Climate Change and Biodiversity Effects in Turkish Seas

Similar documents
First record of Marsupenaeus japonicus (Bate, 1888) (Crustacea: Decapoda: Penaeidae) from the western coast of the Turkish Black Sea

First occurrence of Serranus hepatus in the Bulgarian Black Sea coast

-SHORT COMMUNICATION-

The pufferfish that belongs to the

Fishing down the marine food webs in the Hellenic seas

-RESEARCH ARTICLE- Length-Weight Relationships of Four Lessepsian Puffer Fish Specıes From Muğla. Coasts of Turkey

The Changes Observed in Atlantic Bonito (Sarda sarda) Populations During the Autumn-Winter Migration in the Suthern Black Sea Coast

National action plan for the conservation of cartilaginous fishes in the Turkish water of the eastern Mediterranean Sea

SC China s Annual report Part II: The Squid Jigging Fishery Gang Li, Xinjun Chen and Bilin Liu

SCIENTIFIC COMMITTEE THIRD REGULAR SESSION August 2007 Honolulu, United States of America

Review of the research on Artificial Reefs in the Mediterranean Sea

Figure 1. Pair trawlers are in operation.

What are the threats to the oceans? Consequences. Four examples. Tuna

and found that there exist a significant overlap between the billfish resources and the exploitation activities targeting tunas and mahi mahi.

Oceans Humans both depend on it and threaten it with their activities

Catch per unit effort of coastal prawn trammel net fishery in Izmir Bay, Aegean Sea

DISCARDS IN MEDITERRANEAN SEA Problems and questions.

-RESEARCH ARTICLE- Length-weight relationship and condition factor of Ankara barb Capoeta angorae (Hankó, 1925) in Asi River (Hatay, Turkey)

The fishery for jack mackerel in the Eastern Central Pacific by European trawlers in 2008 and 2009

3. DYNAMICS OF GLOBAL CLIMATIC INDICES AND MAIN COMMERCIAL CATCHES

First Ever Estimate of Cod Fishery in 1850s Reveals 96% Decline on Scotian Shelf

AREAS BEYOND NATIONAL JURISDICTION: INDIAN OCEAN DEVELOPING COASTAL STATES TUNA MANAGEMENT WORKSHOP

Accepted 7 April, 2011

Small pelagic fishery and research in Albania

ATLANTIC STATES MARINE FISHERIES COMMISSION. Winter Flounder Abundance and Biomass Indices from State Fishery-Independent Surveys

MEFISTO PREPARED APPLICATIONS MODELLING FISHERIES MANAGEMENT STRATEGIES IN THE MEDITERRANEAN

ICCAT-GBYP AERIAL SURVEY: OBJECTIVES AND APPROACH. Antonio Di Natale GBYP Coordinator ICCAT

A century of change in a marine fish assemblage. Martin Genner

New Zealand Spain s Antipodes

"Present status of Tropical tuna fisheries in Iran"

2.3.1 Advice May Capelin in Subareas V and XIV and Division IIa west of 5 W (Iceland East Greenland Jan Mayen area).

FISHERIES BLUE MOUNTAINS ADAPTATION PARTNERSHIP

6 th Meeting of the Scientific Committee Puerto Varas, Chile, 9-14 September SC6-Doc15 The Russian Federation s Annual Report

Blue crab ecology and exploitation in a changing climate.

Impacts of climate change on marine fisheries

Michael Tehan, Assistant Regional Administrator, Interior Columbia Basin Office

Case study results North Agean purse seine, Kavala, Greece ID

Annexes and schedules: rare and protected fish species and the law. Richard Handley

Climatic and marine environmental variations associated with fishing conditions of tuna species in the Indian Ocean

Size and spatial distribution of the blue shark, Prionace glauca, caught by Taiwanese large-scale. longline fishery in the North Pacific Ocean

ACTIVITIES RELATED TO AREAS OF INTEREST FOR CETACEANS CONSERVATION IN THE ACCOBAMS AREA

Advice June Capelin in Subareas V and XIV and Division IIa west of 5 W (Iceland East Greenland Jan Mayen area).

INVESTIGATION RESULTS

WP4 Ecosystem modelling workshop Ecopath with Ecosim

REPORT ON THE TURKISH BONITO (Sarda sarda) FISHERY IN 2000/2001

2016 ANNUAL FISH TRAWL SURVEY REPORT

Leif Nøttestad, Øyvind Tangen and Svein Sundby

Small pelagic fish market in the south of Sicily: socioeconomic linkages between catch volume and local consumption

SCIENTIFIC COMMITTEE TWELFTH REGULAR SESSION. Bali, Indonesia 3-11 August 2016

BLACK SEA WHITING, MERLANGIUS MERLANGUS EUXINUS NORDMANN

Tuna [211] 86587_p211_220.indd 86587_p211_220.indd /30/04 12/30/04 4:53:37 4:53:37 PM PM

SWG JACK MACKEREL FISHERY IN CHILE

Ocean Conditions, Salmon, and Climate Change

SMOOTH HAMMERHEAD SHARK (HHS)

SCIENTIFIC COUNCIL MEETING SEPTEMBER Status of Skate Stocks in the Barents Sea (Elasmobranch Fisheries Poster)

Department of Animal Environment, Faculty of Science, Tishreen University, Latakia, P. O. Box 1408, Syria 2

WATER TRANSPORT VARIABILITY IN THE AEGEAN SEA AND ITS CONNECTION WITH NORTH SEA CASPIAN PATTERN (NCP)

Map Showing NAFO Management Units

Summary of Research within Lamlash Bay No-Take Zone - Science report for COAST July

3.4.3 Advice June Barents Sea and Norwegian Sea Cod in Subareas I and II (Norwegian coastal waters cod)

OUTLINE OF THE STURGEON STATUS OF THE NORTH-WESTERN BLACK SEA

SC European Union 2013 Annual Report. Ad Corten

The Hague, Kingdom of the Netherlands October 2016 SC The European Union Annual report

INFORMATION COLLECTED AT THE HYDROBIOLOGICAL STATION OF RHODES (GREECE) ON LESSEPSIAN MIGRANT FISHES

Climatic and marine environmental variations associated with fishing conditions of tuna species in the Indian Ocean

Section 2: Biodiversity at Risk

What happened to the South Coast El Niño , squid catches? By M J Roberts Sea Fisheries Research Institute, Cape Town

SCIENTIFIC COMMITTEE SIXTH REGULAR SESSION August 2010 Nuku alofa, Tonga

General Oceanography Geology 105 Expedition #19 The Ocean and Climate

REVIEW OF BIGEYE TUNA CATCH INCLUDING FISH SIZE BY JAPANESE LONGLINE FISHERY IN THE ATLANTIC OCEAN

While oil and gas is the nations largest export product in value, fish is the second largest. Both activities are crucial for the Norwegian economy.

SECTION 2 HYDROLOGY AND FLOW REGIMES

Fish Conservation and Management

5. purse seines 3 000

What the threats to the oceans?

NAFO/ICES PANDALUS ASSESSMENT GROUP MEETING OCTOBER An overview of Norwegian investigations of the shrimp stock off East Greenland in

YELLOWFIN TUNA (Thunnus albacares)

NATIONAL BIORESOURCE DEVELOPMENT BOARD Dept. of Biotechnology Government of India, New Delhi

Warming in Turkish Seas: Comparative Multidecadal Assessment

OR DUNGENESS CRAB FISHERY:

The Impact of Climate Change on Coastal Fisheries of Chinese Taipei

Map Showing NAFO Management Units

North East Atlantic Fisheries Baltic Sprat Whitepaper March 2011

General Oceanography Geology 105 Expedition 3 Declining Marine Fisheries See Due Date in Greensheet

Diadromous Fish Assemblage Assessment in the Saco River Estuary, ME

Surf Clams: Latitude & Growth

6.4 Stock summaries Advice June 2012

Trends in salmon fisheries

First record of dogtooth grouper Epinephelus caninus (Valenciennes, 1834), Perciformes, Serranidae, in the Black Sea

Sustainable fisheries and aquaculture in the Mediterranean Pêcheries et aquaculture soutenables en Méditerranée

SIO 210 Introduction to Physical Oceanography Mid-term examination November 4, 2013; 50 minutes

FOMLR REPORTING GEORGIA Archil Guchmanidze Deputy Head

Can marine protected areas be used to enhance fisheries in Namibia? Sheila JJ Heymans

Serial No. N6173 NAFO SCR Doc. 13/020 SCIENTIFIC COUNCIL MEETING JUNE 2013

A Preliminary Report of Research Results. SRSF Research Report #5. Prepared by

SA2 + Div. 3K Redfish

The influence of ocean dynamics and climate changes on the Lemuru (Bali Sardinella) abundance in the Bali Strait, Indonesia

6 th Meeting of the Scientific Committee Puerto Varas, Chile, 9-14 September SC6-Doc19 Peru s Annual Report, part I (SPRFMO Area) IMARPE PRODUCE

The economic implications of changing regulations for deep sea fishing: UK case study

Zoogeography part 3. Royal Museum for Central Africa (RMCA Tervuren)

Transcription:

Volume 1, No. 2, 15-24, 2016 Climate Change and Biodiversity Effects in Turkish Seas Cemal Turan, Deniz Erguden, Mevlüt Gürlek Molecular Ecology and Fisheries Genetics Laboratory, Marine Science Department, Faculty of Marine Science and Technology, Iskenderun Technical University, 31220 Iskenderun, Hatay, Turkey Abstract Sea temperature change in the Mediterranean, Marmara and Black Sea coasts of Turkey and its possible biodiversity effects are investigated. The surface sea water temperatures of the Mediterranean, Marmara and Black Sea region of Turkey for last 41 years showed increased trends in Mediterranean Sea (Iskenderun, Mersin and Antalya), Marmara Sea (Istanbul) and Black Sea (Samsun). On the other hand, the number of Indo-Pacific species is getting rapidly increased for the last decade that caused increased invasion of the Indo-Pacific species and significant shift of biodiversity in Turkish Seas. This settlement process is probably accelerated or facilitated by global climate change and overfishing of native species. Nowadays, the occurrence of Atlantic-Mediterranean (Lithognathus mormyrus, Serranus hepatus and Callinectes sapidus) and Indo-Pacific (Stephanolepis diaspros, Lagocephalus spadiceus) originated species in the Marmara and Black Seas can also be an important indicator of the process of Mediterranization of the Marmara and Black Seas. Key words: Climate Change, Sea Surface Temperature, Biodiversity, Turkish Seas. Article history: Received 05 April 2016, Accepted 25 April 2016, Available online 06 May 2016 Introduction The Mediterranean Sea is unique, being a semi-enclosed marginal Sea, with a narrow connection with the Atlantic Ocean through the Strait of Gibraltar, the manmade connection Corresponding Author: Cemal Turan, e-mail: cemal.turan@iste.edu.tr

Natural and Engineering Sciences 16 to the Red Sea via the Suez Canal, and the narrow Bosphorus Strait connecting it to the smaller enclosed Black Sea (Lascaratos et al., 1999; Turley, 1999). The world s atmosphere and oceans are warming, and the most immediate effects of this on the marine environment include rising sea levels, higher seawater temperatures and acidification, more frequent extreme events and changes in oxygen levels or deoxygenation processes (IPCC Fourth Assessment Report, 2007). Due to these pressures and ecosystem responses, climate change is now considered a major driver of biodiversity change and loss. The Mediterranean will be strongly affected by climate change over the course of this century. The oceanographic and physical aspects of climate change in the Mediterranean have been described in many reports and scientific studies, although uncertainty remains about the degree of physical and chemical change expected at sub-regional and local scales (Lionello, 2012). Climate change combines with Atlantic influx, lessepsian migration and the introduction of exotic species by humans to favour the occurrence and establishment of warmwater species, whether exotic or native, in the Mediterranean Sea. The Eastern Mediterranean Sea includes two major bodies of water: the Levant Sea and the Aegean Sea, together with the smaller Sea of Marmara, which connects it to the Black Sea. The Levant Sea is warmer than the rest of the Mediterranean and harbours a significant number of circumtropical species. Atlantic-Mediterranean elements and Mediterranean endemics are comparatively scarce (Morri et al., 2009). The connection between Mediterranean Sea and Black Sea is re-established 6000 years ago and Mediterranean originated species entered into the Black Sea. At that time, sea level of the Mediterranean was higher than today. This continued process nowadays are called Mediterranisation of the Black Sea, which can be more pronounced in forthcoming years. The present study, surface sea temperature change in the Mediterranean, Marmara and Black Sea coasts of Turkey for last 41 years and composition and distribution of biodiversity based on purse seiner, trawler and trammel net are investigated. Material and Methods Surface temperature data of the Mediterranean, Marmara and Black Seas was collected between 1970-2011 years from Turkish State Meteorological Service. Surface sea temperature data for each region were daily taken. The average surface sea temperature were calculated based on weekly, monthly and yearly data. Catch composition of fish species data were obtained from purse seiner, trawler and trammel net from the Mediterranean Sea between 2009 and 2015 by the project supported the Ministry of Agriculture and Rural Affairs Turkey (TAGEM-09AR-GE11). A total of 173 hauls were carried out, with bottom trawl net, with a 22 mm cod-end mesh size between 30 and 150 m depth in the Mediterranean Sea. A total of 110 purse seine operations was performed in the Mediterranean, including 52 operations in the Iskenderun Bay, 36 operations in Mersin Bay and 22 operations in Antalya Bay between 2009-2011 yaeras. In trammel nets, a total of 341 operations was carried out of which 118 in the Iskenderun Bay, 118 in the Mersin Bay and 105 in the Antalya Bay. All operations were carried out for winter, spring, summer and autumn. All fish samples were sorted and scientific nomenclature was arranged according to Eschmeyer (2015). Systematic classification of fish samples was carried out according to Nelson (2006) and Turan (2007).

Natural and Engineering Sciences 17 Results Surface sea water temperatures have been increased for all seas, especially for the Mediterranean Sea in which surface sea water temperatures for the Antalya Bay, Mersin Bay and Iskenderun Bay were increased about 1.5 C, 3 C and 2 C (Figure 1, Figure 2 and Figure 3). The seawater temperature data based on 1970-2011 years increased steadily. In some years, the temperature values compared with the past years were declined slightly. In recent years, the average seawater temperature value was clearly increased that indicates the tropicalization of the Mediterranean Sea. Figure 1. The average surface sea water temperatures at the Gulf of Antalya between 1970-2011.

Natural and Engineering Sciences 18 Figure 2. The average surface sea water temperatures at the Mersin Bay between 1970-2011. Figure 3. The average surface sea water temperatures at the Iskenderun Bay between 1970-2011. The surface sea water temperatures of the Marmara and Black Sea region of Turkey showed increase trends for the Marmara Sea (Istanbul) and the middle Black Sea (Samsun), (Figure 4 and Figure 5). A very high sharp decline was observed in 2009 in the middle Black

Natural and Engineering Sciences 19 Sea (Samsun) region. Moreover, a high decline was also observed in 2011 in the Iskenderun Bay region, Northeastern Mediterranean Sea. Figure 4. The average surface sea water temperatures at the Middle Black Sea (Samsun) between 1970-2011. Figure 5. The average surface sea water temperatures at the Marmara Sea (İstanbul) between 1970-2011. The composition of alien species for trawling purse seiner and trammel net fishery between 2009-2011 years were 27%, 39% and 33% respectively in the eastern Mediterranean

Natural and Engineering Sciences 20 coast of Turkey (the Antalya, Mersin and İskenderun Bays). Highest amount of biomass for alien species were taken by purse seiner fishery. On the biodiversity aspects, the warming causes an increase in the number of Indo- Pacific species in the Turkish Seas. Up to date there has been 74 alien fish species belonging to 47 families in Turkish marine waters (Figure 6). The number of alien fish species in the Turkish Seas is in highly increasing trend for the last two decades. Figure 6. Trends of alien fish species in marine waters of Turkey. When we consider the distribution of alien species according to families, the highest number of fish species associated were Tetraodontidae (six species) and Apogonidae family (five species), constituting largest alien species in the Turkish marine waters (Figure 7).

Natural and Engineering Sciences 21 Figure 7. The distribution of alien species according to Families in marine waters of Turkey. The number of alien fish species according to origin in marine waters of Turkey were 88% Atlanto-Mediterranean, 11% Indo-Pasific and 1% cosmopolitan species (Figure 8). Figure 8. Percentage of composition of alien fish species according to origin in marine waters of Turkey In Turkish marine waters, the Mediterranean, Aegean, Marmara Sea and Black Seas comprise 61%, 35%, 3% and 1% of the alien fish species, respectively (Figure 9).

Natural and Engineering Sciences 22 Figure 9. Percentage of composition of alien fish species in marine waters of Turkey. Discussion The average surface sea water temperatures between 1970 and 2011 revealed an increased trend for all Turkish Seas, especially for the eastern Mediterranean part. We related the increase of the sea water temperatures to the biodiversity change in the Turkish marine waters. There seems to be a good relation between the sea water temperatures and the number of migrated Indo-Pacific originated species. The native species are shifting with alien species, especially with indo-pacific originated species. Nowadays, composition of fishery in the Eastern Mediterranean Sea was about 50 percent lessepsian species. Some of endemic species have been replaced with other Indo-Pacific species. We found that Decapterus russelli, Jaydia queketti, Nemipterus randalli, Champsodon nudivittis, Ostorhinchus fasciatus, Cheilodipterus novemstriatus and Pomadasys stridens are having established large communities in Turkish coasts. The increase of temperatures in the Mediterranean Sea seems to give more favourable conditions for the majority of Indo-Pacific originated migrants. Similarly, Lasram & Mouillot (2009) reported that the successful introductions of indo-pacific species from the Red Sea and Atlantic species from lower latitudes to the Mediterranean Sea are in correlation with the increasing temperature of the Mediterranean Sea. In last decades, the rise of sea temperatures in the Mediterranean coast of Turkey allow species such as Lagocephalus sceleratus, Nemipterus randalli and Pomadasys stridens to establish populations in the Mediterranean as the higher temperatures favoured their reproduction compared to the native species. Besides, in recent years, 19 new fish species belonging to 17 families were captured with purse seiner, trawler and trammel net from the Mediterranean Sea (Antalya, Mersin and Iskenderun Bays) between 2009 and 2011 years. According to these results, there will be more invasion of the alien species and more significant change of biodiversity in the Mediterranean. Supporting that three Indo-Pasific origin species, Argyrops filamentosus, Trachurus declivis (Gurlek et al. 2016a, b) and

Natural and Engineering Sciences 23 Plotosus lineatus (Doğdu et al., 2016) have recently been reported from Turkish marine waters in the first half of 2016 year. The Sea of Marmara exhibits peculiar hydrological conditions, with low salinity waters coming from the Black Sea stratifying over saline waters of Mediterranean origin on the bottom (Unluata et al., 1990). In recent years, climatic change favoured an increase of biotic penetration from the Sea of Marmara into the Black Sea, which therefore has been undergoing a process of Mediterranization (Tokarev & Shulman, 2007; Turan et al. 2010; Yaglioglu et al. 2014). Today, a major characteristic of species entering the Black sea from the Mediterranean Sea is the fact that they live in its saline and warm waters. For example, the introduction of species like conger, barracuda, johndory, brown comber and striped sea bream in this sea shows that the distribution of thermophilic species is extending. Mediterranization, the extension of Mediterranean fauna to the Black Sea, is an ongoing process and new records of Mediterranean-originated fauna for the Black Sea have been given by some scientists in recent years (Engin et al., 2007; Kovacic & Engin, 2009; Yaglioglu et al. 2014). The occurrence of Atlantic-Mediterranean (Lithognathus mormyrus, Serranus hepatus and Callinectes sapidus) and Indo-Pacific (Stephanolepis diaspros, Lagocephalus spadiceus) originated species in the Marmara and Black Seas (Dalgıç et al., 2013; Bilecenoglu et al. 2014; Yağlıoglu et al. 2014) can be an important indicator of the process of Mediterranization of the Marmara and Black Seas. As a consequence, alien species have found optimal environment for settlement in the Eastern Mediterranean. One of the major reasons of the introduction of these species in the Mediterranean Sea and other Seas (Marmara and Black Sea) of their spread by forming colonies that enter in competition with native species is the rise of the seawater temperature. Acknowledgements The study was supported by the Ministry of Agriculture and Rural Affairs of Turkey with a project number of TAGEM-09AR-GE11 coordinated by C.Turan. References Bilecenoğlu, M., Kaya, M., Cihangir, B., Çiçek, E. (2014). An updated checklist of the marine fishes of Turkey. Turkish Journal of Zoology, 38, 901-929. Dalgıç, G., Gümüş, A., Zengin, M. (2013). First record of brown comber Serranus hepatus (Linnaeus, 1758) for the Black Sea. Turkish Journal of Zoology, 37, 523-524. Doğdu, S.A., Uyan, A., Uygur, N., Gurlek, M., Erguden, D., Turan, C. (2016). First record of the Indo-Pacific striped eel catfish, Plotosus lineatus (Thunberg, 1787) from Turkish marine waters. Natural and Engineering Sciences, 1 (2). Engin, S., Turan, D., Kovacic, M. (2007). First record of the redmouthed goby, Gobius cruentatus (Gobiidae), in the Black Sea. Cybium, 31(1), 87-88. Eschmeyer, W. N. (ed).(2015). Catalog of Fishes: Genera, Species, References. (http://research.calacademy.org/research/ichthyology/catalog/fishcatmain.asp). Accessed 21.03.2016.

Natural and Engineering Sciences 24 Gurlek, M. Erguden, D., Doğdu, S.A., Turan, C. (2016a). First record of the Indo-Pacific soldier bream Argyrops filamentosus (Valenciennes, 1830) from the Mediterranean Sea. Journal of Applied Ichthyology, 32, In press. Gurlek, M., Erguden, D., Dogdu, S.A., Turan, C. (2016b). First record greenback horse mackerel, Trachurus declivis (Jenyns, 1841) in the Mediterranean Sea. Journal of Applied Ichthyology, 32, In press. IPCC Fourth Assessment Report, (2007). Climate Change 2007: The Physical Science Basis, Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change. Solomon, S. et al. (Eds.). Cambridge, UK: Cambridge University Press. Kovacic, M. & Engin, S. (2009). First record of the zebra goby, Zebrus zebrus (Gobiidae), in the Black Sea. Cybium, 33(1), 83-84. Lascaratos, A., Roether, W., Nittis, K., Klein, B. (1999). Recent changes in deep water formation and spreading in the eastern Mediterranean Sea: a review. Progress in Oceanography, 44, 5-36. Lasram, F.B.R. & Mouillot, D. (2009). Increasing southern invasion enhances congruence between endemic and exotic Mediterranean fish fauna. Biological Invasions, 11, 697-711. Lionello, P. (Ed), (2012). The climate of the Mediterranean region: From the past to the future. Elsevier Edition. Morri, C., Puce, S., Bianchi, C.N., Bitar, G., Zibrowius, H., Bavestrello, G. (2009). Hydroids (Cnidaria: Hydrozoa) from the Levant Sea (mainly Lebanon), with emphasis on alien species. Journal of the Marine Biological Association of the U.K, 89 (1), 49-62. Nelson, J.S. (2006). Fishes of the World. 4 th edition. In: John Wiley and Sons, eds. New York. Tokarev, Y. & Shulman, G. (2007). Biodiversity in the Black Sea: effects of climate and anthropogenic factors. Hydrobiologia. 58, 23-33. Turan, C. (Ed), (2007). Atlas and Systematic of Marine Bony Fishes of Turkey. Nobel Publishing House, Adana, Turkey. Turan, C., Demirhan, S.A, Ergüden, D., Yağlıoğlu, D., Gürlek, M., Gürlek, Mu., Güngör, M., Seyhan, D., Özbalcılar, B., Özcan, T. (2012). Küresel İklim Değişikliği Sonucu Akdeniz e Göç Eden Lessepsiyen Türlerin Stok Yoğunluğunun ve Endemik Türlere Olan Etkilerinin Araştırılması. Proje No: TAGEM-09/AR-GE/11 TAGEM projesi sonuç raporu. [In Turkish.] Turley, C.M. (1999). The changing Mediterranean Sea - a sensitive ecosystem? Progress in Oceanography, 44, 387-400. Turan, C. Boero, F., Boltachev, A. Duzgunes, E., Ilyin, Y.P., Kideys, A., Micu, D., Milliman, C.D., Minciheva, G., Moschella, P., Oguz, T., Ozturk, B., Pörtner, H.O., Shiganova, T., Shivarov, A., Yakushev, E., Briand, F. (2010). Executive Summary of Climate Forcing and its Impacts on the Black Sea Marine Biota. No: 39. CIESM Workshop Monographs, Monaco. Unluata, U., Oguz, T., Latif, M.A., Ozsoy, E. (1990). On the physical oceanography of the Turkish Straits. pp. 25-60. In: The Physical Oceanography of Sea Straits. L.J. Pratt (Ed.). NATO/ASI Series, Kluwer, Dordrecht. Yağlıoğlu, D., Turan, C., Öğreden T. 2014. First record of blue crab Callinectes sapidus (Rathbun 1896) (Crustacea, Brachyura, Portunidae) from the Turkish Black Sea coast. Journal of Black Sea/Mediterranean Environment, 20 (1), 13 17.