Glossocephalus milneedwardsi Bovallius, 1887

Zeidler, Wolfgang & Browne, William E., 2015, A new Glossocephalus (Crustacea: Amphipoda: Hyperiidea: Oxycephalidae) from deep-water in the Monterey Bay region, California, USA, with an overview of the genus, Zootaxa 4027 (3), pp. 408-424 : 411-417

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scientific name

Glossocephalus milneedwardsi Bovallius, 1887
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Glossocephalus milneedwardsi Bovallius, 1887 View in CoL

( Figs. 1–6 View FIGURE 1 View FIGURE 2 View FIGURE 3 View FIGURE 4 View FIGURE 5 View FIGURE 6 )

Glossocephalus Milne-Edwardsi Bovallius, 1887: 35 View in CoL .— Bovallius 1890: 105 (key), 106–108, pl. 5, fig. 5; text figs. 6, 6a (p. 22), 71 (p. 38). Chevreux 1913: 11 –15, figs. 4–5. Chevreux & Fage 1925: 433, fig. 421. Chevreux 1935: 200 –202, pl. 14, figs. 1–2.

Glossocephalus Milne-Edwardsii View in CoL — Colosi 1918: 221. Stephensen 1925: 202 –203, 230 (table). Cecchini 1929: 485, fig. 4.

Glossocephalus Milne-Edwarsi View in CoL (typographical error)— Pirlot 1938: 43. Pirlot 1939a: 55. Pirlot 1939b: 78 –79.

Glossocephalus milne -edwardsi — Spandl 1927: 196 (key), 196–197, fig. 24. Barnard 1931: 131 –132. Barnard 1937: 193. Barnard 1940: 485. Shoemaker 1945: 253, fig. 45. Irie 1959: table 4, 31 (table). Fage 1960: 83 –87, text figs. 56, 57 (map), 140–141 (distribution table). Pillai 1966: 186 –187, fig. 10; pl. 1, fig. J. Dick 1970: 42 (key), 70, fig. 14 (part). Yoo 1971: 43 (list), 68. Bowman & Gruner 1973: 51, fig. 68. Zeidler 1978: 34, fig. 33. Laval 1980: 20, 21 & 23 (tables). Lin & Chen 1994: 114, 119 (table). Lin et al. 1995: 123 (table). Shih & Chen 1995: 200 –202, fig. 132. Lin et al. 1996: 231 (table). Zelickman 2005: xvii (list), figs. 53a, b (pp. 324–327).

Glossocephalus milneedwardsi View in CoL — Tashiro & Jossi 1972: 12 (map), 21 (list). Thurston 1976: 438. Vinogradov et al. 1982: 427 – 428, fig. 229. Zeidler 1984: 298, fig. 9d (abundance), 301. Nair & Jayalakshmy 1992: passim. Nair 1995: 19, pl. 3b, figs. N1 & N2; pl. 14. Lowry 2000: 327 (table). Gasca & Shih 2001: 496 (table). Escobar-Briones et al. 2002: 367 (table). Gates et al. 2003: 328. Brusca & Hendrickx 2005: 152 (list). Browne et al. 2007: 819 (list), fig. 4 (phylogenetic tree). Garcia- Madrigal 2007: 156 –157, 192 (table). Gasca 2007: 118 (table). Gasca & Franco-Gordo 2008: 569 (table). Gasca 2009a: 89 (table). Gasca 2009b: 66 (table). Gasca 2009c: 218 (table). Gasca et al. 2009: 1497 (table). Lavaniegos & Hereu 2009: 142 (table), 152 (appendix). Valencia & Giraldo 2009: 268 (table). Mori et al. 2010: 10 (list). Gasca et al. 2012: 126 (table). Valencia & Giraldo 2012: 1493 (table). Hurt et al. 2013: 31 (table), figs. 1–2 (phylogenetic trees).

Glossocephalus milne -edwardsii — Hure et al. 1969: 603 & 605 (tables). Harbison et al. 1977: 479 (table), 480, 483 (table). Harbison et al. 1978: 239, 251 (table).

Glossocephalus milneedwardsii — Brusca 1981: 12 (list), 45, figs. 22a, b.

Glossocephalus spiniger Bovallius 1887: 35 .— Bovallius 1890: 105 (key), 108–110, pl. 5, figs. 6–9; text figs. 26 (p. 26), 43 (p. 29). Steuer 1911a: 352 (key), fig. 1. Steuer 1911b: 683 (key). Spandl 1927: 196 (key).

Glossocephalus adriaticus Steuer, 1911a: 352 (key), fig. 2 (“adriatischen form”).— Steuer 1911b: 682 –685, pl. 3, figs. 1–7.

Elsia indica Giles, 1890: 250 View in CoL –251, pl. 6, figs. 2–4.— Walker 1904: 237 –238, pl. 1, fig. 2.

Type material. Type material of G. milneedwardsi Bovallius, 1887 , consisting of the remains of two male specimens ( Fig. 1 View FIGURE 1 ), is in the NRS (reg. no. 8706 & 8707), as detailed above. It is most likely that the former specimen is the one illustrated by Westergren ( Bovallius 1890), and it is here designated the lectotype. The other material, consisting only of male second antennae, becomes paralectotype material. Bovallius (1887, 1890) only provides a general locality, “tropical region of the Atlantic” and mentions that he had both male and female specimens.

Type material of synonyms. Type material of G. spiniger Bovallius, 1887 , consisting of a partly dissected female ( Fig. 2 View FIGURE 2 ), is in the ZMUC (CRU-9424), labelled “Indian 7–2°S 80–90°E CASPERSEN 1869”, which is consistent with the type locality provided by Bovallius (1887, 1890). It seems likely that this is the specimen illustrated by Bovallius (1890), and is here regarded the holotype because the data provided by Bovallius implies that he only had one specimen, a female about 11 mm.

The unique type female (3.3 mm) of G. adriaticus Steuer, 1911 could not be found in any major European institution and is considered lost. The type locality is the north-east Adriatic Sea, near “Rovigno” (= Rovinj), on the ctenophore Deiopea kaloktenota , collected by T. Krumbach, December 1910. The type is a juvenile specimen, and despite the inadequate description, the figures provided by Steuer (1911a, 1911b) are clearly representative of typical specimens of G. milneedwardsi .

The unique type female (4.0 mm) of Elsia indica Giles, 1890 could not be found in the NHM, London and is considered lost. The type locality is Bombay Harbour, surface, Investigator expeditions, A. Carpenter commanding. The type is a juvenile specimen and is a most likely synonym of G. milneedwardsi , considering the description and figures provided by Giles (1890).

Material examined. The remains of the lectotype and paralectotype of G. milneedwardsi and the holotype of G. spiniger as detailed above. In addition the following specimens.

N.W. Atlantic: One female, one male ( SAMA C5815), South of Georges Bank [38°N 67°W], G. Matsumoto, scuba, 28 July 1987. N.E. Pacific: Two females, one male ( SAMA C5816), off California [33°27’N 110°23’W], G. Matsumoto, scuba, 1985. One male ( SAMA), south of the Gulf of Alaska [50°12.23’N 144°48.11’W], 1000–0 m, Line P Monitoring Program, 11 June 2005. S.W. Pacific: Ten females, five males ( SAMA), Great Barrier Reef region, off Townsville, Queensland ( Zeidler 1978). N.E. Indian: One female ( SAMA), off Exmouth, Western Australia [21°49.86’S 114°30.31’E], 10 February 1999. S.W. Indian: Ten females, eight males, seven juveniles ( SAM), off South Africa, between Durban and East London, and Durban and Kosi Bay, Meiring Naude cruises, 1976, 1977, 1979.

Diagnosis. Females: Sexually mature at about 7–18 mm. Head slightly longer than first 4.5 pereonites combined; with short, rounded rostrum; strongly bulged proximally with distinct neck. Eyes occupy most of head except for neck and rostrum. Pereon cylindrical, elongate, length about 1.7 x pleon. Pleonites with postero-distal corner produced into small point. Gnathopoda relatively small, barely reaching to middle of basis of P3. Gnathopod 1; basis sub-equal in length to remaining articles combined, relatively narrow; merus relatively short, about 0.2 x basis; carpus spoon-shaped, projecting under propodus to base of dactylus, produced into strong terminal tooth, sometimes armed with 1–3 strong seta on posterior margin near base of tooth-like structure together with some less strong setae; propodus slightly curved, forming weak chela with carpus, with or without slight, but distinct, tooth near postero-distal corner; dactylus slightly curved, length almost half propodus. Gnathopod 2 slightly longer and more slender than G1, similar in structure except the carpus is relatively longer and the carpal process is armed with fewer setae or is smooth, the posterior margin of the propodus is also always smooth. Pereopods 3 & 4 with relatively thin, elongate articles, similar in structure. Pereopod 3 slightly longer than P4, sub-equal in length to P5 or only 1.2 x longer; basis length about 1.3 x merus; carpus length variable, about 0.4–0.7 x merus, about 1.4–1.6 x propodus; dactylus very small. Pereopod 5 slightly longer than P6 but both are similar in structure, with relatively broad, paddle-like articles. Pereopod 5; basis with anterior margin slightly serrated, length about twice width; merus also with slightly serrated anterior margin, distally broadened, length almost half of basis, width about twothirds length; carpus with both margins slightly serrated, also distally broadened, length about 1.6–2.0 x merus, width almost half length; propodus marginally shorter than carpus; also with both margins slightly serrated, evenly narrowed distally to dactylus, width about one-third length; dactylus a very small curved nail. Pereopod 6 a little shorter than P5, similar in structure but slightly more slender; also anterior margin of basis and posterior margins of merus, carpus and propodus not serrated. Pereopod 7; basis oval-shaped, slightly longer than remaining articles combined; merus and carpus of similar length, propodus slightly longer; dactylus very small. Uropod 1; peduncle reaching beyond limit of peduncle of U2 & U3; outer ramus slightly wider than inner, length about 1.5 x inner ramus, about half of peduncle. Uropod 2; peduncle reaches limit of peduncle of U3; rami similar in length, about two-thirds peduncle. Uropod 3; peduncle very short, slightly wider than long; rami similar in length, slightly longer than 2.5 x peduncle. Telson triangular, rounded, marginally longer than wide, reaching to about half of inner ramus of U3. Margins of rami and telson finely denticulate.

Colour in life: mainly translucent, with some frequency the eyes and gut contents may also appear orange (pers. obs.).

Males: Generally like females except for the following. Antenna 1; peduncle one-articulate; callynophore large, crescent-shaped, length about 1.6 x width, with small antero-distal lobe, with aesthetascs arranged in onefield brush medially; three smaller, much narrower, articles inserted on antero-dorsal corner of callynophore. Antenna 2 of males, five-articulate; with strong zig-zagged articulation, and all but terminal article folded back on each other, under the head, extending ventro-anteriorly and ventro-posteriorly between the gnathopoda and pereopoda; first article slightly shorter than second, third slightly longer than second, fourth marginally shorter than first, terminal article very short. Pereon and pleon marginally more slender. Epimeral plates relatively much longer and deeper. Head of juveniles like that of females but more elongate (less globular) in more mature specimens. Pereopods 5 & 6 sometimes have slightly broader articles. Gills absent on pereonite 2.

Remarks. This species is readily distinguished from other members of the Oxycephalidae by the general habitus, the head shape and the structure of the gnathopoda and pereopods 5 & 6. Eye morphology clearly distinguish it from G. re b e ca e sp. nov., together with other minor characters as detailed under that species.

An examination of the material listed above, although limited, revealed considerable variation in the relative lengths of the pereopoda and pereopod articles as reflected in the above diagnosis. In addition, for both sexes, the propodus of gnathopod 1 often lacked the small distal tooth on the posterior margin; a character Bovallius (1887, 1890) used to distinguish G. spiniger from G. milneedwardsi . Sometimes only a tiny tooth was present. Also, the carpus of gnathopod 2 sometimes lacked distal setae, while in other specimens 1–3 strong setae were present ( Fig. 3 View FIGURE 3 ). These variations suggest that more than one species may be present under the current umbrella of G. milneedwardsi , although no consistent geographical variations could be determined. Clearly a more detailed analysis of specimens from a wide geographical range is required to resolve this issue, preferably utilizing molecular genotyping techniques.

A detailed examination of the remains of the holotype of G. spiniger ( Fig. 2 View FIGURE 2 ) revealed the following notable characters. The head is relatively small and rounded; the propodus of gnathopod 1 is armed with a small tooth, distally on the posterior margin; in both gnathopoda the carpus ends in a relatively long, sharp tooth; pereopod 5 is marginally longer than pereopods 3–4; pereopod 7 is very small and seems almost vestigial, and the telson is more quadrate. Generally these characters are most consistent with the specimens from the Great Barrier Reef except that in these specimens the propodus of gnathopod 1 lacks the characteristic tooth and pereopod 7 is not particularly reduced in size. One might also include Elsia indica Giles, 1890 with this group. The remainder of the specimens examined are most like the syntype of G. milneedwardsi ( Fig. 1 View FIGURE 1 ), especially in that pereopods 3 & 4 are very slender and much longer than pereopod 5. However, some specimens have a small tooth on the propodus of gnathopod 1 and additional strong setae on the carpus of both gnathopoda. One might include in this group G. adriaticus Steuer, 1911 and the specimens figured by Shoemaker (1945) from Bermuda.

The paddle-shaped distal elements associated with pereopod 5 are also characterized by the presence of regularly distributed, innervated sensory hairs along the margins ( Fig. 6 View FIGURE 6 ). Observations on both in situ and captive animals revealed that pereopod 5 is actively ‘brushed’ against the surface of the host and may function in collecting surface debris/material. When disturbed, G. milneedwardsi will typically take refuge in the colloblast lined feeding grooves of the ctenophore rather than abandon its host ( Fig. 5 View FIGURE 5 ). Their waxy cuticle appears to be refractory to colloblast adhesive. We also note that demarsupiated G. milneedwardsi juveniles remain on the external surface of their host.

Glossocephalus milneedwardsi View in CoL has, to date, only been recorded in association with ctenophores. Namely, Deiopea kaloktenota Chun, 1879 View in CoL ( Krumbach 1911, Steuer 1911a, b), Bolinopsis vitrea Agassiz, 1860 View in CoL ( Harbison et al. 1977, 1978), Leucothea multicornis Quoy and Gaimard, 1824 View in CoL , Cestum veneris Lesueur, 1813 (Harbison et al. 1978) View in CoL , Leucothea multicornis Quoy and Gaimard, 1824 View in CoL , Beroe ovata Eschscholtz, 1829 ( Laval 1980) View in CoL , and Leucothea pulchra Matsumoto, 1988 View in CoL , and Bolinopsis rubrapunctatus Tokioka, 1964 (SAMA specimens; figs. 3–4). The latter two are new host records. We also find this species in coastal and near coastal waters commonly associated with Bolinopsis View in CoL and Mnemiopsis View in CoL ( Fig. 5 View FIGURE 5 ) in the following locations; Atlantic waters off the southern coast of Florida and several Caribbean locales along the Mesoamerican barrier reef off the coast of Belize and the Bocas del Toro archipelago off the north-eastern coast of Panama. The association of G. milneedwardsi View in CoL with Mnemiopsis View in CoL represents an additional new host record.

Fage (1960) provides some information on the biology of G. milneedwardsi View in CoL , and demonstrated that it occurred most frequently in the top 100 m, was fairly abundant down to 200 m, but very infrequent below that depth. He also found considerable differences in the stage at which females reach maturity between oceans, with females ovigerous at 7.5 mm in the Indo-Pacific region, 9.5 mm in the Mediterranean Sea and 12.5 mm in the Indian Ocean. Zeidler (1978) also found females from the Great Barrier Reef region ovigerous at about 7.0 mm.

Distribution. This is a relatively common nominal species, apparently widely distributed, mainly in the tropical regions of the world’s oceans, including the Mediterranean Sea and Red Sea. Historical distribution accounts suggest common occurrence in the Indian Ocean and less common in the Atlantic and Pacific Oceans ( Fage 1960). However, recent observations along the coast of Florida, the Mesoamerican barrier reef ( Belize), and the eastern Panamanian coast found G. milneedwardsi to be a common hyperiid species, especially in the presence of lobate ctenophores. Given their close affiliation with lobate ctenophores it is likely that demographic distributions of G. milneedwardsi fluctuate concomitant with the ephemeral boom and bust population structure associated with its host.

Barnard, K. H. (1931) Amphipoda. Great Barrier Reef Expedition 1928 - 29, Scientific Reports, 4 (4), 111 - 135.

Barnard, K. H. (1937) Amphipoda. John Murray Expedition 1933 - 34, Scientific Reports, 4 (6), 131 - 201.

Barnard, K. H. (1940) Contributions to the crustacean fauna of South Africa. XII. Further additions to the Tanaidacea, Isopoda, and Amphipoda, together with keys for the identification of the hitherto recorded marine and fresh-water species. Annals of the South African Museum, 32 (5), 381 - 543.

Bovallius, C. (1887) Systematical list of the Amphipoda Hyperiidea. Bihang till Kungliga Vetenskaps-Akademiens Handlingar, 11 (16), 1 - 50.

Bovallius, C. (1890) The Oxycephalids. Nova Acta Regiae Societatis Scientiarum Upsaliensis, Series iii, 14, 1 - 141, pls. 1 - 7.

Bowman, T. E. & Gruner, H. - E. (1973) The families and genera of Hyperiidea (Crustacea: Amphipoda). Smithsonian Contributions to Zoology, No. 146, 1 - 64. http: // dx. doi. org / 10.5479 / si. 00810282.146

Browne, W. E., Haddock, S. H. D. & Martindale, M. Q. (2007) Phylogenetic analysis of lineage relationships among hyperiid amphipods as revealed by examination of the mitochondrial gene, cytochrome oxidase 1 (CO 1). Integrative and Comparative Biology, 47 (6), 815 - 830. http: // dx. doi. org / 10.1093 / icb / icm 093

Brusca, G. J. (1981) Annotated keys to the Hyperiidea (Crustacea: Amphipoda) of North American coastal waters. Technical Reports of the Allan Hancock Foundation, 5, 1 - 76.

Brusca, R. C. & Hendrickx, M. E. (2005) Crustacea 4. Peracarida: Lophogastrida, Mysida, Amphipoda, Tanaidacea & Cumacea. In: Hendrickx, M. E., Brusca, R. C. & Findley, L. T. (Eds.), Listado y Distribucion de la Macrofauna del Golfo de California, Mexico. Parte 1. Invertebrados. A Distributional Checklist of the Macrofauna of the Gulf of California, Mexico. Part 1. Invertebrates. Arizona-Sonora Desert Museum, Tucson, Arizona, pp. 139 - 154.

Cecchini, C. (1929) Oxicefalidi del Mar Rosso. Annali Idrografici Genova Memoria, 8, 478 - 492, pls. 1 - 6.

Chevreux, E. (1913) Sur quelques interessantes especes d'Amphipodes provenant des parages de Monaco et des peches pelagiques de la ' Princesse-Alice' et de ' l'Hirondelle II' en Mediterranee. Bulletin de I'Institut Oceanographique, Monaco, 262, 1 - 26.

Chevreux, E. & Fage, L. (1925) Amphipodes. Faune de France, 9, 1 - 488, figs. 1 - 438.

Chevreux, E. (1935) Amphipodes provenant des campagnes du Prince Albert 1 er, de Monaco. In: Resultats des Campagnes scientifiques accomplies sur son Yacht, par Albert 1 er, Prince Souverain de Monaco, 90, 1 - 214, pls. 1 - 16.

Colosi, G. (1918) Raccolte planctoniche fatte dalla R. Nave Liguria nel viaggio di circonnavigazione del 1903 - 1905 sotto il commando di S. A. R. Luigi Di Savoia, Duca degli Abruzzi, Crostacei-Parte III. Oxicefalidi. Pubblicazioni del R. Istituto di Studi superiori Practici e di Perfezionamento in Firenze, Sezione di Scienze Fisiche e Naturali, 2 (8), 207 - 224, pl. 17.

Dick, R. I. (1970) Hyperiidea (Crustacea: Amphipoda) Keys to South African genera and species, and a distribution list. Annals of the South African Museum, 57 (3), 25 - 86.

Escobar-Briones, E., Winfield, I., Ortiz, M., Gasca, R. & Suarez, E. (2002) Chapter 17. Amphipoda. In: Llorente-Bousquets, J. & Morrone, J. J. (Eds.), Biodiversidad, taxonomia y biogeografia de artropodos de Mexico: Hacia una sintesis de su conocimiento. Vol. III. Comision Nacional para el conocimiento y Uso de la Biodiversidad / Universidad Nacional Autonoma de Mexico, Bayer, pp. 341 - 371.

Fage, L. (1960) Oxycephalidae, amphipods pelagiques. Dana Reports, 52, 1 - 135.

Gasca, R. & Shih, C. - T. (2001) Hyperiid amphipods from surface waters of the western Caribbean Sea (1991). Crustaceana, 74 (5), 489 - 499. http: // dx. doi. org / 10.1163 / 156854001750243063

Gasca, R. (2007) Hyperiid amphipods of the Sargasso Sea. Bulletin of Marine Science, 81 (1), 115 - 125.

Gasca, R. & Franco-Gordo, C. (2008) Hyperiid amphipods (Peracarida) from Banderas Bay, Mexican tropical Pacific. Crustaceana, 81 (5), 563 - 575. http: // dx. doi. org / 10.1163 / 156854008784092256

Gasca, R. (2009 a) Hyperiid amphipods (Crustacea: Peracarida) in Mexican waters of the Pacific Ocean. Pacific Science, 63 (1), 83 - 95. http: // dx. doi. org / 10.2984 / 1534 - 6188 (2009) 63 [83: HACPIM] 2.0. CO; 2

Gasca, R. (2009 b) Diversity of Hyperiid Amphipods (Crustacea: Peracarida) in the Western Caribbean Sea: News from the Deep. Zoological Studies, 48 (1), 63 - 70.

Gasca, R. (2009 c) Part 22. Hyperiid Amphipods. In: Wehrtmann, I. S. & Cortes, J. (Eds.), Marine Biodiversty of Costa Rica, Central America. Monographiae Biologicae, 86, pp. 275 - 282 + tables (pp. 217 & 218). [Springer & Business Media B. V, San Jose, Costa Rica]

Gasca, R., Franco-Gordo, C., Godinez-Dominguez, E. & Suarez-Morales, E. (2012) Hyperiid amphipod community in the Eastern Tropical Pacific before, during, and after El Nino 1997 - 1998. Marine Ecology Progress Series, 455, 123 - 139. http: // dx. doi. org / 10.3354 / meps 09571

Gates, J. E., Stoddart, H. E. & Lowry, J. K. (2003) Hyperiidea. In: Lowry, J. K. & Stoddart, H. E. (Eds.), Crustacea: Malacostraca: Peracarida: Amphipoda, Cumacea, Mysidacea. In: Beesley, P. L. & Houston, W. W. K. (Eds.), Zoogical Catalogue of Australia. Vol. 19.2 B. CSIRO Publishing, Melbourne, pp. i - xii + pp. 298 - 369.

Giles, G. M. (1890) Natural History notes from H. M's Indian Marine Survey Steamer ' Investigator', Commander Alfred Carpenter, R. N., D. S. O. Commanding. No. 9. Further notes on the Amphipoda of Indian waters. Journal of the Asiatic Society of Bengal, 52, 220 - 254, pls. 6 - 12.

Harbison, G. R., Biggs, D. C. & Madin, L. P. (1977) The associations of Amphipoda Hyperiidea with gelatinous zooplankton- II. Associations with Cnidaria, Ctenophora and Radiolaria. Deep-Sea Research, 24, 465 - 488. http: // dx. doi. org / 10.1016 / 0146 - 6291 (77) 90484 - 2

Hure, J., Scotto di Carlo, B. & Basile, A. (1969) Comparazione tra lo Zooplancton del Golfo di Napoli e dell'Adriatico Meridionale presso Dubrovnik, II: Amphipoda (Hyperiidea). Pubblicazioni della Stazione Zoologica di Napoli, 37, 599 - 609.

Hurt, C., Haddock, S. H. D. & Browne, W. E. (2013) Molecular phylogenetic evidence for the reorganization of the Hyperiid amphipods, a diverse group of pelagic crustaceans. Molecular Phylogenetics and Evolution, 67, 28 - 37. http: // dx. doi. org / 10.1016 / j. ympev. 2012.12.021

Irie, H. (1959) Studies on pelagic amphipods in the adjacent seas of Japan. Bulletin of the Faculty of Fisheries, Nagasaki University, 8, 20 - 42.

Krumbach, T. (1911) Notizen uber die Fauna der Adria bei Rovigno. IV. Die Ctenophorenfauna von Rovigno nach den Novembersturmen 1910. Zoologischer Anzeiger, 37 (16), 315 - 319.

Laval, P. (1980) Hyperiid amphipods as crustacean parasitoids associated with gelatinous plankton. Oceanography and Marine Biology, Annual Review, 18, 11 - 56.

Lavaniegos, B. E. & Hereu, C. M. (2009) Seasonal variation in hyperiid amphipod abundance and diversity and influence of mesoscale structures off Baja California. Marine Ecology Progress Series, 394, 137 - 152. http: // dx. doi. org / 10.3354 / meps 08285

Lin, J. & Chen, R. (1994) Distribution of pelagic amphipods in the central part of the South Sea area. Acta Oceanologica Sinica, 16 (4), 113 - 119. [in Chinese]

Lin, J., Chen, M. & Chen, R. (1995) The distribution pattern of planktonic Amphipoda in the southern Yellow Sea and East China Sea. Acta Oceanologica Sinica, 17 (5), 117 - 123. [in Chinese]

Lin, J., Chen, M. & Chen, R. (1996) The species diversity of planktonic Amphipoda in China Seas. Chinese Biodiversity, 4 (4), 228 - 234. [in Chinese]

Lowry, J. K. (2000) Taxonomic status of amphipod crustaceans in the South China Sea with a checklist of known species. Raffles Bulletin of Zoology, No. 8 (Supplement), 309 - 342.

Garcia-Madrigal, M. S. (2007) Annotated checklist of the amphipods (Peracarida: Amphipoda) from the tropical eastern Pacific. In: Hendrickx, M. E. (Ed.), Contributions to the study of East Pacific Crustaceans, 4 (2), pp. 63 - 195. [Instituto de Ciencias del Mar y Limnologia, UNAM]

Mori, M., Suzuki, Y., Yamaki, A. & Lindsay, D. J. (2010) A checklist of hyperiid amphipods (Amphipoda: Hyperiidea) from Japanese waters, including new records from 1996 - 2007 for Sagami Bay and outlying areas. Bulletin of the Plankton Society of Japan, 57 (1), 1 - 14. [in Japanese with English summary]

Nair, K. K. C. & Jayalakshmy, K. V. (1992) Distribution of Oxycephalidae (Amphipoda - Hyperiidea) in the Indian Ocean-A statistical study, In: Desai, B. N. (Ed.), Oceanography of the Indian Ocean. Oxford & IBH, New Delhi, pp. 201 - 210.

Nair, K. K. C. (1995) Taxonomic features and identification of Oxycephalidae (Platysceloidea, Physocephalata, Hyperiidea, Amphipoda). Mahasagar, 28 (1 - 2), 1 - 65.

Pillai, N. K. (1966) Pelagic amphipods in the collections of the Central Marine Fisheries Research Institute, India: Part I. Family Oxycephalidae. Proceedings of the Symposium on Crustacea held at Ernakulam from January 12 - 15, 1965, Part I, 169 - 204. [Marine Biological Association of India]

Pirlot, J. M. (1938) Premiere partie (addendum). Les Amphipodes Hyperides. Familles des Lanceolidae, Cystisomatidae et Oxycephalidae. La sexualite chez Cystisoma Guerin Meneville. Siboga-Expedite, 33 f, 32 - 60.

Pirlot, J. M. (1939 a) Sur des Amphipodes Hyperides provenant des croisieres du Prince Albert 1 er de Monaco. Resultats des Campagnes Scientifiques accomplies sur son Yacht par Albert 1 er Prince Souverain de Monaco, Fascicule 102, 1 - 64.

Pirlot, J. M. (1939 b) Resultats Scientifiques des croisieres du Navire-ecole Belge << Mercator >>. Vol. 3, part 3. Amphipoda. Memoires du Musee Royale d'Histoire Naturelle de Belgique, Serie 2, Fascicule 15, 47 - 80.

Shih, C. - T. & Chen, Q. - C. (1995) Zooplankton of China Seas (2) - The Hyperiidea (Crustacea: Amphipoda). China Ocean Press, Beijing, 295 pp.

Shoemaker, C. R. (1945) The Amphipoda of the Bermuda Oceanographic Expeditions, 1929 - 1931. Zoologica, 30 (4), 185 - 266. [New York]

Spandl, H. (1927) Die Hyperiiden (exkl. Hyperiidea Gammaroidea und Phronimidae) der Deutschen Sudpolar-Expedition 1901 - 1903. Deutsche Sudpolar-Expedition 1901 - 1903, Band 19, Zoologie, 11, 145 - 287, pl. 10.

Stephensen, K. (1925) Hyperiidea-Amphipoda (Part 3: Lycaeopsidae, Pronoidae, Lycaeidae, Brachyscelidae, Oxycephalidae, Parascelidae, Platyscelidae). Report on the Danish Oceanographical Expeditions 1908 - 10 to the Mediterranean and Adjacent Seas, 2 (Biology - D 5), 151 - 252.

Steuer, A. (1911 a) Ein Vertreter der Hyperiidea curvicornia aus der Adria. Zoologischer Anzeiger, 37 (17), 351 - 352.

Steuer, A. (1911 b) Adriatische Planktonamphipoden. Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Klasse, Wien, 120 (6), 671 - 688, pls. 1 - 3.

Tashiro, J. E. & Jossi, J. W. (1972) Amphipoda (Hyperiidea) distribution and abundance off the coast of central West Africa. NOAA, National Marine Fisheries Service, Seattle, Washington, Data Report, 76, 1 - 38.

Thurston, M. H. (1976) The vertical distribution and diurnal migration of the Crustacea Amphipoda collected during the SOND Cruise, 1965. II. The Hyperiidea and general discussion. Journal of the Marine Biological Association of the United Kingdom, 56, 383 - 470. http: // dx. doi. org / 10.1017 / S 0025315400018981

Valencia, B. & Giraldo, A. (2009) Hiperidos (Crustacea: Amphipoda) en el Sector norte del Pacifico oriental tropical colombiano. Latin American Journal of Aquatic Research, 37 (2), 265 - 273. http: // dx. doi. org / 10.3856 / vol 37 - issue 2 - fulltext- 14

Valencia, B. & Giraldo, A. (2012) Structure of hyperiid amphipod assemblages on Isla Gorgona, eastern tropical Pacific off Colombia. Journal of the Marine Biological Association of the United Kingdom, 92 (7), 1489 - 1499. http: // dx. doi. org / 10.1017 / S 0025315411001780

Vinogradov, M. E., Volkov, A. F. & Semenova, T. N. (1982) Amfipody-Giperiidy (Amphipoda: Hyperiidea) Mirovogo Okeanea. Akademiya Nauk SSSR, Opredeliteli po Faune SSSR No. 132., Leningrad, 492 pp. [in Russian, English translation, 1996, Smithsonian Institution Libraries, Washington D. C., D. Siegel-Causey, Scientific Editor]

Walker, A. O. (1904) Report on the Amphipoda collected by Professor Herdman, at Ceylon, in 1902. In: Report to the Government of Ceylon on the Pearl Oyster Fisheries of the Gulf of Manaar, Part II, Supplementary Report No. XVII, pp. 229 - 300, pls. 1 - 8.

Yoo, K. I. (1971) Pelagic hyperiids (Amphipoda: Hyperiidea) of the western North Pacific Ocean. Journal of the National Academy of Sciences, Republic of Korea, Natural Science Series, 10, 39 - 89.

Zeidler, W. (1978) Hyperiidea (Crustacea: Amphipoda) from Queensland waters. Australian Journal of Zoology, Supplementary Series, No. 59, 1 - 93. http: // dx. doi. org / 10.1071 / AJZS 059

Zeidler, W. (1984) Distribution and abundance of some Hyperiidea (Crustacea: Amphipoda) in Northern Queensland waters. Australian Journal of Marine and Freshwater Research, 35, 285 - 305. http: // dx. doi. org / 10.1071 / MF 9840285

Zelickman, E. A. (2005) Amphipoda: Hyperiidea of Israel. A morphological atlas. Fauna Palaestina. Crustacea 1. The Israel Academy of Sciences and Humanities, Jerusalem, 440 pp.

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FIGURE 1. Glossocephalus milneedwardsi Bovallius, 1887. Lectotype male (SMNH 8706) “ Atlanten 15 ° N 70 ° W ”. Scale bars = 1.0 mm (pleon & urosome), 0.2 mm (G 1, G 2, enlarged), 0.5 mm (remainder).

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FIGURE 2. Holotype female of Glossocephalus spiniger Bovallius, 1887, (ZMUC CRU- 9424), “ Indian 7 – 2 ° S 80 – 90 ° E CASPERSEN 1869 ”. Scale bars = 0.2 mm (G 1, G 2, enlarged), 0.5 mm (remainder).

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FIGURE 3. Glossocephalus milneedwardsi Bovallius, 1887. Female 10.2 mm (SAMA C 5816), NE Pacific, off California (33 ° 27 ’ N 110 ° 23 ’ W), scuba near surface, on the ctenophore Leucothoe pulchra. Scale bars = 1.0 mm (habitus), 0.2 mm (G 1, G 2), 0.5 mm (remainder).

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FIGURE 4. Glossocephalus milneedwardsi Bovallius, 1887. Mouthparts from female 12.5 mm (SAMA C 5816); same data as fig. 3. Mouthparts and antennae (A 1 with aesthestascs removed) from male 8.0 mm (SAMA C 5815), NW Atlantic (38 ° N 67 ° W), scuba near surface, on the ctenophore Bolinopsis rubrapunctatus. Scale bars = 0.1 mm (A 1), 0.2 mm (A 2), 0.05 mm (mouthparts).

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FIGURE 5. Glossocephalus milneedwardsi Bovallius, 1887 in Mnemiopsis sp. feeding groove. In situ photograph taken in Bocas del Toro, Panama.

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FIGURE 6. Glossocephalus milneedwardsi Bovallius, 1887. Pereopod 5 appendage morphology, left side ventral view. Anterior is up, posterior is down. Proximal is to the left and distal to the right. Individual appendage articles are labelled as: C, coxa; B, basis; I, ischium; M, merus; C, carpus; P. propodus; and D, dactylus. Insets provide close-up view of serrated limb margins. Arrows indicate the series of innervated sensory bristles distributed along both anterior and posterior margins of the distal articles of P 5.

NRS

Naturhistoriska Riksmuseet

ZMUC

Zoological Museum, University of Copenhagen

SAMA

South Australia Museum

SAM

South African Museum

Kingdom

Animalia

Phylum

Arthropoda

Class

Malacostraca

Order

Amphipoda

Family

Oxycephalidae

Genus

Glossocephalus