Documenting the Occurrence of the Lessepsian Fish Stephanolepis Diaspros Within the Strait of Sicily, Central Mediterranean
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DEEP SEA LEBANON RESULTS of the 2016 EXPEDITION EXPLORING SUBMARINE CANYONS Towards Deep-Sea Conservation in Lebanon Project
DEEP SEA LEBANON RESULTS OF THE 2016 EXPEDITION EXPLORING SUBMARINE CANYONS Towards Deep-Sea Conservation in Lebanon Project March 2018 DEEP SEA LEBANON RESULTS OF THE 2016 EXPEDITION EXPLORING SUBMARINE CANYONS Towards Deep-Sea Conservation in Lebanon Project Citation: Aguilar, R., García, S., Perry, A.L., Alvarez, H., Blanco, J., Bitar, G. 2018. 2016 Deep-sea Lebanon Expedition: Exploring Submarine Canyons. Oceana, Madrid. 94 p. DOI: 10.31230/osf.io/34cb9 Based on an official request from Lebanon’s Ministry of Environment back in 2013, Oceana has planned and carried out an expedition to survey Lebanese deep-sea canyons and escarpments. Cover: Cerianthus membranaceus © OCEANA All photos are © OCEANA Index 06 Introduction 11 Methods 16 Results 44 Areas 12 Rov surveys 16 Habitat types 44 Tarablus/Batroun 14 Infaunal surveys 16 Coralligenous habitat 44 Jounieh 14 Oceanographic and rhodolith/maërl 45 St. George beds measurements 46 Beirut 19 Sandy bottoms 15 Data analyses 46 Sayniq 15 Collaborations 20 Sandy-muddy bottoms 20 Rocky bottoms 22 Canyon heads 22 Bathyal muds 24 Species 27 Fishes 29 Crustaceans 30 Echinoderms 31 Cnidarians 36 Sponges 38 Molluscs 40 Bryozoans 40 Brachiopods 42 Tunicates 42 Annelids 42 Foraminifera 42 Algae | Deep sea Lebanon OCEANA 47 Human 50 Discussion and 68 Annex 1 85 Annex 2 impacts conclusions 68 Table A1. List of 85 Methodology for 47 Marine litter 51 Main expedition species identified assesing relative 49 Fisheries findings 84 Table A2. List conservation interest of 49 Other observations 52 Key community of threatened types and their species identified survey areas ecological importanc 84 Figure A1. -
Updated Checklist of Marine Fishes (Chordata: Craniata) from Portugal and the Proposed Extension of the Portuguese Continental Shelf
European Journal of Taxonomy 73: 1-73 ISSN 2118-9773 http://dx.doi.org/10.5852/ejt.2014.73 www.europeanjournaloftaxonomy.eu 2014 · Carneiro M. et al. This work is licensed under a Creative Commons Attribution 3.0 License. Monograph urn:lsid:zoobank.org:pub:9A5F217D-8E7B-448A-9CAB-2CCC9CC6F857 Updated checklist of marine fishes (Chordata: Craniata) from Portugal and the proposed extension of the Portuguese continental shelf Miguel CARNEIRO1,5, Rogélia MARTINS2,6, Monica LANDI*,3,7 & Filipe O. COSTA4,8 1,2 DIV-RP (Modelling and Management Fishery Resources Division), Instituto Português do Mar e da Atmosfera, Av. Brasilia 1449-006 Lisboa, Portugal. E-mail: [email protected], [email protected] 3,4 CBMA (Centre of Molecular and Environmental Biology), Department of Biology, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal. E-mail: [email protected], [email protected] * corresponding author: [email protected] 5 urn:lsid:zoobank.org:author:90A98A50-327E-4648-9DCE-75709C7A2472 6 urn:lsid:zoobank.org:author:1EB6DE00-9E91-407C-B7C4-34F31F29FD88 7 urn:lsid:zoobank.org:author:6D3AC760-77F2-4CFA-B5C7-665CB07F4CEB 8 urn:lsid:zoobank.org:author:48E53CF3-71C8-403C-BECD-10B20B3C15B4 Abstract. The study of the Portuguese marine ichthyofauna has a long historical tradition, rooted back in the 18th Century. Here we present an annotated checklist of the marine fishes from Portuguese waters, including the area encompassed by the proposed extension of the Portuguese continental shelf and the Economic Exclusive Zone (EEZ). The list is based on historical literature records and taxon occurrence data obtained from natural history collections, together with new revisions and occurrences. -
The Teeth and Dentition of the Filefish (Stephanolepis Cirrhifer) Revisited Tomographically
1 J-STAGE Advance Publication: August 12, 2020 Journal of Oral Science Original article The teeth and dentition of the filefish (Stephanolepis cirrhifer) revisited tomographically Hirofumi Kanazawa1,2), Maki Yuguchi1,2,3), Yosuke Yamazaki1,2,3), and Keitaro Isokawa1,2,3) 1) Division of Oral Structural and Functional Biology, Nihon University Graduate School of Dentistry, Tokyo, Japan 2) Department of Anatomy, Nihon University School of Dentistry, Tokyo, Japan 3) Division of Functional Morphology, Dental Research Center, Nihon University School of Dentistry, Tokyo, Japan (Received October 31, 2019; Accepted November 26, 2019) Abstract: The upper and lower tooth-bearing jaws of the filefish (Stepha- Teeth of Non-Mammalian Vertebrates, Elsevier, 2017). nolepis cirrhifer) were scanned using a micro-CT system in order to With regard to filefish dentition in Japan, an early morphologic and address the existing gaps between the traditional pictures of the morphol- histologic study of Monocanthus cirrhifer and Cantherines modestus ogy and histology. 2D tomograms, reconstructed 3D models and virtual (synonyms Stephanolepis cirrhifer and Thamnaconus modestus, respec- dissection were employed to examine and evaluate the in situ geometry of tively) was carried out by Sohiti Isokawa (Isokawa, Zool Mag 64, 194-197, tooth implantation and the mode of tooth attachment both separately and 1955). Phylogenetic interrelationships in the balistoids were examined collectively. No distinct sockets comparable to those in mammals were extensively by Matsuura [4], based on many anatomical characteristics evident, but shallow depressions were observed in the premaxillary and including the tooth-bearing jaws, which were the premaxillary and the the dentary. The opening of the tooth pulp cavity was not simply oriented dentary. -
Alien Marine Fishes in Cyprus: Update and New Records
Aquatic Invasions (2015) Volume 10, Issue 4: 425–438 doi: http://dx.doi.org/10.3391/ai.2015.10.4.06 Open Access © 2015 The Author(s). Journal compilation © 2015 REABIC Research Article Alien marine fishes in Cyprus: update and new records Samuel P. Iglésias* and Lou Frotté Muséum national d'Histoire naturelle, UMR BOREA 7208, Station de Biologie Marine de Concarneau, Place de la Croix, 29900 Concarneau, France E-mail: [email protected] (SPI), [email protected] (LF) *Corresponding author Received: 13 April 2015 / Accepted: 12 August 2015 / Published online: 18 September 2015 Handling editor: Ernesto Azzurro Abstract The Mediterranean Sea, due to its connection to the Red Sea via the Suez Canal, its heavy maritime traffic, and the effects of climate change is a hotspot of invasion by alien species. A survey carried out around Cyprus during September 2014 documented the occurrence of 25 alien fishes. Seven Lessepsian migrants ( Hippocampus fuscus Rüppell, 1838, Nemipterus randalli Russell, 1986, Ostorhinchus fasciatus (Shaw, 1790), Parupeneus forsskali (Fourmanoir & Guézé, 1976), Pomadasys stridens (Forsskål, 1775), Sphyraena obtusata Cuvier, 1829 and Spratelloides delicatulus (Bennett, 1832)) were recorded for the first time, increasing to 35 the number of alien fishes recorded around the island. Four of these first records can be considered as 'established', whereas the 2013 first record of Pterois volitans/miles is confirmed by new findings placing the species as newly 'established' in Cyprus. All the recorded alien fishes of Cyprus are Lessepsian migrants, 80% of which can be considered established and four of them are invasive. The rapid increase of alien fish species over time in Cyprus supports the accelerating tropicalisation process observed elsewhere in the Mediterranean over the last decades. -
Redalyc.Feeding Ecology of the Planehead Filefish Stephanolepis
Revista de Biología Marina y Oceanografía ISSN: 0717-3326 [email protected] Universidad de Valparaíso Chile Mancera-Rodríguez, Néstor Javier; Castro-Hernández, José Juan Feeding ecology of the planehead filefish Stephanolepis hispidus (Pisces: Monacanthidae), in the Canary Islands area Revista de Biología Marina y Oceanografía, vol. 50, núm. 2, agosto, 2015, pp. 221-234 Universidad de Valparaíso Viña del Mar, Chile Available in: http://www.redalyc.org/articulo.oa?id=47941332002 How to cite Complete issue Scientific Information System More information about this article Network of Scientific Journals from Latin America, the Caribbean, Spain and Portugal Journal's homepage in redalyc.org Non-profit academic project, developed under the open access initiative Revista de Biología Marina y Oceanografía Vol. 50, Nº2: 221-234, agosto 2015 DOI 10.4067/S0718-19572015000300002 ARTICLE Feeding ecology of the planehead filefish Stephanolepis hispidus (Pisces: Monacanthidae), in the Canary Islands area Ecología trófica de Stephanolepis hispidus (Pisces: Monacanthidae), en el área de las Islas Canarias Néstor Javier Mancera-Rodríguez1 and José Juan Castro-Hernández2 1Universidad Nacional de Colombia, Department of Forestry Sciences, Calle 59A No. 63-20, Bloque 20, oficina 211, Medellín, Colombia. [email protected] 2Universidad de Las Palmas de Gran Canaria, Department of Biology, Edf. Ciencias Básicas, Campus de Tafira, 35017, Las Palmas de Gran Canaria, Islas Canarias, España. [email protected] Resumen.- Se examinó la ecología alimentaria de Stephanolepis hispidus, en aguas de las Islas Canarias. El estudio se basó en el contenido estomacal de 823 ejemplares de 8,9 cm a 25,9 cm de longitud total (LT), capturados mensualmente en trampas para peces entre febrero de 1998 y junio de 1999. -
Alien Species in the Mediterranean Sea by 2010
Mediterranean Marine Science Review Article Indexed in WoS (Web of Science, ISI Thomson) The journal is available on line at http://www.medit-mar-sc.net Alien species in the Mediterranean Sea by 2010. A contribution to the application of European Union’s Marine Strategy Framework Directive (MSFD). Part I. Spatial distribution A. ZENETOS 1, S. GOFAS 2, M. VERLAQUE 3, M.E. INAR 4, J.E. GARCI’A RASO 5, C.N. BIANCHI 6, C. MORRI 6, E. AZZURRO 7, M. BILECENOGLU 8, C. FROGLIA 9, I. SIOKOU 10 , D. VIOLANTI 11 , A. SFRISO 12 , G. SAN MART N 13 , A. GIANGRANDE 14 , T. KATA AN 4, E. BALLESTEROS 15 , A. RAMOS-ESPLA ’16 , F. MASTROTOTARO 17 , O. OCA A 18 , A. ZINGONE 19 , M.C. GAMBI 19 and N. STREFTARIS 10 1 Institute of Marine Biological Resources, Hellenic Centre for Marine Research, P.O. Box 712, 19013 Anavissos, Hellas 2 Departamento de Biologia Animal, Facultad de Ciencias, Universidad de Ma ’laga, E-29071 Ma ’laga, Spain 3 UMR 6540, DIMAR, COM, CNRS, Université de la Méditerranée, France 4 Ege University, Faculty of Fisheries, Department of Hydrobiology, 35100 Bornova, Izmir, Turkey 5 Departamento de Biologia Animal, Facultad de Ciencias, Universidad de Ma ’laga, E-29071 Ma ’laga, Spain 6 DipTeRis (Dipartimento per lo studio del Territorio e della sue Risorse), University of Genoa, Corso Europa 26, 16132 Genova, Italy 7 Institut de Ciències del Mar (CSIC) Passeig Mar tim de la Barceloneta, 37-49, E-08003 Barcelona, Spain 8 Adnan Menderes University, Faculty of Arts & Sciences, Department of Biology, 09010 Aydin, Turkey 9 c\o CNR-ISMAR, Sede Ancona, Largo Fiera della Pesca, 60125 Ancona, Italy 10 Institute of Oceanography, Hellenic Centre for Marine Research, P.O. -
Table S3.1. Balistoid Species Habitat and Feeding Ecology Classifications and Citations
Table S3.1. Balistoid species habitat and feeding ecology classifications and citations. Species Family Habitat Habitat Feeding Feeding Mode Citation Mode Citation Abalistes stellaris Balistidae Coastal Bare (K Matsuura BG & EP (Kulbicki et al. Bottom 2001) * 2005) Abalistes stellatus Balistidae Coastal Bare (Lieske & BG (Carpenter et Bottom Myers, 2002; al. 1997) Randall et al. 1990) Acanthaluteres Monacanthidae Seagrass/ (Scott 1981) BG (Scott 1981) spilomelanurus Weedy * Acanthaluteres Monacanthidae Seagrass/ (Edgar, BG (Jones 1992; vittiger Weedy Barrett, and * Last 1975) Morton 2004; Hyndes et al. 2003) Acreichthys Monacanthidae Seagrass/ (Nakamura BG (Horinouchi et tomentosus Weedy and Sano * al. 2012; 2004; Nakamura et al. Peristiwady 2003; and Peristiwady Geistdoerfer and 1991) Geistdoerfer 1991) Aluterus heudeloti Monacanthidae Open Ocean (Wenner BG (K Matsuura Demersal 1983) 2001) Aluterus monoceros Monacanthidae Open Ocean (Kuiter 1992; BG (Ghosh et al. Rafting Lieske and * 2011; Lopez- Myers 2002) Peralta and Arcila 2002) Aluterus schoepfii Monacanthidae Seagrass/ (Lieske and BG (K Matsuura Weedy Myers 2002; * 2001; John E John E Randall 1967) Randall 1967) Aluterus scriptus Monacanthidae Open Reef (Dominici- BG (John E Arosemena * Randall 1967; and Wolff John E. 2006; Lieske Randall, Allen, and Myers and Steene 2002; John E 1990; Wulff, Randall 1994) 1967) Amanses scopas Monacanthidae Structured (Kuiter 1992; BG (Durville, Reef Myers 1991) Chabanet, and Quod 2003; Schroeder 1980) Balistapus Balistidae Structured (Hiatt and BG & EP (Hiatt and undulatus Reef Strasburg * Strasburg 1960; 1960; Lieske John E. Randall and Myers 1955; John E. 2002; Randall, Allen, McClanahan and Steene and Shafir 1990) 1990; John E. Randall, Allen, and Steene 1990) Balistes capriscus Balistidae Open Ocean (Longley BG & EP (Goldman, Pelagic 1941) * Glasgow, and Falk 2016; Lieske and Myers 2002; Vose and Nelson 1994) Balistes polylepis Balistidae Open Reef (Burgess et BG & EP (Abitia al. -
Evolutionary Divergence Among Lineages of the Ocean Sunfish Family
Marine Biology (2005) DOI 10.1007/s00227-005-0089-z RESEARCH ARTICLE Anna L. Bass Æ Heidi Dewar Æ Tierney Thys J. Todd. Streelman Æ Stephen A. Karl Evolutionary divergence among lineages of the ocean sunfish family, Molidae (Tetraodontiformes) Received: 6 May 2005 / Accepted: 8 July 2005 Ó Springer-Verlag 2005 Abstract Ocean sunfish, family Molidae, are enigmatic ulative. The systematic analysis provided strong sup- members of the epipelagic fauna of all tropical and port for the sister taxa relationship between genera temperate oceans. A study, begun in 1998, initially fo- Masturus and Mola and the basal position of the genus cused on the population genetics of Mola mola Linna- Ranzania within the family, as well as the sister group eus 1758 immediately indicated high levels of genetic relationship of the Tetraodontiform families Tetra- divergence in the d-loop and cytochrome b mitochon- odontidae + Diodontidae to the Molidae. drial genes. This preliminary effort was expanded to include Masturus lanceolatus Lie´nard 1840, Ranzania laevis Pennant 1776, and representative sequences of Introduction other Tetraodontiformes. Analysis of the sequence data confirms that there are two species in the genus Mola, Species in the family Molidae are large, primarily pelagic Mola mola and M. ramsayi Giglioli 1883, with the members of the Tetraodontiformes. Commonly referred latter presumed to be limited to the southern hemi- to as ocean sunfish, the Molidae have a distinctive lat- sphere. There is an indication of inter-ocean subdivi- erally compressed shape and ‘‘chopped off’’ appearance sion within both species originating 0.05–0.32 and 1.55– (Fraser-Brunner 1951; Smith and Heemstra 1986). -
Report of the Technical Meeting on the Lessepsian Migration and Its Impact
EastMed TECHNICAL DOCUMENTS 04 REPORT OF THE TECHNICAL MEETING ON THE LESSEPSIAN MIGRATION AND ITS IMPACT ON EASTERN MEDITERRANEAN FISHERY NICOSIA, CYPRUS 7 - 9 DECEMBER 2010 FOOD AND AGRICULTURE ORGANIZATION OF THE UNITED NATIONS REPORT OF THE TECHNICAL MEETING ON THE LESSEPSIAN MIGRATION AND ITS IMPACT ON EASTERN MEDITERRANEAN FISHERY NICOSIA, CYPRUS 7 - 9 DECEMBER 2010 Hellenic Ministry of Foreign Affairs ITALIAN MINISTRY OF AGRICULTURE, FOOD AND FORESTRY POLICIES Hellenic Ministry of Rural Development and Food GCP/INT/041/EC – GRE – ITA Athens (Greece), 7-9 December 2010 i The conclusions and recommendations given in this and in other documents in the Scientific and Institutional Cooperation to Support Responsible Fisheries in the Eastern Mediterranean series are those considered appropriate at the time of preparation. They may be modified in the light of further knowledge gained in subsequent stages of the Project. The designations employed and the presentation of material in this publication do not imply the expression of any opinion on the part of FAO or donors concerning the legal status of any country, territory, city or area, or concerning the determination of its frontiers or boundaries. ii Preface The Project “Scientific and Institutional Cooperation to Support Responsible Fisheries in the Eastern Mediterranean- EastMed is executed by the Food and Agriculture Organization of the United Nations (FAO) and funded by Greece, Italy and EC. The Eastern Mediterranean countries have for long lacked a cooperation framework as created for other areas of the Mediterranean, namely the FAO sub-regional projects AdriaMed, MedSudMed, CopeMed II and ArtFiMed. This fact leaded for some countries to be sidelined, where international and regional cooperation for fishery research and management is concerned. -
Stephanolepis Diaspros Fraser-Brunner, 1940
Identificazione e distribuzione nei mari italiani di specie non indigene Classe Osteichthyes Stephanolepis diaspros Ordine Tetraodontiformes Fraser-Brunner, 1940 Famiglia Monacanthidae SINONIMI RILEVANTI Monacanthus setifer Tillier, 1902 Stephanolepis ocheticus Fraser-Brunner, 1940 DESCRIZIONE COROLOGIA / AFFINITA’ Corpo alto e compresso. Muso concavo. Prima Tropicale pinna dorsale con raggio spiniforme quasi diritto, che origina sopra la metà posteriore dell’occhio ed DISTRIBUZIONE ATTUALE è dotato di robusti dentelli nel margine posteriore. Mar Rosso e Golfo Arabico, Mar Mediterraneo. Seconda pinna dorsale con il secondo raggio molto lungo e filamentoso nei maschi. La pinna pelvica è PRIMA SEGNALAZIONE IN MEDITERRANEO un rudimento mobile articolato con le pelvi. Nei maschi adulti il peduncolo caudale è armato con Steinitz, 1927 Palestina una fascia di spinule che si estende fin sotto i 2/3 posteriori della seconda pinna dorsale. PRIMA SEGNALAZIONE IN ITALIA Golfo di Taranto, settembre 1967 (Tortonese, 1967) COLORAZIONE ORIGINE Grigiastro-marrone con macchie scure ed una serie di linee pallide a decorso orizzontale. Pinne Mar Rosso pallide, caudale con due fasce curve verticali scure. VIE DI DISPERSIONE PRIMARIE Probabile migrazione lessepsiana. FORMULA MERISTICA D1 I; D 2 32-33; A 32-33; P 14. Identificazione e distribuzione nei mari italiani di specie non indigene TAGLIA MASSIMA VIE DI DISPERSIONE SECONDARIE 250 mm STADI LARVALI STATO DELL ’INVASIONE Uova e larve pelagiche Colonizzatore recente. SPECIE SIMILI Balistes carolinensis. MOTIVI DEL SUCCESSO CARATTERI DISTINTIVI Tre spine nella pinna dorsale in Balistes SPECIE IN COMPETIZIONE carolinensis . HABITAT IMPATTI Adulti su substrati rocciosi costieri con DANNI ECOLOGICI vegetazione; giovani in acque aperte e su sabbia e fango. -
EN615 Cruise Report
ADEON Recovery/Deployment Cruise Report #EN615 - RV Endeavor 06 – 25 June 2018 San Juan, Puerto Rico to Narragansett, RI Chief Scientist Joseph Warren, Jennifer Miksis-Olds, Carmen Lawrence, Brandyn Lucca, Hannah Blair, Sebastian Velez, Cassandra Fries, Peter Larios, Madison Alstede, Stephen Ell, 1 Jennifer Conyers, Andrew Heaney, Lindsay Olson, and Katharine Coykendall Cruise Summary The objectives for this cruise were to recover bottom landers at seven sites (Figure 1) along the shelfbreak (depths ranging from 200 – 900 m roughly), redeploy a bottom lander at each site after downloading its data, collect CTD profiles to characterize hydrographic conditions at the sites, conduct net sampling to collect biological specimens at each site, and conduct fine-scale (roughly 8 km by 8 km) multi-frequency acoustic surveys at each site (Figure 2). All cruise objectives were completed safely. In addition, we collected animal specimens from net tows for collaborators associated with the DEEP SEARCH project as well as collecting water samples for eDNA analysis for DEEP SEARCH and other collaborators. Water samples were also collected by a UNH undergraduate in support of her capstone paper. We were fortunate to have good weather for much of the cruise which allowed us to complete additional net tows, CTD, and fine-scale acoustic surveys at some sites (Table 1). We appreciate the excellent work of the ship’s Captain and crew (in all aspects on the boat) in helping us to accomplish our cruise objectives. Table 1. Summary of sampling that occurred at each site location during the EN615 research cruise. We were able to accomplish additional sampling at the VAC and HAT sites. -
Paramonacanthus Oblongus, the Correct Name for the Indo-Pacific Fish Currently Called P
Records ofthe Western Australian Museum 21: 107-109 (2002). Short Communication Paramonacanthus oblongus, the correct name for the Indo-Pacific fish currently called P. japonicus, with a recommendation on the nomenclature of Stephanolepis cirrhifer (Tetraodontiformes, Monacanthidae) Anthony C. Gillt and J. Barry Hutchins2 1 Department of Zoology, The Natural History Museum, London SW7 5BD, V.K. 2 Department of Aquatic Zoology, Western Australian Museum, ' Francis Street, Perth, Western Australia 6000/ Australia Members of the monacanthid genus mede vry wel overeen: want ik vind in de Rugvin Paramonacanthus Bleeker are small fishes en Aarsvin, beiden, drie of vierendertig, in de (commonly known as leatherjackets and filefishes) Borstvinnen dertien, en in de Staartvin veertien that inhabit flat silty and sandy bottoms throughout Straalen. Het byzonderste is, dat een der voorsten the lndo-West Pacific. The genus was recently van de Rugvin uitloopt in een langen Draad." revised by Hutchins (1997)/ who recognised 11 Our translation of Houttuyn's description is as species. Among these was P. japonicus (Tilesius, follows: 1810) from the eastern Indian and West Pacific "These fish that live inboth Indies I have received Oceans. However, we have since discovered that a good example from Japan. It is more than 6 Tilesius's name is preoccupied and here correct the thumbs long. I compared it with a figure of nomenclature of the species, as well as provide a something similar which was brought to light 16 new recommendation concerning Stephanolepis years ago from the cabinet of Mr W. van der cirrhifer (Schlegel, 1850) from Japan and China. Meulen. It compares well not only in colour which Paramonacanthus japonicus was originally is dull brown but also in the fin rays: the back fin described (as Balistes japonicus) by Tilesius (1810) on and anal fin both three or four and thirty (= the basis of a single specimen (presently lost) from thirty-three or thirty-four), the breast fin thirteen Japan (see Hutchins, 1997: 29).