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Evidence for self-sustaining populations of Arcuatula senhousia in the UK and a review of this species’ potential impacts within Europe

  • 1.

    Crooks, J. A. The population ecology of an exotic mussel, Musculista senhousia, in a Southern California bay. Estuaries 19, 42–50 (1996).

    Article 

    Google Scholar 

  • 2.

    Huber, M. Compendium of Bivalves: A Full-Color Guide to 3,300 of the World’s Marine Bivalves: A Status on Bivalvia After 250 Years of Research. (ConchBooks, 2010).

  • 3.

    Kulikova, V. A. Morphology, seasonal population dynamics, and settlement of larvae of the bivalve mollusc Musculista senhousia in Busse Lagoon (South Sakhalin). Sov. J. Mar. Biol. 4, 769–773 (1978).

    Google Scholar 

  • 4.

    Chuang, S. H. On Malayan shores: a log cabin book. (Muwu Shosa, 1961).

  • 5.

    CABI. Arcuatula senhousia [original text by A. Zenetos]. In: Invasive Species Compendium. CAB International, Wallingford, UK. www.cabi.org/isc (2019).

  • 6.

    Kincaid, T. The acclimitization of marine animals in Pacific northwest waters. Min. Conchol Club South. Calif. 72, 1–3 (1947).

    Google Scholar 

  • 7.

    Willan, R. C. Successful establishment of the Asian mussel Musculista senhousia (Benson in Cantor, 1842) in New Zealand. Rec. Auckl. Inst. Museum 22, 85–96 (1985).

    Google Scholar 

  • 8.

    Willan, R. C. The mussel Musculista senhousia in Australasia; another aggressive alien highlights the need for quarantine at ports. Bull. Mar. Sci. 41, 475–489 (1987).

    ADS 

    Google Scholar 

  • 9.

    Hoenselaar, H. J. & Hoenselaar, J. Musculista senhousia (Benson in Cantor, 1842) in the western Mediterranean (Bivalvia, Mytilidae). Basteria 53, 73–76 (1989).

    Google Scholar 

  • 10.

    Mastrototaro, F., Matarrese, A. & D’Onghia, G. Occurrence of Musculista senhousia (Mollusca: Bivalvia) in the Taranto seas (eastern-central Mediterranean Sea). J. Mar. Biol. Ass. UK 83, 1279–1280 (2003).

    Article 

    Google Scholar 

  • 11.

    Micu, D. First record of Musculista senhousia (Brenson in Cantor, 1842) from the Black Sea. (Abstracts of the International Symposium of Malacology, 19–22 Aug 2004, Sibiu, Romania. p. 47, 2004).

  • 12.

    Ruci, S., Kasemi, D. & Beqiraj, S. Data on macrozoobenthos in rocky areas of the Adriatic Sea of Albania. IMPACT Int. J. Res. Appl. Nat. Soc. Sci. 2, 63–70 (2014).

  • 13.

    Kovalev, E. A., Zhivoglyadova, L. A., Revkov, N. K., Frolenko, L. N. & Afanasyev, D. F. First record of the bivalve Arcuatula senhousia (Benson, 1842) in the Russian part of the the Azov-Black Sea basin. Russ. J. Biol. Invasions 8, 316–320 (2017).

    Article 

    Google Scholar 

  • 14.

    Lourenço, P. M., Henriques, M., Catry, I., Pedro, J. & Catry, T. First record of the invasive Asian date mussel Arcuatula senhousia (Benson, 1842) (Mollusca: Bivalvia: Mytilidae) in West Africa. J. Nat. Hist. 52, 2567–2571 (2018).

  • 15.

    Barash, A. & Danin, Z. The Indo-Pacific species of Mollusca in the Mediterranean and notes on a collection from the Suez Canal. Isrl. J. Zool. 21, 301–374 (1972).

    Google Scholar 

  • 16.

    George, E. L. & Nair, N. B. The growth rates of the estuarine mollusc Musculista arcuatula Yamamoto and Habe (Bivalvia: Mytilidae). Hydrobiologia 45, 239–248 (1974).

    Article 

    Google Scholar 

  • 17.

    Morton, B. Life-history characteristics and sexual strategy of Mytilopsis sallei (Bivalvia: Dreissenacea), introduced into Hong Kong. J. Zool. 219, 469–485 (1989).

    Article 

    Google Scholar 

  • 18.

    Sakai, A. K. et al. The population biology of invasive species. Annu. Rev. Ecol. Evol. Syst. 32, 305–332 (2001).

    Article 

    Google Scholar 

  • 19.

    Sgro, L., Turolla, E., Rossi, R. & Mistri, M. Sexual maturation and larval development of the immigrant Asian date mussel, Musculista senhousia, in a Po River deltaic lagoon. Ital. J. Zool. 69, 223–228 (2002).

    Article 

    Google Scholar 

  • 20.

    CIESM. Musculista senhousia. In: Atlas of Exotic Species in the Mediterranean. The Mediterranean Science Commission (CIESM). https://www.ciesm.org/atlas (2005).

  • 21.

    Cohen, A. N. Musculista senhousia. In: The Exotics Guide: Non-native Marine Species of the North American Pacific Coast. Centre for Research on Aquatic Bioinvasions; San Francisco Estuary Institute. www.exoticsguide.org (2011).

  • 22.

    Morton, B. Some aspects of the biology, population dynamics, and functional morphology of Musculista senhousia Benson (Bivalvia, Mytilidae). Pac. Sci. 28, 19–33 (1974).

    Google Scholar 

  • 23.

    Mistri, M. Ecological characteristics of the invasive Asian date mussel, Musculista senhousia, in the Sacca di Goro (Adriatic Sea, Italy). Estuaries 25, 431–440 (2002).

    Article 

    Google Scholar 

  • 24.

    Bachelet, G. et al. A round-the-world tour almost completed: first records of the invasive mussel Musculista senhousia in the north-east Atlantic (southern Bay of Biscay). Mar. Biodivers. Rec. 2, e119 (2009).

    Article 

    Google Scholar 

  • 25.

    Holman, L. E. et al. Detection of introduced and resident marine species using environmental DNA metabarcoding of sediment and water. Sci. Rep. 9, 1 (2019).

    CAS 
    Article 

    Google Scholar 

  • 26.

    Barfield, P., Holmes, A., Watson, G. & Rowe, G. First evidence of Arcuatula senhousia (Benson, 1842), the Asian date mussel in UK waters. J. Conchol. 43, 217–222 (2018).

    Google Scholar 

  • 27.

    ICES. Maps: ICES statistical rectangles. https://www.ices.dk/data/maps/Pages/ICES-statistical-rectangles.aspx (2020).

  • 28.

    World Sea Temperature. Southampton Sea Temperature. https://www.seatemperature.org/europe/united-kingdom/southampton.htm (2020).

  • 29.

    Natural England. Solent Maritime EMS. Natural England, UK. http://publications.naturalengland.org.uk/publication/3194402 (2001).

  • 30.

    Katsanevakis, S., Wallentinus, I., Zenetos, A., Leppäkoski, E. & Çinar, M. E. Impacts of invasive alien marine species on ecosystem services and biodiversity: a pan-European review. Aquat. Invas. 9, 391–423 (2014).

    Article 

    Google Scholar 

  • 31.

    Bouma, T. J., Olenin, S. & Reise, K. Ecosystem engineering and biodiversity in coastal sediments: posing hypotheses. Helgol. Mar. Res. 63, 95–106 (2009).

    ADS 
    Article 

    Google Scholar 

  • 32.

    NCC. Towards a Framework for Defining and Measuring Change in Natural Capital. Working Paper 1. (Natural Capital Committee (NCC), 2014).

  • 33.

    Jeschke, J. M. et al. Defining the impact of non-native species. Conserv. Biol. 28, 1188–1194 (2014).

    PubMed 
    PubMed Central 
    Article 

    Google Scholar 

  • 34.

    Reusch, T. B. H. & Williams, S. L. Variable responses of native eelgrass Zostera marina to a non-indigenous bivalve Musculista senhousia. Oecologia 113, 428–441 (1998).

  • 35.

    Albentosa, M. Effect of food concentration inside eelgrass beds on the energy balance of the invasive mussel Musculista senhousia. Mar. Fresh. Behav. Physiol. 35, 247–260 (2002).

    CAS 
    Article 

    Google Scholar 

  • 36.

    Allen, B. J. & Williams, S. L. Native eelgrass Zostera marina controls growth and reproduction of an invasive mussel through food limitation. Mar. Ecol. Prog. Ser. 254, 57–67 (2003).

  • 37.

    Lau, S. C. Y., Brettell, D. L. D. F. & Astudillo, J. C. Rapid assessment of the invasive Xenostrobus securis on cultured oysters in Hong Kong. Reg. Stud. Mar. Sci. 17, 11–16 (2018).

    Article 

    Google Scholar 

  • 38.

    Mistri, M., Rossi, R. & Fano, E. A. The spread of the alien bivalve (Musculista senhousia) in the Sacca Di Goro lagoon (Adriatic Sea, Italy). J. Moll. Stud. 70, 257–261 (2004).

    Article 

    Google Scholar 

  • 39.

    Hosozawa, T. et al. Temporal change in the spatial distribution of Asian bag mussel Arcuatula senhousia (Bivalvia, Mytilidae) population in Ohashi-River, Shimane Prefecture. . Japanese J. Benthol. 70, 1–12 (2015).

    Google Scholar 

  • 40.

    Crooks, J. A. Habitat alteration and community-level effects of an exotic mussel, Musculista senhousia. Mar. Ecol. Prog. Ser. 162, 137–152 (1998).

  • 41.

    Crooks, J. A. & Khim, H. S. Architectural vs. biological effects of a habitat-altering, exotic mussel, Musculista senhousia. J. Exp. Mar. Bio. Ecol. 240, 53–75 (1999).

  • 42.

    Watson, G. J., Murray, J. M., Schaefer, M. & Bonner, A. Bait worms: a valuable and important fishery with implications for fisheries and conservation management. Fish Fish. 18, 374–388 (2016).

    Article 

    Google Scholar 

  • 43.

    Clarke, L. J. et al. Using remote sensing to quantify fishing effort and predict shorebird conflicts in an intertidal fishery. Ecol. Inform. 50, 136–148 (2019).

    Article 

    Google Scholar 

  • 44.

    European Commission. Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a framework for Community action in the field of water policy. (2000).

  • 45.

    Siah, A., Pellerin, J., Amiard, J. C., Pelletier, E. & Viglino, L. Delayed gametogenesis and progesterone levels in soft-shell clams (Mya arenaria) in relation to in situ contamination to organotins and heavy metals in the St. Lawrence River (Canada). Comp. Biochem. Physiol. C Toxicol. Pharmacol. 135, 145–156 (2003).

  • 46.

    Harding, S., Nelson, L. & Glover, T. Solent Oyster Restoration Project Management Plan (Blue Marine Foundation (BLUE), 2016).

    Google Scholar 

  • 47.

    Hooper, T. et al. Application of the natural capital approach to the marine environment to aid decision-making. Ecosyst. Serv. 38, 100947 (2019).

    MathSciNet 
    Article 

    Google Scholar 

  • 48.

    Thornton, A. et al. Initial natural capital accounts for the UK marine and coastal environment. Final Report. Report prepared for the Department for Environment Food and Rural Affairs. (Joint Nature Conservation Committee (JNCC); Centre for Environment, Fisheries and Aquaculture Science (CEFAS), 2019).

  • 49.

    Worsfold, T. M., Pennisi, N. & Ashelby, C. W. Theora lubrica Gould, 1861 (Bivalvia: Semelidae), new to the UK, with notes on associated non-native species, and an earlier date of introduction for Arcuatula senhousia (Bivalvia: Mytilidae) to the UK. J. Conchol. 43, 665–674 (2020).

    Google Scholar 

  • 50.

    Wolff, W. J. & Reise, K. Oyster Imports as a Vector for the Introduction of Alien Species into Northern and Western European Coastal Waters. in Invasive Aquatic Species of Europe. Distribution, Impacts and Management (eds. Leppäkoski, E., Gollasch, S. & Olenin, S.) 193–205 (Springer, 2002).

  • 51.

    Slack-Smith, S. M. & Brearley, A. Musculista senhousia (Benson, 1842); a mussel recently introduced into the Swan River estuary, Western Australia (Mollusca: Mytilidae). Rec. West. Aust. Museum 13, 225–230 (1987).

    Google Scholar 

  • 52.

    Slijkerman, D. M. E. et al. Monitoring Groningen Sea Ports. Non-indigenous species and risks from ballast water in Eemshaven and Delfzijl. Wageningen Marine Research report C045/17 A. (University of Wageningen, 2017).

  • 53.

    Kim, H. M. et al. Epibionts associated with floating Sargassum horneri in the Korea strait. Algae 34, 303–313 (2019).

    CAS 
    Article 

    Google Scholar 

  • 54.

    Reusch, T. B. H. & Williams, S. L. Macrophyte canopy structure and the success of an invasive bivalve. Oikos 84, 398–416 (1999).

    Article 

    Google Scholar 

  • 55.

    Mastrototaro, F., Matarrese, A. & D’Onghia, G. Observations on the recruitment of Musculista senhousia (Mollusca, Bivalvia) in the Taranto seas (Eastern-Central Mediterranean Sea). Biogeographia 25, 55–63 (2004).

    Google Scholar 

  • 56.

    Verween, A., Vincx, M. & Degraer, S. The effect of temperature and salinity on the survival of Mytilopsis leucophaeata larvae (Mollusca, Bivalvia): The search for environmental limits. J. Exp. Mar. Bio. Ecol. 348, 111–120 (2007).

    Article 

    Google Scholar 

  • 57.

    Pilditch, C. A. & Grant, J. Effect of temperature fluctuations and food supply on the growth and metabolism of juvenile sea scallops (Placopecten magellanicus). Mar. Biol. 134, 235–248 (1999).

    Article 

    Google Scholar 

  • 58.

    Vélez, A. & Epifanio, C. E. Effects of temperature and ration on gametogenesis and growth in the tropical mussel Perna perna (L.). Aquaculture 22, 21–26 (1981).

    Article 

    Google Scholar 

  • 59.

    Liang, Z. L., Kim, Y. H., Zhang, Z. F., Lim, S. M. & Kang, K. H. Water temperature and salinity tolerance of embryos and spat of the mussel, Musculista senhousiaKorean J. Malacol. 25, 179–187 (2009).

    Google Scholar 

  • 60.

    Inoue, T. & Yamamuro, M. Respiration and ingestion rates of the filter-feeding bivalve Musculista senhousia: implications for water-quality control. J. Mar. Syst. 26, 183–192 (2000).

    Article 

    Google Scholar 

  • 61.

    Asif, J. H. & Krug, P. J. Lineage distribution and barriers to gene flow among populations of the globally invasive marine mussel Musculista senhousia. Biol. Invas. 14, 1431–1444 (2012).

    Article 

    Google Scholar 

  • 62.

    Creese, R., Hooker, S., de Luca, S. & Wharton, Y. Ecology and environmental impact of Musculista senhousia (Mollusca: Bivalvia: Mytilidae) in Tamaki Estuary, Auckland, New Zealand. New Zeal. J. Mar. Freshw. Res. 31, 225–236 (1997).

    Article 

    Google Scholar 

  • 63.

    Crooks, J. A. & Soulé, M. Lag times in population explosions of invasive species: causes and implications. in Invasive Species and Biodiversity Management (eds. Sandlund, O. T., Schei, P. J. & Viken, A.) 103–125 (Kluwer Academic Publishers, 1999).

  • 64.

    Yamamuro, M. & Jun, Æ. What prevents Musculista senhousia from constructing byssal thread mats in estuarine environments? A case study focusing on Lake Shinji and nearby estuarine waters. Lanscape Ecol Eng 6, 23–28 (2010).

    Article 

    Google Scholar 

  • 65.

    Scirocco, T. & Urbano, F. The population of the non-indigenous bivalve Arcuatula senhousia of the Varano Lagoon (Adriatic Sea, Italy). J. Environ. Sci. Eng. 7, 345–353 (2018).

    Google Scholar 

  • 66.

    Yamamuro, M., Oka, N. & Hiratsuka, J. Predation by diving ducks on the biofouling mussel Musculista senhousia in a eutrophic estuarine lagoon. Mar. Ecol. Prog. Ser. 174, 101–106 (1998).

    ADS 
    Article 

    Google Scholar 

  • 67.

    Reusch, T. B. H. Native predators contribute to invasion resistance to the non-indigenous bivalve Musculista senhousia in southern California, USA. . Mar. Ecol. Prog. Ser. 170, 159–168 (1998).

    ADS 
    Article 

    Google Scholar 

  • 68.

    Kushner, R. B. & Hovel, K. A. Effects of native predators and eelgrass habitat structure on the introduced Asian mussel Musculista senhousia (Benson in Cantor) in southern California. J. Exp. Mar. Biol. Ecol. 332, 166–177 (2006).

    Article 

    Google Scholar 

  • 69.

    Sugawara, K., Ebihara, T., Ishii, T., Aoki, K. & Uchida, A. Outbreak of a mussel Brachidontes senhousia in Urayasu shellfish rearing ground. Rep. Chiba Prefect. Inshore Fish. Exp. Stn. 3, 83–92 (1961).

    Google Scholar 

  • 70.

    Uchida, A. Growth of a mussel Musculista senhousia and the influence of Musculista senhousia on the clam Tapes philippinarum. Rep. Chiba Prefect. Inshore Fish. Exp. Stn. 7, 69–78 (1965).

    Google Scholar 

  • 71.

    Crooks, J. A. Assessing invader roles within changing ecosystems: historical and experimental perspectives on an exotic mussel in an urbanized lagoon. Biol. Invasions 3, 23–36 (2001).

    Article 

    Google Scholar 

  • 72.

    Castorani, M. C. N. & Hovel, K. A. Invasive prey indirectly increase predation on their native competitors. Ecology 96, 1911–1922 (2015).

    PubMed 
    Article 

    Google Scholar 

  • 73.

    FAO. Fisheries Global Information System (FIGIS). Food and Agriculture Organization (FAO). http://www.fao.org/figis/servlet/TabSelector (2017).

  • 74.

    CEFAS. Sanitary survey of the Solent. CEFAS report on behalf of the Food Standards Agency, to demonstrate compliance with the requirements for classification of bivalve mollusc production areas in England and Wales under of EC Regulation No. 854/2004. (Centre for Environment, Fisheries and Aquaculture Science (CEFAS), 2013).

  • 75.

    Humphreys, J., Caldow, R. W. G., Mcgrorty, S., West, A. D. & Jensen, A. C. Population dynamics of naturalised manila clams Ruditapes philippinarum in british coastal waters. Mar. Biol. 151, 2255–2270 (2007).

    Article 

    Google Scholar 

  • 76.

    Pranovi, F. et al. An ecological imbalance induced by a non-native species: The Manila clam in the Venice Lagoon. Biol. Invasions 8, 595–609 (2006).

    Article 

    Google Scholar 

  • 77.

    Kikuchi, T. & Peres, J. M. Consumer ecology of seagrass beds. In Seagrass Ecosystems A Scientific Perspective (eds McRoy, C. P. & Helffrich, C.) (Marcel Dekker Inc, 1977).

    Google Scholar 

  • 78.

    Kikuchi, T. Ecology and biological production of Lake Naka-umi and adjacent regions. 3. Macro-benthic communities of Lake Shinji-ko and Lake Naka-umi. Spec. Publ. from Seto Mar. Biol. Lab. 2, 21–44 (1964).

  • 79.

    Jackson, E. L., Rees, S. E., Wilding, C. & Attrill, M. J. Use of a seagrass residency index to apportion commercial fishery landing values and recreation fisheries expenditure to seagrass habitat service. Conserv. Biol. 29, 899–909 (2015).

    PubMed 
    Article 
    PubMed Central 

    Google Scholar 

  • 80.

    Peters, J. R., McCloskey, R. M., Hinder, S. L. & Unsworth, R. K. F. Motile fauna of sub-tidal Zostera marina meadows in England and Wales. Mar. Biodivers. 45, 647–654 (2015).

    Article 

    Google Scholar 

  • 81.

    Unsworth, R. K. F., Nordlund, L. M. & Cullen-Unsworth, L. C. Seagrass meadows support global fisheries production. Conserv. Lett. 12, 1–8 (2019).

    Article 

    Google Scholar 

  • 82.

    Bertelli, C. M. & Unsworth, R. K. F. Protecting the hand that feeds us: Seagrass (Zostera marina) serves as commercial juvenile fish habitat. Mar. Pollut. Bull. 83, 425–429 (2014).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 83.

    UNEP. Out of Blue: The value of seagrasses to the enviroment and to people. (United Nations Environment Programme (UNEP), 2020).

  • 84.

    Jones, B. L. & Unsworth, R. K. F. The perilous state of seagrass in the British Isles. R. Soc. Open Sci. 3, 1–14 (2016).

    Google Scholar 

  • 85.

    de los Santos, C. B. et al. Recent trend reversal for declining European seagrass meadows. Nat. Commun. 10, 1–8 (2019).

    MathSciNet 
    CAS 
    Article 

    Google Scholar 

  • 86.

    Project Seagrass. Project Seagrass. https://www.projectseagrass.org/ (2018).

  • 87.

    Claereboudt, M. R., Bureau, D., Côté, J. & Himmelman, J. H. Fouling development and its effect on the growth of juvenile giant scallops (Placopecten magellanicus) in suspended culture. Aquaculture 121, 327–342 (1994).

    Article 

    Google Scholar 

  • 88.

    Lacoste, E. & Gaertner-Mazouni, N. Biofouling impact on production and ecosystem functioning: a review for bivalve aquaculture. Rev. Aquac. 7, 187–196 (2015).

    Article 

    Google Scholar 

  • 89.

    Renault, T. Appearance and spread of diseases among bivalve molluscs in the northern hemisphere in relation to international trade. OIE Rev. Sci. Tech. 15, 551–561 (1996).

    CAS 
    Article 

    Google Scholar 

  • 90.

    Beaumont, A. R., Hawkins, M. P., Doig, F. L., Davies, I. M. & Snow, M. Three species of Mytilus and their hybrids identified in a Scottish Loch: natives, relicts and invaders?. J. Exp. Mar. Bio. Ecol. 367, 100–110 (2008).

    Article 

    Google Scholar 

  • 91.

    Miller, A., Inglis, G. J., Poulin, R. & Inglis, G. J. Use of the introduced bivalve, Musculista senhousia, by generalist parasites of native New Zealand bivalves. New Zeal. J. Mar. Freshw. Res. 42, 143–151 (2008).

    Article 

    Google Scholar 

  • 92.

    Bierbaum, R. & Shumway, S. E. Filtration and oxygen consumption in mussels, Mytilus edulis, with and without pea crabs, Pinnotheres maculatusEstuaries 11, 264–271 (1988).

    CAS 
    Article 

    Google Scholar 

  • 93.

    Sun, W., Sun, S., Yuqi, W., Baowen, Y. & Weibo, S. The prevalence of the pea crab, Pinnotheres sinensis, and its impact on the condition of the cultured mussel, Mytilus galloprovincialis, in Jiaonan waters (Shandong Province, China). Aquaculture 253, 57–63 (2006).

    Article 

    Google Scholar 

  • 94.

    Morris, J. P., Backeljau, T. & Chapelle, G. Shells from aquaculture: a valuable biomaterial, not a nuisance waste product. Rev. Aquac. 11, 42–57 (2019).

    Article 

    Google Scholar 

  • 95.

    Carlton, J. T. History, biogeography, and ecology of the introduced marine and estuarine invertebrates of the Pacific coast of North America. PhD Thesis. (University of California, 1979).

  • 96.

    Michalek, K., Ventura, A. & Sanders, T. Mytilus hybridisation and impact on aquaculture: A minireview. Mar. Genomics 27, 3–7 (2016).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 97.

    Seed, R. The ecology of Mytilus edulis L. (Lamellibranchiata) on exposed rocky shores. Oecologia 3, 277–316 (1969).

    ADS 
    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 98.

    King, P. A., McGrath, D. & Gosling, E. M. Reproduction and settlement of Mytilus edulis on an exposed rocky shore in Galway bay, west coast of Ireland. J. Mar. Biol. Assoc. United Kingdom 69, 355–365 (1989).

    Article 

    Google Scholar 

  • 99.

    van der Schatte Olivier, A. et al. A global review of the ecosystem services provided by bivalve aquaculture. Rev. Aquac. 1, 1–23. https://doi.org/10.1111/raq.12301 (2018).

    Article 

    Google Scholar 

  • 100.

    Yamamuro, M. & Ishitobi, Y. Seasonal change in a filter-feeding bivalve Musculista senhousia population of a eutrophic estuarine lagoon. J. Mar. Syst. 26, 117–126 (2000).

    Article 

    Google Scholar 

  • 101.

    Broszeit, S., Hattam, C. & Beaumont, N. Bioremediation of waste under ocean acidification: Reviewing the role of Mytilus edulis. Mar. Pollut. Bull. 103, 5–14 (2016).

    CAS 
    PubMed 
    Article 

    Google Scholar 

  • 102.

    Valipour, R., Boegman, L., Bouffard, D. & Rao, Y. R. Sediment resuspension mechanisms and their contributions to high-turbidity events in a large lake. Limnol. Oceanogr. 62, 1045–1065 (2017).

    ADS 
    Article 

    Google Scholar 

  • 103.

    Mistri, M. & Munari, C. The invasive bag mussel Arcuatula senhousia is a CO2 generator in near-shore coastal ecosystems. J. Exp. Mar. Bio. Ecol. 440, 164–168 (2013).

    Article 

    Google Scholar 

  • 104.

    Filgueira, R. et al. An integrated ecosystem approach for assessing the potential role of cultivated bivalve shells as part of the carbon trading system. Mar. Ecol. Prog. Ser. 518, 281–287 (2015).

    ADS 
    Article 
    CAS 

    Google Scholar 

  • 105.

    Reaugh, K. E., Harris, J. M. & Branch, G. M. Further refutation of the primary-secondary settlement hypothesis for the brown mussel Perna perna. African J. Mar. Sci. 29, 545–549 (2007).

    Article 

    Google Scholar 

  • 106.

    Cohen, A. N. Guide to the Exotic Species of San Francisco Bay. San Francisco Estuary Institute, Oakland, California, USA. http://www.exoticsguide.org (2005).

  • 107.

    Como, S. et al. Assessing the impact of the Asian mussel Arcuatula senhousia in the recently invaded Oristano Lagoon-Gulf system (W Sardinia, Italy). Estuar. Coast. Shelf Sci. 201, 123–131 (2018).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 108.

    Ragnarsson, S. Á. & Raffaelli, D. Effects of the mussel Mytilus edulis L. on the invertebrate fauna of sediments. J. Exp. Mar. Bio. Ecol. 241, 31–43 (1999).

    Article 

    Google Scholar 

  • 109.

    Barash, A. L. & Danin, Z. Mollusca from the stomach of Sparus auratus fished in the lagoon or Bardwall. Argamon 2, 97–104 (1971).

    Google Scholar 

  • 110.

    Taylor, D. et al. Facilitation effects of invasive and farmed bivalves on native populations of the sea slug Pleurobranchaea maculata. Mar. Ecol. Prog. Ser. 537, 39–48 (2015).

    ADS 
    CAS 
    Article 

    Google Scholar 

  • 111.

    Herbert, R. J. H., Stillman, R. A., Davies, C. J., Bowgen, K. M. & Hatton, J. The importance of nonnative Pacific oyster reefs as supplementary feeding areas for coastal birds on estuary mudflats. Aquat. Conserv. Mar. Freshw. Ecosyst. 28, 1294–1307 (2018).

    Article 

    Google Scholar 

  • 112.

    Hanna, G. D. Introduced mollusks of western North America. Occ. Pap. Calif. Acad. Sci. 48, 1–108 (1966).

    Google Scholar 

  • 113.

    Vilariño, M. L. et al. Assessment of human enteric viruses in cultured and wild bivalve molluscs. Int. Microbiol. 12, 145–151 (2009).

    PubMed 

    Google Scholar 

  • 114.

    Vilà, M. & Hulme, P. E. Impact of Biological Invasions on Ecosystem Services. (Springer International Publishing Switzerland, 2017). https://doi.org/10.1007/978-3-319-45121-3_5.

  • 115.

    Williams, F. et al. The Economic Cost of Invasive Non-Native Species on Great Britain. Cent. Agric. Biosci. Int. CAB/001/09, 1–199 (2010).

  • 116.

    Watson, S. C. L., Preston, J., Beaumont, N. J. & Watson, G. J. Assessing the natural capital value of water quality and climate regulation in temperate marine systems using a EUNIS biotope classification approach. Sci. Total Environ. (2020)

  • 117.

    Farber, S. C., Costanza, R. & Wilson, M. A. Economic and ecological concepts for valuing ecosystem services. Ecol. Econ. 41, 375–392 (2002).

    Article 

    Google Scholar 

  • 118.

    Melathopoulos, A. P. & Stoner, A. M. Critique and transformation: On the hypothetical nature of ecosystem service value and its neo-Marxist, liberal and pragmatist criticisms. Ecol. Econ. 117, 173–181 (2015).

    Article 

    Google Scholar 

  • 119.

    Faasse, M. A record of the Asian mussel Arcuatula senhousia (Benson in Cantor, 1842) from NW Europe (the Netherlands). Spirula 416, 14–15 (2018).

    Google Scholar 

  • 120.

    Tepolt, C. K. & Somero, G. N. Master of all trades: Thermal acclimation and adaptation of cardiac function in a broadly distributed marine invasive species, the European green crab, Carcinus maenasJ. Exp. Biol. 217, 1129–1138 (2014).

    PubMed 
    Article 

    Google Scholar 

  • 121.

    Guardiola, M., Frotscher, J. & Uriz, M. J. High genetic diversity, phenotypic plasticity, and invasive potential of a recently introduced calcareous sponge, fast spreading across the Atlanto-Mediterranean basin. Mar. Biol. 163, 1–16 (2016).

    Article 

    Google Scholar 

  • 122.

    Shanks, A. L. Pelagic larval duration and dispersal distance revisited. Biol. Bull. 216, 373–385 (2009).

    PubMed 
    Article 

    Google Scholar 

  • 123.

    Tabak, M. A., Webb, C. T. & Miller, R. S. Propagule size and structure, life history, and environmental conditions affect establishment success of an invasive species. Sci. Rep. 8, 1–9 (2018).

    CAS 
    Article 

    Google Scholar 


  • Source: Ecology - nature.com

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