Bathymetric zonation of deep-sea macrofauna in relation to export of surface phytoplankton production

dc.contributor.author Wei, Chih-Lin
dc.contributor.author Rowe, Gilbert T.
dc.contributor.author Hubbard, G. Fain
dc.contributor.author Scheltema, Amelie H.
dc.contributor.author Wilson, George D. F.
dc.contributor.author Petrescu, Iorgu
dc.contributor.author Foster, John M.
dc.contributor.author Wicksten, Mary K.
dc.contributor.author Chen, Min
dc.contributor.author Davenport, Roe
dc.contributor.author Soliman, Yousria
dc.contributor.author Wang, Yuning
dc.date.accessioned 2011-04-20T20:40:39Z
dc.date.available 2011-04-20T20:40:39Z
dc.date.issued 2010-01-28
dc.description Author Posting. © Inter-Research, 2010. This article is posted here by permission of Inter-Research for personal use, not for redistribution. The definitive version was published in Marine Ecology Progress Series 399 (2010): 1-14, doi:10.3354/meps08388. en_US
dc.description.abstract Macrobenthos of the deep, northern Gulf of Mexico (GoM) was sampled with box cores (0.2 m2) along multiple cross-depth transects extending from depths of 200 m to the maximum depth of the basin at 3700 m. Bathymetric (depth) zonation of the macrofaunal community was documented for 6 major taxa (a total of 957 species) on the basis of shared species among geographic locations; 4 major depth zones were identified, with the 2 intermediate-depth zones being divided into east and west subzones. Change of faunal composition with depth reflects an underlying continuum of species replacements without distinct boundaries. The zonal patterns correlated with depth and detrital particulate organic carbon (POC) export flux estimated from remotely-sensed phytoplankton pigment concentrations in the surface water. The Mississippi River and its associated mesoscale eddies, submarine canyon, and deep sediment fan appear to influence the horizontal zonation pattern through export of organic carbon from the ocean surface and the adjacent continental margin. On the local scale, near-bottom currents may shape the zonation pattern by altering sediment grain size, food availability, and larval dispersal. This study suggests a macroecological relationship between depth, export POC flux, and zonation; parsimonious zonal thresholds need to be tested independently for other continental margin ecosystems. en_US
dc.description.sponsorship This research was funded by the U.S. Department of Interior, Minerals Management Service, Contract No. 1435-01-99-CT-30991. en_US
dc.format.mimetype application/pdf
dc.identifier.citation Marine Ecology Progress Series 399 (2010): 1-14 en_US
dc.identifier.doi 10.3354/meps08388
dc.identifier.uri https://hdl.handle.net/1912/4483
dc.language.iso en en_US
dc.publisher Inter-Research en_US
dc.relation.uri https://doi.org/10.3354/meps08388
dc.subject Northern Gulf of Mexico en_US
dc.subject Deep sea en_US
dc.subject Macrofauna en_US
dc.subject Zonation en_US
dc.subject Biogeography en_US
dc.subject Community structure en_US
dc.subject POC export flux en_US
dc.subject Macroecology en_US
dc.title Bathymetric zonation of deep-sea macrofauna in relation to export of surface phytoplankton production en_US
dc.type Article en_US
dspace.entity.type Publication
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