National Museum Wales; E–F, Mendicula aff. ferruginosa, Oman margin; G–H, Mendicula ferruginosa Forbes, Rockall Trough, 1595 m, National Museum Wales; I, Leptaxinus indusarium Oliver & Levin, holotype, National Museum Wales, NMWZ.2005.34.1.
FIGURE 1. A–E in Deep-water Thyasiridae (Mollusca: Bivalvia) from the Oman Margin, Arabian Sea, new species and examples of endemism and cosmopolitanism
FIGURE 1. A–E, Parathyasira bamberi sp. nov. Holotype: A–B, external and internal of the right valve; C–D, scanning electron micrographs of the microsculpture; E, gross anatomy viewed from the right side and right mantle removed; F, Parathyasira resupina Iredale, holotype, Australian Museum, C57834; G, Parathyasira granulosa Monterosato, Gulf of Cadiz, National Museum Wales; H, Parathyasira subcircularis Payne & Allen, Rockall Trough, 1595 m, National Museum Wales. aa, anterior adductor muscle; f, foot; hg, hind gut; id, inner demibranch; k, kidney; lbp, lateral body pouch; lig, ligament; lp, labial palps; lun, lunule; me, mantle edge; od, outer demibranch; pa, posterior adductor muscle; r, rectum; sms, submarginal sulcus.
FIGURE 4. Lepadichthys erythraeus. A in Lepadichthys bilineatus, a new species of clingfish from Oman (Teleostei: Gobiesocidae), with a redescription of Lepadichthys erythraeus Briggs and Link from the Red Sea
FIGURE 4. Lepadichthys erythraeus. A: uncatalogued, 23.5 mm SL, Sharm el Moya, Egypt, Red Sea; B: uncatalogued, 36 mm SL, Sharm el Moya Bay, Egypt, Red Sea. C: BPBM 40985, 19.1 mm SL, El Quseir, Egypt, Red Sea. Photos by S.V. Bogorodsky.
FIGURE 3 in Lepadichthys bilineatus, a new species of clingfish from Oman (Teleostei: Gobiesocidae), with a redescription of Lepadichthys erythraeus Briggs and Link from the Red Sea
FIGURE 3. Sensory head pores of Lepadichthys erythraeus. LC = Lachrymal canal pores, NC= Nasal canal pores, PO = Postocular canal pores, PR = Preopercular canal pores. In L. erythraeus there are 3 PR pores; the third is visible only on the ventral surface and cannot be seen in profile.
FIGURE 2 Lepadichthys erythraeus, SMF 5586 in Lepadichthys bilineatus, a new species of clingfish from Oman (Teleostei: Gobiesocidae), with a redescription of Lepadichthys erythraeus Briggs and Link from the Red Sea
FIGURE 2 Lepadichthys erythraeus, SMF 5586, holotype, 36.6 mm SL, Ghardaqa, Egypt. Photo by S. Traenkner.
FIGURE 1. Lepadichthys bilineatus. BPBM 36336 in Lepadichthys bilineatus, a new species of clingfish from Oman (Teleostei: Gobiesocidae), with a redescription of Lepadichthys erythraeus Briggs and Link from the Red Sea
FIGURE 1. Lepadichthys bilineatus. BPBM 36336, holotype, 23.5 mm SL, Rahah Bay, Oman. A: Recently collected (white underside enhanced by a light used below to eliminate shadows); B: Preserved. C & D: Lepadichthys cf. bilineatus (not collected), Musandam, Strait of Hormuz, Oman. Photos by J.E. Randall (A), M. Craig (B), P. Louisy (C & D).
FIGURE 7. A–B in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 7. A–B, Fizesereneia panda sp. nov. (A, RMNH.Crus.D.54386; B, RMNH.Crus.D.54449) (circled) in Lobophyllia corymbosa. Photos by S.E.T. van der Meij, not to scale.
FIGURE 6. A–D in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 6. A–D, Fizesereneia panda sp. nov., colouration in life. A, B, holotype RMNH.Crus.D.54425 (carapace 4.2 × 3.6),, dorsal (A) and ventral (B) view. C, D, allotype RMNH.Crus.D.54424 (carapace 4.2 × 3.2), dorsal (A) and ventral (B) view. Photos by A. Anker and P.L. Norby.
FIGURE 3. A–E in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 3. A–E, Holotype Fizesereneia panda sp. nov. (RMNH.Crus.D.54425). A, left P1 (cheliped); B, left P2; C, left P3; D, left P4; E, left P5. Scale bar 1 mm.
FIGURE 5. A–E in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 5. A–E, Allotype Fizesereneia panda sp. nov. (RMNH.Crus.D.54424). A, right P1 (cheliped); B, right P2; C right P3; D, right P4; E, right P5. Scale bar 1 mm.
FIGURE 4. A–E in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 4. A–E, Allotype Fizesereneia panda sp. nov. (RMNH.Crus.D.54424). A, habitus, dorsal view; B, anterolateral margin of carapace, ventral view; C, carapace, lateral view; D, MXP3; E, abdomen. Scale bars 1 mm.
FIGURE 1 in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 1. Map of the collection sites in the Saudi Arabian Red Sea. The star indicates the type locality of Fizesereneia panda sp. nov., dots indicate the other Red Sea localities where F. panda sp. nov. was collected. One sample was collected in the Gulf of Oman (not on map).
FIGURE 2. A–D in A new species of Fizesereneia Takeda & Tamura, 1980 (Crustacea: Brachyura: Cryptochiridae) from the Red Sea and Oman
FIGURE 2. A–D, Holotype Fizesereneia panda sp. nov. (RMNH.Crus.D.54425). A, habitus, dorsal view; B, carapace, lateral view; C, anterolateral margin of carapace, ventral view; D, MXP3. Scale bars 1 mm.
Subspecies and Distribution. F. s. silvestris Schreber, 1777 — Europe E to the Carpathian Mts and the River Dnieper N of the Black Sea. F.s. brockmani Pocock, 1944 — Somalia. F. s. cafra Desmarest, 1822 — Zimbabwe, S Mozambique and South Africa. F. s. caucasica Satunin, 1905 — Caucasus Mts and Turkey. F.s. caudata Gray, 1874 — deserts E Caspian Sea to NW China (Xinjiang) and Mongolia. F. s. foxi Pocock, 1944 — Senegal to Lake Chad. F.s. gordoni Harrison, 1968 — Batinah coast of Oman. F.s. grampia G. S. Miller, 1907 — N Scotland. F. s. griselda Thomas, 1926 — Kalahari region to S Angola. F. s. iraki Cheesman, 1920 — Arabian Desert regions. F. s. lybica Forster, 1780 — desert regions of N Africa to Sudan and N Niger. F.s. melland: Schwann, 1904 — SC Africa. F.s. nesterovi Biurla, 1916 — Mesopotamian region to SW Iran. F. s. ocreata Gmelin, 1791 — Ethiopian highlands. F. s. ornata Gray, 1830 — India. Probably W through Iran. F.s. pyrrhus Pocock, 1944 — N Angola and SW Zaire. F. s. sarda Lataste, 1885 — coastal Maghreb region of Morocco and Algeria. F.s. tristrami Pocock, 1944 — Palestine and Red Sea coast of Arabia. F.s. ugandae Schwann, 1904 — E Africa. in Felidae
Subspecies and Distribution. F. s. silvestris Schreber, 1777 — Europe E to the Carpathian Mts and the River Dnieper N of the Black Sea. F.s. brockmani Pocock, 1944 — Somalia. F. s. cafra Desmarest, 1822 — Zimbabwe, S Mozambique and South Africa. F. s. caucasica Satunin, 1905 — Caucasus Mts and Turkey. F.s. caudata Gray, 1874 — deserts E Caspian Sea to NW China (Xinjiang) and Mongolia. F. s. foxi Pocock, 1944 — Senegal to Lake Chad. F.s. gordoni Harrison, 1968 — Batinah coast of Oman. F.s. grampia G. S. Miller, 1907 — N Scotland. F. s. griselda Thomas, 1926 — Kalahari region to S Angola. F. s. iraki Cheesman, 1920 — Arabian Desert regions. F. s. lybica Forster, 1780 — desert regions of N Africa to Sudan and N Niger. F.s. melland: Schwann, 1904 — SC Africa. F.s. nesterovi Biurla, 1916 — Mesopotamian region to SW Iran. F. s. ocreata Gmelin, 1791 — Ethiopian highlands. F. s. ornata Gray, 1830 — India. Probably W through Iran. F.s. pyrrhus Pocock, 1944 — N Angola and SW Zaire. F. s. sarda Lataste, 1885 — coastal Maghreb region of Morocco and Algeria. F.s. tristrami Pocock, 1944 — Palestine and Red Sea coast of Arabia. F.s. ugandae Schwann, 1904 — E Africa.
Distribution. Shallow, coastal waters of tropical and subtropical S & E Asia, from the Persian Gulf E to the S East China Sea and S to the Sunda Is. There are no records from Oman and the Philippines, although the species is expected eventually to be found in both locations. in Phocoenidae
Distribution. Shallow, coastal waters of tropical and subtropical S & E Asia, from the Persian Gulf E to the S East China Sea and S to the Sunda Is. There are no records from Oman and the Philippines, although the species is expected eventually to be found in both locations.
Environmental DNA reveals a multi-taxa biogeographic break across the Arabian Sea and Sea of Oman
<p>Environmental DNA (eDNA) is increasingly being used to assess community composition in marine ecosystems. Applying eDNA approaches across broad spatial scales now provide the potential to inform biogeographic analyses. However, to date, few studies have employed this technique to assess broad biogeographic patterns across multiple taxonomic groups. Here, we compare eDNA-derived communities of bony fishes and invertebrates, including corals and sponges, from 15 locations spanning the entire length of the Omani coast. This survey includes a variety of habitats, including coral and rocky reefs, and covers three distinct marine ecoregions. Our data support a known biogeographic break in fish communities between the north and the south of Oman; however, the eDNA data highlight that this faunal break is mostly reflected in schooling baitfish species (e.g., sardines and anchovies), whereas reef-associated fish communities appear more homogeneous along this coastline. Furthermore, our data provide indications that these biogeographic breaks also affect invertebrate communities, which includes corals, sponges, and broader eukaryotic groups. The observed community shifts were correlated with local environmental and anthropogenic differences characteristic of this coastline, particularly for the eDNA-derived bony fish communities. Overall, this study provides compelling support that eDNA sequencing and associated analyses may serve as powerful tools to detect community differences across biogeographic breaks and ecoregions, particularly in places where there is significant variation in oceanographic conditions or anthropogenic impacts.</p>
Environmental DNA reveals a multi-taxa biogeographic break across the Arabian Sea and Sea of Oman
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FIG. 1 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 1. Sampling areas of Anchovies in northern Persian Gulf and Oman Sea
FIG. 4 in First record and DNA Barcoding of Oman cownose ray, Rhinoptera jayakari Boulenger, 1895 from Andaman Sea, India
FIG. 4. — Neighbour Joining (NJ) phylogenetic tree of Rhinoptera jayakari Boulenger, 1895 and related species inferred from mitochondrial COI gene sequences.
Figure 7 from: Samimi-Namin K, Ofwegen van LP, McFadden CS (2016) A new species of Melithaea (Anthozoa, Octocorallia, Melithaeidae) from the Oman Sea, off Oman. ZooKeys 623: 15-29. https://doi.org/10.3897/zookeys.623.10045
Figure 7 - Underwater photographs of Melithaea davidi sp. n. at 79 m depth. A Holotype, RMNH Coel. 42122 B paratype, RMNH Coel. 42124.
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