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963 results for “Gobies”
FIGURE 1 in On two goby-associated snapping shrimps from the Red Sea, one of them new to science (Malacostraca: Decapoda: Alpheidae: Alpheus)
FIGURE 1. Alpheus karplusi sp. nov.: paratype male (cl 11.4 mm) from Farasan Islands, Saudi Arabia (FLMNH UF 37016); A—frontal region, dorsal; B—same, lateral; C—telson, dorsal (plumose setae omitted); D—tooth on ventromesial carina of first article of antennular peduncle, lateral; E—third maxilliped, lateral; F—second pleopod, detail of appendix masculina and appendix interna, anterior (lateral); G—uropod, dorsal (plumose setae omitted); H—same, detail of spiniform setae on distal margin of endopod (plumose setae omitted).
FIGURE 3 in On two goby-associated snapping shrimps from the Red Sea, one of them new to science (Malacostraca: Decapoda: Alpheidae: Alpheus)
FIGURE 3. Alpheus karplusi sp. nov., shrimp in life: A, B—paratype female (cl 7.4 mm) from Thuwal, Saudi Arabia (FLMNH UF 37070), general dorsal (A) and lateral (B) views. Photographs by the author.
FIGURE 8. Alpheus thompsoni Anker, 2022 in On two goby-associated snapping shrimps from the Red Sea, one of them new to science (Malacostraca: Decapoda: Alpheidae: Alpheus)
FIGURE 8. Alpheus thompsoni Anker, 2022, shrimps in life, colour pattern type B (see text for details): A, B—male (cl 10.0 mm) from the Farasan Islands, Saudi Arabia (FLMNH UF 37002), general dorsal view (A) and detail of frontal region (B); C—male from Kenting, Taiwan (deposited in Academia Sinica, Taipei, specimen examined by the author in 2008), general dorsal view; D—shrimp in situ in association with the goby Amblyeleotris sp., Kwajalein, Marshall Islands. Photographs by the author [A, B], Dr. Ming-Shiou Jeng [C] and Scott and Jeanette Johnson [D].
On following pages: 174. Small Big-eared Brown Bat (Histiotus montanus);, 175. Thomas's Big-eared Brown Bat (Histiotus laephotis); 176. Common Big-eared Brown Bat (Histiotus macrotus); 177. Southern Big-eared Brown Bat (Histiotus magellanicus); 178. Big Brown Bat (Eptesicus fuscus); 179. Guadeloupe Serotine (Eptesicus guadeloupensis); 180. Diminutive Serotine (Eptesicus diminutus); 181. Little Black Serotine (Eptesicus andinus); 182. Chiriguinan Serotine (Eptesicus chiriquinus); 183. Argentine Serotine (Eptesicus furinalis); 184. Harmless Serotine (Eptesicus innoxius); 185. Brazilian Serotine (Eptesicus brasiliensis); 186. Taddei's Serotine (Eptesicus taddeii); 187. Ulapes Serotine (Eptesicus ulapesensis); 188. Horn-skinned Serotine (Eptesicus floweri); 189. Lagos Serotine (Eptesicus platyops); 190. Long-tailed Serotine (Eptesicus hottentotus); 191. Ognev's Serotine (Eptesicus ognevi); 192. Anatolian Serotine (Eptesicus anatolicus); 193. Botta's Serotine (Eptesicus bottae); 194. Meridional Serotine (Eptesicus isabellinus); 195. Oriental Serotine (Eptesicus pachyomus); 196. Eurasian Serotine (Eptesicus serotinus); 197. Northern Serotine (Eptesicus nilssonil); 198. Sombre Serotine (Eptesicus tate); 199. Gobi Serotine (Eptesicus gobiensis), 200. Japanese Serotine (Eptesicus japonensis);, 201. Thick-eared Serotine (Eptesicus pachyotis). in Vespertilionidae
On following pages: 174. Small Big-eared Brown Bat (Histiotus montanus);, 175. Thomas's Big-eared Brown Bat (Histiotus laephotis); 176. Common Big-eared Brown Bat (Histiotus macrotus); 177. Southern Big-eared Brown Bat (Histiotus magellanicus); 178. Big Brown Bat (Eptesicus fuscus); 179. Guadeloupe Serotine (Eptesicus guadeloupensis); 180. Diminutive Serotine (Eptesicus diminutus); 181. Little Black Serotine (Eptesicus andinus); 182. Chiriguinan Serotine (Eptesicus chiriquinus); 183. Argentine Serotine (Eptesicus furinalis); 184. Harmless Serotine (Eptesicus innoxius); 185. Brazilian Serotine (Eptesicus brasiliensis); 186. Taddei's Serotine (Eptesicus taddeii); 187. Ulapes Serotine (Eptesicus ulapesensis); 188. Horn-skinned Serotine (Eptesicus floweri); 189. Lagos Serotine (Eptesicus platyops); 190. Long-tailed Serotine (Eptesicus hottentotus); 191. Ognev's Serotine (Eptesicus ognevi); 192. Anatolian Serotine (Eptesicus anatolicus); 193. Botta's Serotine (Eptesicus bottae); 194. Meridional Serotine (Eptesicus isabellinus); 195. Oriental Serotine (Eptesicus pachyomus); 196. Eurasian Serotine (Eptesicus serotinus); 197. Northern Serotine (Eptesicus nilssonil); 198. Sombre Serotine (Eptesicus tate); 199. Gobi Serotine (Eptesicus gobiensis), 200. Japanese Serotine (Eptesicus japonensis);, 201. Thick-eared Serotine (Eptesicus pachyotis).
On following pages: 199. Kazakhstan Argali (Ovis collium); 200. Marco Polo Argali (Ovis poli); 201. Tibetan Argali (Ovis hodgsoni); 202. Altai Argali (Ovis ammon); 203. Gobi Argali (Ovis darwini); 204. Shansi Argali (Ovis jubata); 205. Snow Sheep (Owvis nivicola); 206. Bighorn Sheep (Ovis canadensis); 207. Dall's Sheep (Ovis dalli). in Bovidae
On following pages: 199. Kazakhstan Argali (Ovis collium); 200. Marco Polo Argali (Ovis poli); 201. Tibetan Argali (Ovis hodgsoni); 202. Altai Argali (Ovis ammon); 203. Gobi Argali (Ovis darwini); 204. Shansi Argali (Ovis jubata); 205. Snow Sheep (Owvis nivicola); 206. Bighorn Sheep (Ovis canadensis); 207. Dall's Sheep (Ovis dalli).
Distribution. NE Uzbekistan, N Kyrgyzstan, SE Kazakhstan, and NW China. Occurs in the W of Tianshan Mt System (except W Karatau), just E of the cities ofJambul and Shimkent in Kazakhstan and the city of Tashkent in Uzbekistan, and extends E through Tianshan Mts (excluding inner Tianshan) surrounding Issyk-Kul Lake and Jungarian Alatau, and in China at the edge of the distribution of the Gobi Argali (O. darwini) on the Chinese-Mongolian border. in Bovidae
Distribution. NE Uzbekistan, N Kyrgyzstan, SE Kazakhstan, and NW China. Occurs in the W of Tianshan Mt System (except W Karatau), just E of the cities ofJambul and Shimkent in Kazakhstan and the city of Tashkent in Uzbekistan, and extends E through Tianshan Mts (excluding inner Tianshan) surrounding Issyk-Kul Lake and Jungarian Alatau, and in China at the edge of the distribution of the Gobi Argali (O. darwini) on the Chinese-Mongolian border.
FIGURE 8 in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 8. Sensory papillae in Glossogobius tenuiformis; ZM-CBSU O002.Gt144, 36 mm SL; Oman: Wadi Shab. Lines are numbered following Akihito & Meguro (1975). Pores abbreviations are PNP: posterior nasal pores, AIO: anterior interorbital pore, PIO: posterior interorbital pore, PO: postorbital pore, IFO: infraorbital pore, LC: lateral canal pore above pre-operculum, TLC: terminal lateral canal pore, LCT: lateral canal tube detached from main lateral canal.
FIGURE 7. Glossogobius tenuiformis a, Glossogobius tenuiformis a in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 7. Glossogobius tenuiformis a, Glossogobius tenuiformis a, ZM-CBSU O001.Gt101, 75 mm SL; b, ZM-CBSU O001. Gt104, 59 mm SL; c, ZM-CBSU O001.Gt102, 52 mm SL; Oman: Wadi Hasik.
FIGURE 6. Glossogobius tenuiformis a in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 6. Glossogobius tenuiformis a, ZM-CBSU O001.Gt101, 75 mm SL; b, ZM-CBSU O001.Gt104, 59 mm SL; c, ZM-CBSU O001.Gt102, 52 mm SL; Oman: Wadi Hasik.
FIGURE 3 in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 3. Glossogobius tenuiformis, radiograph, Holotype: ANSP 60250, 57 mm SL; South Africa: St. Lucia Lake (photo by Kyle R. Luckenbill, Academy of Natural Sciences of Drexel University, Philadelphia).
FIGURE 2 in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 2. Glossogobius tenuiformis, Holotype: ANSP 60250, 57 mm SL; South Africa: St. Lucia Lake, (photo by Kyle R. Luckenbill, Academy of Natural Sciences of Drexel University, Philadelphia).
FIGURE 1 in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 1. Bayesian Analysis and Maximum Likelihood phylogeny reconstructed based on 558 bp of COI 5' end. The values besides the branches before and after a slash are BI posterior and ML bootstrap probability values, respectively.
FIGURE 5. Glossogobius tenuiformis a in Redescription of the goby Glossogobius tenuiformis Fowler, 1934 (Teleostei: Gobiidae) and assignment of Oman Glossogobius populations: a morpho-molecular approach
FIGURE 5. Glossogobius tenuiformis a, ZM-CBSU O001.Gt101, 75 mm SL; b, ZM-CBSU O001.Gt104, 59 mm SL; c, ZM-CBSU O001.Gt102, 52 mm SL; Oman: Wadi Hasik.
FIGURE 8 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 8. Fresh (upper and middle) and preserved (lower) specimens of Luciogobius sp. 11 (KAUM–I. 159027 25.9 mm SL) from Kochi Prefecture.
FIGURE 1 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 1. Fresh specimens of Luciogobius punctilineatus n. sp. from Satsuma Peninsula (A: Holotype; KAUM–I. 156161. 29.8 mm SL), Amami-oshima island (B: KAUM–I. 145567, 28.1 mm SL, C: KAUM–I. 145562, 12.1 mm SL), Osumi Peninsula (D: KAUM–I. 157125, 28.7 mm SL), and Kochi Prefecture, Shikoku (E: KAUM–I. 159035, 22.9 mm SL). Dorsal and lateral views taken before and immediately after fixation, respectively.
FIGURE 4 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 4. Preserved specimens of Luciogobius punctilineatus n. sp. from Satsuma Peninsula (A: Holotype; KAUM–I. 156161. 29.8 mm SL), Amami-oshima island (B: KAUM–I. 145567, 28.1 mm SL, C: KAUM–I. 145562, 12.1 mm SL), Osumi Peninsula (D: KAUM–I. 157125, 28.7 mm SL), and Kochi Prefecture, Shikoku (E: KAUM–I. 159035, 22.9 mm SL).
FIGURE 7 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 7. Habitats of Luciogobius punctilineatus n. sp. near (A) the Shirinashi River mouth, western coast of Satsuma Peninsula, and (B) the Shimadomari River mouth, southern coast of Osumi Peninsula. Black arrows indicate collection points, near fresh water springs; blue arrows indicate river mouths.
FIGURE 9 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 9. Relationships of (A) snout length, (B) AAA distance (measured between posterior margin of anus and anal-fin origin), (C) PAL (pre-anus length), and (D) pre-anal-fin length as % of standard length, and (E) snout length as % of AAA, and (F) PAL as % of pre-anal-fin length vs. standard length (mm) in Luciogobius punctilineatus n. sp. and Luciogobius sp. 11. Closed red star, holotype of L. punctilineatus n. sp.; open red stars, paratypes of L. punctilineatus n. sp. from Shimokoshiki-shima island, Tanega-shima island; yellow stars, L. punctilineatus n. sp. from Amami-oshima island; green stars; L. punctilineatus n. sp. from Kochi Prefecture and Osumi Peninsula; blue triangles, Luciogobius sp. 11.
FIGURE 2 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 2. Head of the holotype of Luciogobius punctilineatus n. sp., showing the cephalic sensory system. Black dots and lowercase letters indicate papillae and name of each row, respectively. Arrows, AN, and PN indicate point of gill opening, anterior nostril, and posterior nostril, respectively.
FIGURE 6 in Luciogobius punctilineatus n. sp., a new earthworm goby from southern Japan
FIGURE 6. Neighbor-joining tree based on 12S ribosomal RNA gene sequences (133 bp) of species of Luciogobius with Inu koma as outgroup. Numbers near branches indicate bootstrap values.
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