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   The discovery of new deep-sea hydrothermal vent communities in the Southern ocean and implications for biogeography  
   
نویسنده rogers a.d. ,tyler p.a. ,connelly d.p. ,copley j.t. ,james r. ,larter r.d. ,linse k. ,mills r.a. ,garabato a.n. ,pancost r.d. ,pearce d.a. ,polunin n.v.c. ,german c.r. ,shank t. ,boersch-supan p.h. ,alker b.j. ,aquilina a. ,bennett s.a. ,clarke a. ,dinley r.j.j. ,graham a.g.c. ,green d.r.h. ,hawkes j.a. ,hepburn l. ,hilario a. ,huvenne v.a.i. ,marsh l. ,ramirez-llodra e. ,reid w.d.k. ,roterman c.n. ,sweeting c.j. ,thatje s. ,zwirglmaier k.
منبع plos biology - 2012 - دوره : 10 - شماره : 1
چکیده    Since the first discovery of deep-sea hydrothermal vents along the galápagos rift in 1977,numerous vent sites and endemic faunal assemblages have been found along mid-ocean ridges and back-arc basins at low to mid latitudes. these discoveries have suggested the existence of separate biogeographic provinces in the atlantic and the north west pacific,the existence of a province including the south west pacific and indian ocean,and a separation of the north east pacific,north east pacific rise,and south east pacific rise. the southern ocean is known to be a region of high deep-sea species diversity and centre of origin for the global deep-sea fauna. it has also been proposed as a gateway connecting hydrothermal vents in different oceans but is little explored because of extreme conditions. since 2009 we have explored two segments of the east scotia ridge (esr) in the southern ocean using a remotely operated vehicle. in each segment we located deep-sea hydrothermal vents hosting high-temperature black smokers up to 382.8°c and diffuse venting. the chemosynthetic ecosystems hosted by these vents are dominated by a new yeti crab (kiwa n. sp.),stalked barnacles,limpets,peltospiroid gastropods,anemones,and a predatory sea star. taxa abundant in vent ecosystems in other oceans,including polychaete worms (siboglinidae),bathymodiolid mussels,and alvinocaridid shrimps,are absent from the esr vents. these groups,except the siboglinidae,possess planktotrophic larvae,rare in antarctic marine invertebrates,suggesting that the environmental conditions of the southern ocean may act as a dispersal filter for vent taxa. evidence from the distinctive fauna,the unique community structure,and multivariate analyses suggest that the antarctic vent ecosystems represent a new vent biogeographic province. however,multivariate analyses of species present at the esr and at other deep-sea hydrothermal vents globally indicate that vent biogeography is more complex than previously recognised. © 2012 rogers et al.
آدرس department of zoology,university of oxford,oxford, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, british antarctic survey,cambridge, United Kingdom, british antarctic survey,cambridge, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, school of chemistry,university of bristol,bristol, United Kingdom, british antarctic survey,cambridge, United Kingdom, school of marine science and technology,newcastle university,newcastle upon tyne, United Kingdom, woods hole oceanographic institution,woods hole,ma, United States, woods hole oceanographic institution,woods hole,ma, United States, department of zoology,university of oxford,oxford,united kingdom,scottish oceans institute,university of st andrews,st andrews, United Kingdom, natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, natural environment research council,national oceanography centre,southampton,southampton,united kingdom,nasa jet propulsion laboratory,california institute of technology,pasadena,ca, United States, british antarctic survey,cambridge, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, british antarctic survey,cambridge, United Kingdom, natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton,united kingdom,natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, centro de estudos do ambiente e do mar,departmento biologia,universidade de aveiro,aveiro, Portugal, natural environment research council,national oceanography centre,southampton,southampton, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, institut de ciències del mar,consejo superior de investigaciones científicas,barcelona, Spain, school of marine science and technology,newcastle university,newcastle upon tyne, United Kingdom, department of zoology,university of oxford,oxford,united kingdom,ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, school of marine science and technology,newcastle university,newcastle upon tyne, United Kingdom, ocean and earth science,national oceanography centre,southampton,university of southampton,southampton, United Kingdom, british antarctic survey,cambridge, United Kingdom
 
     
   
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