Aquatic Invasions (2011) Volume 6, Supplement 1: S79 S83 doi: /ai S The Author(s). Journal compilation 2011 REABIC

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

Invasion of Asian Tiger Shrimp (Penaeus monodon Fabricius, 1798) in the Western Atlantic and Gulf of Mexico

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

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

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

Significant Ecological Marine Area Assessment Sheet

Biodiversityof Marine Ornamental Fish in West Bengal: Issues of Sustainability and Livelihood Security

Cambridge International Examinations Cambridge International Advanced Subsidiary and Advanced Level

Longtail tuna Updated: December 2016 LONGTAIL TUNA

Marine Ecosystems. Aquatic Ecosystems Section 2

SMOOTH HAMMERHEAD SHARK (HHS)

6/2/2014. Carps. Common Carp. Silver Carp. Rohu. Bighead Carp. Other introductions: Gourami Dojo Golden apple snail Pacu Mosquito fish

Grow-out culture of mangrove red snapper {Lutjanus Forsskal, 1115)in ponds

First occurrence of Serranus hepatus in the Bulgarian Black Sea coast

IOTC 2015 SC18 ES06[E]

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

ASIAPACIFIC-FISHWATCH CONCEPT AND THE WOLF HERRINGS (CHIROCENTRUS SPP) AS EXAMPLE. Meryl Williams Asian Fisheries Society

First record of the Indo-Pacific Champsodon nudivittis (Ogilby, 1895) (Perciformes, Champsodontidae) in the Aegean waters (eastern Mediterranean Sea)

STATUS OF EXPLOITED MARINE FISHERY RESOURCES OF INDIA

GLOBAL FISHERIES CRISIS

Sustainable Recreational Fishing Student Activity Workbook 6.2. Sustainable Recreational Fishing

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

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

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

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

ESA, Proposed Threatened ESA, Threatened New Mexico-WCA, Endangered

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

Policy Instruments for Fisheries Management and the Concept of Fisheries Refugia

ATLANTIC STURGEON. Consultations on listing under the Species at Risk Act

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

Summary and Conclusion

AMBLYGASTER SIRM (WALBAUM) OFF THE NEGOMBO COAST

Impacts of climate change on marine fisheries

RESEARCH ARTICLE A tale of two Atlantic fish migrants: records of the lesser amberjack Seriola fasciata and the African hind Cephalopholis taeniops

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

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

New occurrence of big eye thresher shark Alopias superciliosus lowe, 1841 in Gulf of Mannar, southeast coast of India. Thoothukudi , India.

THE DEVELOPMENT AND PROSPECT OF THE AQUACULTURE IN ASIA. Chen Sun, Shanghai Fisheries University, Economy and Trade College,

Counting the fish catch - why don t the numbers match?

Invasive Species of Florida s Coastal Waters: The Red Lionfish (Pterois volitans) and Devil Firefish (P. miles) 1

NOTES ON EGGS, LARV^ AND JUVENILES OF FISHES FROM INDIAN WATERS

The Maritime Law Association of Australia and New Zealand

Albacore tuna, Bigeye tuna, Blackfin tuna, Skipjack tuna, Yellowfin tuna. Image Monterey Bay Aquarium. Atlantic. Purse Seine.

Observed non-indigenous and cryptogenic species in the Baltic Sea

Sheepshead Fishery Overview South Atlantic State/Federal Management Board May 2014 Introduction Life History Landings

Fish Conservation and Management

INTRODUCTION SEAS AND OCEANS: A PRECIOUS RESOURCE KEY FACTS

Essential Fish Habitat Description Atlantic cod (Gadus morhua)

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

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

!"#$%&'() Mola mola *+,+-./

UNIVERSITY OF CAMBRIDGE INTERNATIONAL EXAMINATIONS General Certificate of Education Advanced Subsidiary Level and Advanced Level

COMMISSION OF THE EUROPEAN COMMUNITIES. Proposal for a COUNCIL REGULATION. establishing measures for the recovery of the stock of European Eel.

Which fish is for which state?

Applied policy in the Mediterranean lagoons

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

ASSESSMENT OF THE WEST COAST OF NEWFOUNDLAND (DIVISION 4R) HERRING STOCKS IN 2011

Sustainable Seas - Marine Fisheries Fisheries and Fishing

What the threats to the oceans?

Management and Control of Asian Carps in the United States. Greg Conover Asian Carp Working Group, Chair USFWS, Carterville FRO

Asian Swamp Eel Monopterus albus

Preparation of this document

Eastern Gambusia Gambusia holbroooki (Girard).

Last Fall I was fishing for striped bass using green crabs and sand fleas for bait but without any luck. In this presentation I will look into the

Extract from the project Dynamic Mapping of North Sea Spawning - the KINO Report 2016 Statoil contract no

COLLEGE OF FISHERIES CENTRAL AGRICULTURAL UNIVERSITY (IMPHAL) Lembucherra, Tripura

8 TH MEETING DOCUMENT BYC-08 INF-A

STATUS OF EXPLOITED MARINE FISHERY RESOURCES OF INDIA

YELLOWFIN TUNA (Thunnus albacares)

Map Showing NAFO Management Units

Scientific Annals of the Danube Delta Institute vol Section I. Biodiversity, taxonomy, nature conservation doi: /DDI.20.

Factors influencing production

Hatcheries: Role in Restoration and Enhancement of Salmon Populations

OCN 201 Lab Fall 2009 OCN 201. Lab 9 - El Niño

Climate and Fish Population Dynamics: A Case Study of Atlantic Croaker

ASMFC Stock Assessment Overview: Red Drum

ASSESSMENT OF HERRING IN THE SOUTHERN GULF OF ST. LAWRENCE (NAFO DIV. 4T)

Perciformes: Trachinoidei: Uranoscopidae 3527

ATLANTIC SALMON NEWFOUNDLAND AND LABRADOR, SALMON FISHING AREAS 1-14B. The Fisheries. Newfoundland Region Stock Status Report D2-01

American Horseshoe Crabs in the Subtropics: Genetics, Phenotype, Populations, and Marine-Life Harvest

A REVIEW ON MUGIL CEPHALUS BIOLOGY AND ITS OCCURRENCE IN VISAKHAPATNAM COAST

CHAPTER 11.1 THE WORLD OCEAN MARINE BIOMES NOTES

2012 Maryland FMP Report (July 2013) Section 15. Red Drum (Sciaenops ocellatus)

Fish Survey Report and Stocking Advice for Loch Milton. (Loch a Mhuilinn), May 2011

Remarks: Allen & Swainston (1988) have erroneously recorded this species from northwestern Australia.

Occurrence of a Sharksucker (Echeneis naucrates) on a Northern River Shark (Glyphis garricki) in a tidal riverine habitat

Ikutaro Shimizu National Research Institute of Fisheries Science Fisheries Research Agency of Japan

Cambridge International Examinations Cambridge International Advanced Subsidiary and Advanced Level

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

BLACK SEA WHITING, MERLANGIUS MERLANGUS EUXINUS NORDMANN

2015 Winnebago System Walleye Report

HOW CAN WE HELP TO SUSTAIN AQUATIC BIODIVERSITY?

Gulf and Caribbean Research

Minute on Bangkok Meeting 3 April 2006,

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

GLOBEFISH RESEARCH PROGRAMME

Dauphin Lake Fishery. Status of Walleye Stocks and Conservation Measures

Australian Acoustic Tracking and Monitoring System (AATAMS) Receiver Pool Application Final Report

Indian River Lagoon: Lessons, Challenges and Opportunities

Status and trend of four commercially important coastal cephalopods in China Seas: an overview with implications for climate change

Transcription:

Aquatic Invasions (2011) Volume 6, Supplement 1: S79 S83 doi: 10.3391/ai.2011.6.S1.018 2011 The Author(s). Journal compilation 2011 REABIC Open Access Aquatic Invasions Records An overlooked and unexpected introduction? Occurrence of the spotted scat Scatophagus argus (Linnaeus, 1766) (Osteichthyes: Scatophagidae) in the Maltese Islands Edwin Zammit and Patrick J. Schembri* Department of Biology, University of Malta, Msida 2080, Malta E-mail: patrick j.schembri@um.edu.mt (PJS), ezam0002@um.edu.mt (EZ) *Corresponding author Received: 6 May 2011 / Accepted: 21 June 2011 / Published online: 20 July 2011 Abstract The spotted scat Scatophagus argus (Linnaeus, 1766) is recorded for the first time from Malta and the Mediterranean from fish offered for sale at a Maltese fish market. Interviews with fish sellers and fishermen showed that this fish is caught occasionally in small numbers in trammel nets from shallows on seagrass meadows in the southeast of Malta and that it has been present since at least 2007. The native range of the species is the Indian Ocean and the tropical to warm temperate Pacific but the species is commercially available as a brackish water aquarium fish. Given that this species has also been regularly imported into Malta by the aquarium trade since at least 1986, an escape or deliberate release by an aquarist seem to be the most probably mode of introduction. It is surprising that this euryhaline species which requires brackish water to complete its life cycle should have become established in Malta where there is a dearth of such habitats. Key words: Malta, central Mediterranean, alien species, aquarium trade, brackish water Introduction The number of non-indigenous fishes recorded from the Mediterranean shows an increasing trend with time and the tally is presently some 149 species (Zenetos et al. 2010). Much work has been done on the origins of this non-native fauna. The picture that has emerged is that most species have entered autochthonously from the Red Sea via the Suez Canal and from the NE Atlantic via the Strait of Gibraltar, and that once inside the Mediterranean, some have expanded their range, driven by a warming trend of the Mediterranean surface waters, in some cases assisted by human-mediated dispersal (Galil 2008, 2009; Ben Rais Lasram and Mouillot 2009; Occhipinti-Ambrogi and Galil 2010; Zenetos et al. 2010). However, for some species, it is not always clear how they arrived in the Mediterranean. For example, Omobranchus punctatus (Valenciennes, 1836) is an Indo- Pacific blenny that does not occur in the Red Sea but a single specimen was recorded from the port of Ashdod, Israel in 2003 (Golani 2004); it is possible that this species reached the Suez Canal through ship-mediated transport (Bath 1980) and thence the Mediterranean. Similarly, the circumtropical Bregmaceros atlanticus Goode and Bean, 1886 was first recorded as a single specimen from the Strait of Sicily in 1965, then in 2004 and 2006 from off the coasts of Turkey and Israel in numbers; Goren and Galil (2006) speculate that, given its wide distribution, B. atlanticus may occur as yet undiscovered populations in the Red Sea from where it entered the Mediterranean, or else it may have been introduced with ballast water. For some non-indigenous species, it is almost certain that access to the Mediterranean was gained through human introduction (Galil 2009). Particularly clear cut examples are those where the species in question do not occur anywhere near the two entry points to the Mediterranean, and therefore the possibility of autochthonous introduction is remote. Examples of such species are the single specimen of Epinephelus merra Bloch, 1793 from the Indo-Pacific excluding the Red Sea, captured off the coast of Île des Embiez, France in 2004 (Lelong 2005), the single specimen of Elates ransonnetti (Steindachner, 1876) from the Western Central Pacific, introduced to the Gulf of Taranto, Italy in 2005 (Mastrototaro et al. 2007), Tridentiger S79

E. Zammit and P. Schembri trigonocephalus (Gill, 1859) from the North West Pacific, recorded in 2006 from Ashdod Harbor, Israel, where it occurs in groups (Goren et al. 2009), and most recently, Oplegnathus fasciatus (Temminck et Schlegel, 1844) from the North West and Eastern Central Pacific, recorded from two specimens from Malta in 2009 (Schembri et al. 2010). Here we report on another species of Pacific fish that has been introduced into the Maltese Islands. What is interesting about this record is that this species was apparently introduced since at least 2007 and that it may have become established in Maltese waters, even though initially it would seem an unlikely candidate for colonization given that it is a euryhaline species. Records The fish first came to our attention on 14 March 2011 when a colleague spotted unfamiliar fish offered for sale at the Marsaxlokk Sunday fish market. The seller had four such fish ranging in size from 64mm TL to 127mm TL. On being questioned, the seller stated that the fish were caught locally but he did not know what they were or where they were caught. Unfortunately, at the time, our informant did not acquire any of the fish; however, a specimen (Figure 1) was recovered later the same day from a pile of fish discards left by the fish sellers at the end of the market day. This species was identified by us as Scatophagus argus (Linnaeus, 1766). Subsequent visits to the Marsaxlokk fish market over the next few weeks did not result in observing any more specimens. However, three of four fish sellers at the market, when shown a photograph of the fish, recognized it as one they had offered for sale in the past. According to these sellers, this species had only recently appeared and two of them stated that it was caught in gill nets but they did not know from where and neither could they tell us which fishermen had supplied them. Next we interviewed fishermen. One remembered catching a similar fish he did not recognize in a trammel net on 17 February 2011; fortunately however, a photograph of the fish had been taken and this too was identified as S. argus. Another fisherman immediately recognised the fish as one he occasionally catches in trammel nets from depths of around 1.5m on seagrass (Posidonia oceanica) meadows in the southeast of Malta from Zurrieq to Xrobb l-ghagin. The fisher did not recall when the fish first appeared but he had caught it since at least 2007, as he remembered catching the fish in numbers in that year. According to our informant, at the time, the fish occurred in small groups of individuals of length ca 8-10cm; subsequently the fish became rare and at present he only catches one or two fish, which are however of larger size (ca 25cm length). He now mainly catches these fish in the Xrobb l-ghagin area of southern Malta. Remarks and discussion We have no reason to doubt that Scatophagus argus is being caught in local waters in small numbers and all indications point to this species having established a breeding population since at least 2007, but has been overlooked until now. This is therefore a new addition to the nonindigenous fish fauna of the Maltese Islands, and as far as we are aware, also the first report of this species occurring in the wild in the Mediterranean. This is an unexpected occurrence. The spotted scat has a native range that includes practically the whole of the coastal area of the Indian Ocean and the tropical, subtropical and warm temperate Pacific, with a few rare records from as far north as the southern Kuril Islands (references in Kharin and Milovankin 2008); however it does not seem to occur in the Red Sea (Froese and Pauly 2011). A single individual was collected off Cedar Key, Levy County, Florida, in 1992 (Schofield 2009). The fish is euryhaline and eurytopic and has been reported from such diverse freshwater, brackish and marine habitats as the lower reaches of rivers, estuaries, mangrove swamps, the surf zone of beaches, coastal mudflats and harbours (Barry and Fast 1992; Ghandi 2002; Yoshimura et al. 2003). The fish has a reputation for being coprophagous (hence the generic name), however this does not seem to be the case since Barry and Fast (1992) report it to be herbivorous on algae on the basis of stomach content analysis of freshly captured fish, while Ghandi (2002) reports it feeding mainly on multicellular algae and detritus but also opportunistically taking other food including small benthic invertebrates. Wongchinawit and Paphavasit (2009) consider the feeding strategy to change as the fish ages, with the larvae feeding on phytoplankton near the surface, juvenile fish feeding on benthic diatoms, zooplankton, benthic invertebrates and S80

Scatophagus argus in the Maltese Islands Figure 1. Specimen of Scatophagus argus recovered from the Marsaxlokk fish market, Malta on 14 March 2011. Photograph by Edwin Zammit. detritus, and the adults being mainly detritivorous and opportunistic predators on benthic invertebrates. Barry and Fast (1992) report fish to attain sexual maturity at 14cm SL for females and 12cm SL for males; females may reach a size of 28cm SL and males 27cm SL (Barry and Fast 1992), however fish as large as 33.4cm TL have been caught (Khan 1979). In the Philippines, the fish spawn in June, coincident with the onset of the monsoon rains, and recruitment peaks in August (Barry and Fast 1992). The spotted scat is considered a trash fish in some parts of its range but as an important food species in others, for example, southern and south-eastern Asia (Barry and Fast 1992). It has been introduced as an aquaculture species in Taiwan, however, it is of minor importance (Liao et al. 2001). The species is of commercial importance as a brackish water aquarium fish and juveniles are collected in numbers from the wild for the aquarium trade (Barry and Fast 1992; Froese and Pauly 2011; The Aquarium Wiki 2011) There do not seem to be any reports of aquarists breeding this fish, a situation attributed to the apparent need of the species for different ambient salinities during ontogeny; it seems that the fry and juveniles live in brackish water (Barry and Fast 1992) but adults need full strength seawater to breed (Hering 2000). The obvious question that arises is how did the fish reach the Maltese Islands. Since there are no reports of this species occurring in the wild in the Mediterranean, it does not seem likely that the fish arrived in Malta from elsewhere in the Mediterranean through dispersal or introduction from an established population. Given its natural habitat, neither does it seem likely that the fish was transported by shipping or other maritime transport from outside the Mediterranean in the manner that Oplegnathus fasciatus has reached Malta from the Pacific (Schembri et al. 2010). Introduction via aquaculture is also ruled out. Given that this fish is a popular aquarium species, the most probable mode of introduction is the aquarium trade. Consequently we checked importation records and visited aquarium shops to enquire about availability of the species. Records of imports from non-european Union countries show that since 2007, Scatophagus argus, Scatophagus rubrifrons and unspecified Scatophagus spp. have been imported into Malta from Indonesia, Thailand, Singapore and Malaysia by different importers under a freshwater fish licence. There may have been additional imports from EU member states, but since no import licence is required for intra-eu movement of goods, there are no records of such. Species of Scatophagus have been imported for S81

E. Zammit and P. Schembri years before 2007 (Joseph Abela Medici, personal communication, 2011). Visits to three large aquarium shops showed that all either had the fish on display or on order from Indonesia or Asia. The species in question were given as Green scat Scatophagus argus, Red scat Scatophagus argus atromaculatus, and Red tiger scat Scatophagus tetracanthus, all in the size range 2 6.5cm. Searches in the archives of Maltese on-line aquarium forums revealed correspondence that showed that some correspondents had been keeping species of Scatophagus (reported as S. atromaculatus or Scatophagus rubrifrons ) since at least 1986. Chaetodon atromaculatus Bennett, 1830 is a junior synonym of S. argus and is considered a colour morph of S. argus often also referred to as Scatopagus argus rubrifrons ; Barry and Fast (1992) are of the opinion that rubrifrons is a juvenile stage in the development of S. argus and these fish develop the adult brownish-green coloration with dark spots as they grow older. Nonetheless, there seem to be regional differences in the colour pattern of juvenile fish (Kottelat 2001). Scatophagus tetracanthus (Lacepède, 1802) is a valid species that is easily distinguished from S. argus by its vertical dark bars. Therefore, there has been ample scope for introduction of the spotted scat into Maltese marine waters through the aquarium trade. We speculate that this most likely happened when fish being kept in a home aquarium became too large for the tank and were released into the sea. Online aquarist forums frequently warn that the fish grow rapidly to a size (20 30cm) that requires large holding tanks, which are probably beyond what most home aquarists can cope with. The single record of an alien S. argus from Florida is also attributed to an aquarium release (Schofield 2009). What is surprising given the requirement for brackish water as part of the life cycle of the fish, is that the species may have managed to establish a breeding population in spite of the lack of any rivers or even streams in the Maltese Islands or of any brackish water anywhere in the vicinity of the area where the fish are reportedly caught from. There is always the possibility that the repeated capture of specimens of S. argus is due to multiple releases over time, but this seems unlikely. We wish to sound a note of caution concerning assessment of potential impact of the importation of non-indigenous fish for the aquarium trade on local biodiversity. One of us (PJS) has often participated in such assessments and given the natural area of distribution of S. argus, the mostly subtropical to tropical climates in which the fish occurs, the reported temperature range (20 28 C; Froese and Pauly 2011) relative to Maltese sea surface temperatures, and the reported requirement for brackish water habitats in relation to the dearth of such habitats in the Maltese Islands, this species would have been assessed as of low risk of establishment. Nonetheless, S. argus seems to have established itself in Maltese waters, suggesting that such risk assessments are not foolproof. Acknowledgements We thank Franky Scerri and Jonathan Sammut for bringing the fish to our attention and for collecting the specimen; we also thank fishermen J. Abela and J. Caruana for providing us with information on the occurrence of the species in Maltese waters. We are grateful to the numerous persons who helped us in the preparation of this paper by generously providing information, especially Mark Gatt (Agriculture and Fisheries Regulation Department, Malta) for a photograph of the juvenile fish, and Joseph Abela Medici (Malta Environment and Planning Authority, Malta) for information on importation and aquarium culture of the species. An anonymous referee suggested improvements to an earlier draft of this paper, for which we are thankful. References Barry TP, Fast AW (1992) Biology of the spotted scat (Scatophagus argus) in the Philippines. Asian Fisheries Science 5: 163 179 Bath H (1980) Omobranchus punctatus (Valenciennes 1836) neu im Suez-Kanal (Pisces: Blenniidae). Senkenbergiana Biologia 60: 317 319 Ben Rais Lasram F, Mouillot D (2009) Increasing southern invasion enhances congruence between endemic and exotic Mediterranean fish fauna. Biological Invasions 11: 697 711, http://dx.doi.org/10.1007/s10530-008-9284-4 Froese R, Pauly D (eds) (2011) FishBase. World Wide Web electronic publication, http://www.fishbase.org, version (02/2011) (Accessed 30 April 2011) Galil BS (2008) Alien species in the Mediterranean Sea which, when, where, why? Hydrobiologia 606: 105 116, http://dx.doi.org/10.1007/s10750-008-9342-z Galil BS (2009) Taking stock: inventory of alien species in the Mediterranean Sea. Biological Invasions 11: 359 372, http://dx.doi.org/10.1007/s10530-008-9253-y Gandhi V (2002) Studies on the food and feeding habits of cultivable butterfish Scatophagus argus (Cuv. and Val.). Journal of the Marine Biological Association of India 44 (1-2): 115 121 Golani D (2004) First record of the muzzled blenny (Osteichthyes: Blenniidae: Omobranchus punctatus) from the Mediterranean, with remarks on ship-mediated fish introduction. Journal of the Marine Biological Association of the United Kingdom 84: 851 852, http://dx.doi.org/10.1017/s0025315404010057h S82

Scatophagus argus in the Maltese Islands Goren M, Galil BS (2006) Additional records of Bregmaceros atlanticus in the eastern Mediterranean an invasion through the Suez Canal or in ballast water? Marine Biodiversity Records 1e 42: 1 3 Goren M, Gayer K, Lazarus N (2009) First record of the Far East chameleon goby Tridentiger trigonocephalus (Gill, 1859) in the Mediterranean Sea. Aquatic Invasions 4: 413 415, http://dx.doi.org/10.3391/ai.2009.4.2.22 Hering W (2000) Scatophagus argus - how long can you keep them? Calypso Fish and Aquaria Club, London, England. Aquarticles, http://www.aquarticles.com/ articles/ breeding/hering_scats.html (Accessed 30 April 2011) Khan MZ (1979) A note on the occurrence of a large sized spotted butterfish Scatophagus argus (Linnaeus) at Rajpara (Gujarat). Journal of the Marine Biological Association of India 21(1-2): 193 194 Kharin VE, Milovankin PG (2008) A new finding of rare species Scatophagus argus (Scatophagidae) in Russian waters. Journal of Ichthyology 48(9): 822 824, http://dx.doi.org/10.1134/s0032945208090130 Kottelat M (2001) Scatophagidae. In: Carpenter KE, Niem VH (eds) (2001) FAO species identification guide for fishery purposes. The living marine resources of the Western Central Pacific. Volume 6. Bony fishes part 4 (Labridae to Latimeriidae), estuarine crocodiles, sea turtles, sea snakes and marine mammals. FAO, Rome, pp 3623 3626 Lelong P (2005) Capture d un macabit, Epinephelus merra Bloch, 1793 (Poisson, Serranidae), en Méditerranée nord-occidentale. Marine Life 15(1-2): 63 66 Liao CI, Su HM, Chang EY (2001) Techniques in finfish larviculture in Taiwan. Aquaculture 200: 1 31, http://dx.doi.org/10.1016/s0044-8486(01)00692-5 Mastrototaro F, Carlucci R, Capezzuto F, Sion L (2007). First record of dwarf flathead Elates ransonnetii (Platycephalidae) in the Mediterranean Sea (North- Western Ionian Sea). Cybium 31(3): 393 394 Occhipinti-Ambrogi A, Galil B (2010) Marine alien species as an aspect of global change. Advances in Oceanography and Limnology 1(1): 143 156, http://dx.doi.org/10.1080/19475721003743876 Schembri PJ, Bodilis P, Evans J, Francour P (2010) Occurrence of Oplegnathus fasciatus (Temminck et Schlegel, 1844) (Actinopterygii: Perciformes: Oplegnathidae) in Malta (Central Mediterranean) with a discussion on possible modes of entry. Acta Ichthyologica et Piscatoria 40(2): 101 104, http://dx.doi.org/10.3750/aip2010.40.2.01 Schofield PJ (2009) Scatophagus argus. USGS Nonindigenous Aquatic Species Database, Gainesville, FL, Revision Date: 4/27/2009. http://nas.er.usgs.gov/queries/ FactSheet.aspx?speciesID=945 (Accessed 30 April 2011) The Aquarium Wiki (2011) Green Scat (Scatophagus argus), last modified on 23 February, 11. http://theaqua riumwiki.com/scatophagus_argus (Accessed 30 April 2011) Wongchinawit S, Paphavasit N (2009) Ontogenetic niche shift in the spotted scat, Scatophagus argus, in Pak Phanang estuary, Nakhon Si Thammarat province, Thailand. The Natural History Journal of Chulalongkorn University 9(2): 143 169 Yoshimura K, Yamane T, Utsugi K, Kohno H (2003) Seasonal occurrence and abundance of the spotted scat, Scatophagus argus, in surf zones and rivers of the northern coast of Bali, Indonesia. Mer 41 (2 3): 82 85 Zenetos A, Gofas S, Verlaque M, Inar ME, García Raso E, Bianchi CN, Morri C, Azzurro E, Bilecenoglu M, Froglia C, Siokou I, Violanti D, Sfriso A, San Martín G, Giangrande A, Katağan T, Ballesteros E, Ramos-Esplá A, Mastrototaro F, Ocaña O, Zingone A, Gambi MC, Streftaris N (2010) 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. Mediterranean Marine Science 11(2): 381 493 S83