A new species of Melinnopsis (Annelida, Melinnidae) from the Porcupine Abyssal Plain, northeast Atlantic
Authors/Creators
- 1. University of Southampton, Southampton, United Kingdom
- 2. National Oceanography Centre Southampton, Southampton, United Kingdom
- 3. University of Portsmouth, Portsmouth, United Kingdom
Description
A new species of polychaete worm, Melinnopsis nathanieli sp. nov. (Annelida, Melinnidae), is described from the Porcupine Abyssal Plain in the northeast Atlantic at ~4850 m depth. Forty-two specimens were collected during RRS James Cook cruises JC247 and JC263 in 2023 and 2024 respectively. The new species is morphologically similar to Melinnopsis gardelli and Melinnopsis chadwicki, described from deep Australian waters, but differs from these species in having fewer (~ 16) abdominal uncini in a row compared with 30 in both M. gardelli and M. chadwicki. Phylogenetic relationships among the new species and other species in the family Melinnidae were assessed using the nuclear 18S, and the mitochondrial 16S and cytochrome oxidase subunit I (COI) gene fragments. The new species is genetically distinct from all other species of Melinnopsis, where molecular data is available, and genetically most similar to M. gardelli (pairwise distance 3.5%). Tubes of M. nathanieli sp. nov. were observed to act as a biogenic substrate for Actiniaria and Ascidiacea. Seafloor images of Melinnopsis nathanieli sp. inc. at the Porcupine Abyssal Plain show the worm's tube positioned perpendicular to the sediment surface, and the long buccal tentacle protruding from the tube. A table containing key characters of all known Melinnopsis species is presented. This is the first species of Melinnopsis to be described from the northeast Atlantic.
Files
ZK_article_171206.pdf
Files
(5.6 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:2d37116043ef25475d76ac6b960fa336
|
5.6 MB | Preview Download |
System files
(230.8 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:fb2ded43174bef645801da52ab327272
|
230.8 kB | Download |
Linked records
Additional details
References
- Altschul SF, Gish W, Miller WE, Myers W, Lipman DJ (1990) Basic local alignment search tool. Journal of Molecular Biology 215(3): 403–410. https://doi.org/10.1016/S0022-2836(05)80360-2
- Annenkova NP (1931) Zur Polychaetenfauna von Franz-Joseph-Land (Melinnexis gen. nov. arctica sp. nov.). Zoologischer Anzeiger 95(9/10): 269–272.
- Augener H (1906) Reports on the results of dredging, under the supervision of Alexander Agassiz, in the Gulf of Mexico and the Caribbean Sea, and on the east coast of the United States, 1877 to 1880, by the U.S. Coast Survey Steamer Blake, Lieut. Commander C.D. Sigsbee, U.S.N., and Commander J.R. Bartlett, U.S.N. commanding. 42. Westindische Polychaeten. Bulletin of the Museum of Comparative Zoology 43(4): 91–196.
- Beaulieu S (2001) Life on glass houses: Sponge stalk communities in the deep sea. Marine Biology 138(4): 803–817. https://doi.org/10.1007/s002270000500
- Budaeva N, Agne S, Ribeiro PA, Straube N, Preick M, Hofreiter M (2024) Wide-spread dispersal in a deep-sea brooding polychaete: The role of natural history collections in assessing the distribution in quill worms (Onuphidae, Annelida). Frontiers in Zoology 21(1): 1. https://doi.org/10.1186/s12983-023-00520-0
- Carlgren O (1934) Ceriantharia, Zoantharia and Actiniaria from the "Michael Sars" North Atlantic Deep-sea Expedition 1910. Report on the Scientific Results of the "Michael Sars" North Atlantic Deep-Sea Expedition 1910 5(6): 1–27.
- Carr CM, Hardy SM, Brown TM, Macdonald TA, Hebert PDN (2011) A tri-oceanic perspective: DNA barcoding reveals geographic structure and cryptic diversity in Canadian Polychaetes. PLOS ONE 6(7): 1–12. https://doi.org/10.1371/journal.pone.0022232
- Chamberlin RV (1919) The Annelida Polychaeta. Memoirs of the Museum of Comparative Zoology at Harvard College. 48: 1–514. [Albatross Expeditions]
- Darriba D, Taboada GL, Doallo R, Posada D (2012) jModelTest 2: More models, new heuristics and parallel computing. Nature Methods 9(8): 772–772. https://doi.org/10.1038/nmeth.2109
- Dauvin J-C, Kendall M, Paterson G, Gentil F, Jirkov I, Sheader M, de Lange M (1994) An initial assessment of polychaete diversity in the northeastern Atlantic. Biodiversity Letters 2(6): 171–181. https://doi.org/10.2307/2999658
- Day JH (1964) A review of the family Ampharetidae (Polychaeta). Annals of the South African Museum 48(4): 97–120.
- Drennan R, Neal L, Wiklund H, Stewart ECD, Rabone M, Boolukos C, Clatworthy I, Jungmanova Z, Dahlgren TG, Glover AG (2025) On Anguillosyllis cf. hessleri Maciolek, 2020 – A species complex from the Clarion-Clipperton zone, abyssal central Pacific. Deep-sea Research. Part I, Oceanographic Research Papers 220: 104453. https://doi.org/10.1016/j.dsr.2025.104453
- Edgar RC (2004) MUSCLE: Multiple sequence alignment with high accuracy and high throughput. Nucleic Acids Research 32(5): 1792–1797. https://doi.org/10.1093/nar/gkh340
- Eilertsen MH, Kongsrud JA, Alvestad T, Stiller J, Rouse GW, Rapp HT (2017) Do ampharetids take sedimented steps between vents and seeps? Phylogeny and habitat-use of Ampharetidae (Annelida, Terebelliformia) in chemosynthesis based-ecosystems. BMC Evolutionary Biology 17(1): 222. https://doi.org/10.1186/s12862-017-1065-1
- Galeron J, Sibuet M, Vanreusel A, MacKenzie K, Gooday AJ, Dinet A, Wolff GA (2001) Temporal patterns among meiofauna and macrofauna taxa related to changes in sediment geochemistry at an abyssal NE Atlantic site. Progress in Oceanography 50(1/4): 303–324. https://doi.org/10.1016/S0079-6611(01)00059-3
- Glover A, Paterson G, Bett B, Gage J, Sibuet M, Sheader M, Hawkins L (2001) Patterns in polychaete abundance and diversity from the Madeira Abyssal Plain, northeast Atlantic. Deep-sea Research, Part I, Oceanographic Research Papers 48(1): 217–236. https://doi.org/10.1016/S0967-0637(00)00053-4
- Gunton LM, Kupriyanova E, Alvestad T (2020) Two new deep-water species of Ampharetidae (Annelida: Polychaeta) from the eastern Australian continental margin. Records of the Australian Museum 72(4): 101–121. https://doi.org/10.3853/j.2201-4349.72.2020.1763
- Gunton LM, Kupriyanova EK, Roterman CN (2025) Well-connected worms: Genetic connectivity of annelids (Melinnidae and Ampharetidae) across a biogeographical break in Australia's eastern abyss. Records of the Australian Museum 77(2): 121–135. https://doi.org/10.3853/j.2201-4349.77.2025.1910
- Halanych KM, Bacheller JD, Aguinaldo AM, Liva SM, Hillis DM, Lake JA (1995) Evidence from 18S ribosomal DNA that the lophophorates are protostome animals. Science 267(5204): 1641–1643. https://doi.org/10.1126/science.7886451
- Hartman O (1960) Systematic account of some marine invertebrate animals from the deep basins off southern California. Allan Hancock Pacific Expeditions 22(2): 69–216.
- Hartman O (1969) Atlas of the sedentariate polychaetous annelids from California. 1–812. Allan Hancock Foundation, University of Southern California. Los Angeles.
- Hartman SE, Bett BJ, Durden JM, Henson SA, Iveren M, Jeffreys RM, Horton T, Lampitt R, Gates AR (2021) Enduring science: Three decades of observing the Northeast Atlantic from the Porcupine Abyssal Plain Sustained Observatory (PAP-SO). Progress in Oceanography 191(201508): 102508. https://doi.org/10.1016/j.pocean.2020.102508
- Herdman WA (1881) Preliminary report on the Tunicata of the Challenger expedition. Cynthiidae. Proceedings of the Royal Society of Edinburgh 11(3): 52–88. https://www.biodiversitylibrary.org/page/48710941
- Hertwig R (1882) Die Actinien der Challenger Expedition. Gustav Fischer. Jena, 119 pp.
- Hilbig B (2005) Melinnopsis angolensis (Annelida: Polychaeta: Ampharetidae), a new species from the Angola Basin. Organisms, Diversity & Evolution 5(Suppl.1): 215–220. https://doi.org/10.1016/j.ode.2004.11.005
- Hillis DM, Dixon MT (1991) Ribosomal DNA: Molecular evolution and phylogenetic inference. The Quarterly Review of Biology 66(4): 411–453. https://doi.org/10.1086/417338
- Hoagland RA (1920) Polychaetous annelids collected by the United States fisheries steamer Albatross during the Philippine expedition of 1907–1909. Bulletin - United States National Museum 100(1): 603–635.
- Horton T, Marsh L, Bett BJ, Gates AR, Jones DOB, Benoist NMA, Pfeifer S, Simon-Lledó E, Durden JM, Vandepitte L, Appeltans W (2021) Recommendations for the standardisation of open taxonomic nomenclature for image-based identifications. Frontiers in Marine Science 8: 620702. https://doi.org/10.3389/fmars.2021.620702
- Huvenne V (2024) RRS James Cook cruise 237, 06 AUG-04 SEP 2022. CLASS – Climate-linked Atlantic Sector Science Whittard Canyon and Porcupine Abyssal Plain Fixed-Point Observatories. Southampton, National Oceanography Centre. (National Oceanography Centre Research Expedition Report, 80). https://nora.nerc.ac.uk/id/eprint/536754
- Imajima M (2001) Deep-sea benthic polychaetous annelids of Tosa Bay, southwestern Japan. National Science Museum Monographs 20: 31–100.
- Jimi N, Hookabe N, Woo SP, Fujiwara Y (2025) Taxonomy and ecological insights into Melinnopsis shinkaiae sp. nov., a polychaete with a vertical tube from the Daiichi-Kashima seamount (Northwest Pacific). Plankton & Benthos Research 20(1): 29–35. https://doi.org/10.3800/pbr.20.29
- Johnston G (1846) An index to the British Annelides [sic]. Annals and Magazine of Natural History, series 1, 16(supplement to vol 16): 433–462. [Plate 2] https://doi.org/10.1080/037454809495980
- Katoh K, Misawa K, Kuma K, Miyata T (2002) MAFFT: A novel method for rapid multiple sequence alignment based on fast Fourier transform. Nucleic Acids Research 30(14): 3059–3066. https://doi.org/10.1093/nar/gkf436
- Kupriyanova EK, Macdonald TA, Rouse GW (2006) Phylogenetic relationships within Serpulidae (Sabellida, Annelida) inferred from molecular and morphological data. Zoologica Scripta 35(5): 421–439. https://doi.org/10.1111/j.1463-6409.2006.00244.x
- Laguionie-Marchais C (2015) Polychaete community structure and biodiversity change in space and time at the abyssal seafloor. PhD Thesis, University of Southampton, Southampton United Kingdom.
- Laguionie-Marchais C, Billett DSM, Paterson GLD, Ruhl HA, Soto EH, Smith Jr KL, Thatje S (2013) Inter-annual dynamics of abyssal polychaete communities in the North East Pacific and North East Atlantic—A family-level study. Deep-sea Research, Part I, Oceanographic Research Papers 75: 175–186. https://doi.org/10.1016/j.dsr.2012.12.007
- Maciolek NJ (1981) A new genus and species of Spionidae (Annelida: Polychaeta) from the North and South Atlantic. Proceedings of the Biological Society of Washington 94(1): 228–239.
- Malmgren AJ (1866? vol for 1865) Nordiska Hafs-Annulater. [part three of three]. Öfversigt af Königlich Vetenskapsakademiens förhandlingar, Stockholm 22(5): 355–410 [pls XVIII–XXIX].
- McIntosh WC (1885) Report on the Annelida Polychaeta collected by H.M.S. Challenger during the years 1873–1876. Report on the Scientific Results of the Voyage of H.M.S. Challenger during the years 1873–76. Zoology 12(part 34): I–XXXVI, 1–554 [pls 1–55, 1A-39A, & Annelida stations map].
- Meißner K, Schwentner M, Götting M, Knebelsberger T, Fiege D (2023) Polychaetes distributed across oceans—Examples of widely recorded species from abyssal depths of the Atlantic and Pacific Oceans. Zoological Journal of the Linnean Society 199(4): 906–944. https://doi.org/10.1093/zoolinnean/zlad069
- Minh BQ, Schmidt HA, Chernomor O, Schrempf D, Woodhams MD, von Haeseler A, Lanfear L (2020) IQ-TREE 2: New models and efficient methods for phylogenetic inference in the genomic era. Molecular Biology and Evolution 37(5): 1530–1534. https://doi.org/10.1093/molbev/msaa015
- Moore JP (1923) The polychaetous annelids dredged by the U.S.S. "Albatross" off the coast of southern California in 1904. IV. Spionidae to Sabellariidae. Proceedings. Academy of Natural Sciences of Philadelphia 75: 179–259.
- Müller F (1858) Einiges über die Annelidenfauna der Insel Santa Catharina an der brasilianischen Küste. Archiv für Naturgeschichte 24(1): 211–220.
- Norén M, Jondelius U (1999) Phylogeny of Prolecithophora (Plathyhelminthes) inferred from 18S rDNA sequences. Cladistics: The International Journal of the Willi Hennig Society 15(2): 103–112. https://doi.org/10.1111/j.1096-0031.1999.tb00252.x
- OBIS (2025) Ocean Biodiversity In formation System. Intergovernmental Oceanographic Commission of UNESCO. https://obis.org [accessed 15 October 2025]
- Olu K, Cannat M, Arnaud-Haond S, Rabouille C, Lallier F, Blandin J, Cambon-Bonavita M, Justiniano J, Sarradin P, Fouquet Y, Fabri M, Gillet H, Soubigou O, Menot L, Cotten C (2025) Biological samples from the French oceanographic fleet's deep-sea cruises. Version 1.3. IFREMER - French Research Institute for Exploitation of the Sea. Sampling event dataset. https://doi.org/10.15468/dl.ey5ub5
- Palumbi S, Martin A, Roman S, McMillan WO, Stice L, Grabowski G (1991) The Simple Fool's Guide to PCR V.2.0. Special Publication University of Hawaii, Department of Zoology & Kewalo Marine Laboratory, Honolulu, Hawaii, 46 pp.
- Passamaneck YJ, Schander C, Halanych KM (2004) Investigation of molluscan phylogeny using large-subunit and small-subunit nuclear rRNA sequences. Molecular Phylogenetics and Evolution 32(1): 25–38. https://doi.org/10.1016/j.ympev.2003.12.016
- Paterson GLJ, Glover AG (2000) A new species of Sigambra (Polychaeta, Pilargidae) from the abyssal plains of the NE Atlantic. Bulletin of the Natural History Museum. London (Zoology) 66(2): 167–170.
- Paterson GLJ, Gage JD, Lamont P, Bett BJ, Thurston MH (1994) Patterns of abundance and diversity from the abyss - polychaetes from northeastern Atlantic abyssal plains. Mémoires du Muséum d'Histoire Naturelle 162: 503–511.
- Paterson GLJ, Wilson GDF, Cosson N, Lamont PA (1998) Hessler and Jumars (1974) revisited: Abyssal polychaete assemblages from the Atlantic and Pacific. Deep-sea Research, Part II, Topical Studies in Oceanography 45(1–3): 225–251. https://doi.org/10.1016/S0967-0645(97)00084-2
- Paterson GLJ, Neal L, Altamira I, Soto EH, Smith CR, Menot L, Billett DSM, Cunha MR, Marchais-Laguionie C, Glover AG (2016) New Prionospio and Aurospio from the Deep Sea (Annelida: Polychaeta). Zootaxa 4092(1): 1–32.
- Rambaut A (2018) FigTree version 1.4.4. Molecular Evolution, Phylogenetics and Epidemiology. Institute of Evolutionary Biology,University of Edinburgh, Scotland http://tree.bio.ed.ac.uk/software/figtree/ [accessed 4 July 2025]
- Read G, Fauchald K [Eds] (2025a) World Polychaeta Database. Melinnidae Chamberlin, 1919. World Register of Marine Species. https://www.marinespecies.org/aphia.php?p=taxdetails&id=155483 [accessed 29 July 2025]
- Read G, Fauchald K [Eds] (2025b) World Polychaeta Database. Melinnopsis McIntosh, 1885. World Register of Marine Species. https://www.marinespecies.org/aphia.php?p=taxdetails&id=129170 [accessed 4 July 2025]
- Reuscher M, Fiege D, Imajima M (2015) Ampharetidae (Annelida: Polychaeta) from Japanese waters. Part IV. Miscellaneous genera. Journal of the Marine Biological Association of the United Kingdom 95(6): 1105–1125. https://doi.org/10.1017/S0025315415000545
- Rouse G, Pleijel F, Tilic E (2022) Annelida. Oxford University Press, London, UK and New York, USA, 418 pp. https://doi.org/10.1093/oso/9780199692309.001.0001
- Seid CA, Hiley AS, McCowin MF, Carvajal JI, Cha H, Ahyong ST, Ashford OS, Breedy O, Eernisse DJ, Goffredi SK, Hendrickx ME, Kocot KM, Mah CL, Miller AK, Mongiardino Koch N, Mooi R, O'Hara TD, Pleijel F, Stiller J, Tilic E, Valentich-Scott P, Warén A, Wicksten MK, Wilson NG, Cordes EE, Levin LA, Cortés J, Rouse GW (2025) A faunal inventory of methane seeps on the Pacific margin of Costa Rica. ZooKeys 1222: 1–250. https://doi.org/10.3897/zookeys.1222.134385
- Sjölin E, Erséus C, Källersjö M (2005) Phylogeny of Tubificidae (Annelida, Clitellata) based on mitochondrial and nuclear sequence data. Molecular Phylogenetics and Evolution 35(2): 431–441. https://doi.org/10.1016/j.ympev.2004.12.018
- Soto EH, Paterson GLJ, Billett DSM, Hawkins LE, Galéron J, Sibuet M (2010) Temporal variability in polychaete assemblages of the abyssal NE Atlantic Ocean. Deep-sea Research, Part II, Topical Studies in Oceanography 57(15): 1396–1405. https://doi.org/10.1016/j.dsr2.2009.02.003
- Soto-Oyarzun EH (2008) Taxonomy and biology of deep-sea polychaetes: temporal variability in polychaete assemblages of the abyssal NE Atlantic Ocean. PhD Thesis, University of Southampton, United Kingdom.
- Stiller J, Tilic E, Rousset V, Pleijel F, Rouse GW (2020) Spaghetti to a Tree: A Robust Phylogeny for Terebelliformia (Annelida) Based on Transcriptomes, Molecular and Morphological Data. Biology (Basel) 9(4): 73. https://doi.org/10.3390/biology9040073
- Struck T, Hessling R, Purschke G (2002) The phylogenetic position of the Aeolosomatidae and Parergodrilidae, two enigmatic oligochaete-like taxa of the Polychaeta, based on molecular data from 18S rDNA sequences. Journal of Zoological Systematics and Evolutionary Research 40(3): 155–163. https://doi.org/10.1046/j.1439-0469.2002.00200.x
- Tamura T, Stecher S, Kumar S (2021) MEGA11: Molecular Evolutionary Genetics Analysis version 11. Molecular Biology and Evolution 38(7): 3022–3027. https://doi.org/10.1093/molbev/msab120
- Treadwell AL (1906) Polychaetous annelids of the Hawaiian Islands collected by the steamer Albatross in 1902. Bulletin of the United States Fish Commission 23(3): 1145–1181.
- Uschakov PV (1952) Batipelagicheskie i glubokovrduye formy mnogoshchetinkrvykh chervei (Polychaeta) iz Rariteamchatskykh vod Tikhogo Okeana [Bathypelagic and benthic forms of Polychaeta in far Eastern Seas]. Issledovaniya dal'nevostochnykh Morei SSSR 3: 103–112.
- Uschakov PV (1957) [On the polychaete worms fauna (Polychaeta) of the Arctic and Antarctic]. K faune mnogoshchetinkovikh chervei (Polychaeta) Arkitki i Antarktiki. Zoologicheskii jurnal [Journal of Zoology] 36(11): 1659–1672.
- Vanreusel A, Cosson-Sarradin N, Gooday AJ, Paterson GLJ, Galéron J, Sibuet M, Vincx M (2001) Evidence for episodic recruitment in a small opheliid polychaete species from the abyssal NE Atlantic. Progress in Oceanography 50: 285–301. https://doi.org/10.1016/S0079-6611(01)00058-1
- Wesenberg-Lund E (1950) Polychaeta. Danish Ingolf-Expedition 4(14): 1–92.