Declining bivalve species and functional diversity along a coastal eutrophication-deoxygenation gradient in the northern Gulf of Mexico

被引:0
作者
Harnik, Paul G. [1 ]
Chao, Anne [2 ]
Collins, Katie S. [3 ]
Rillo, Marina C. [4 ]
机构
[1] Colgate Univ, Dept Earth & Environm Geosci, Hamilton, NY 13346 USA
[2] Natl Tsing Hua Univ, Inst Stat, Hsinchu 30043, Taiwan
[3] Nat Hist Museum, London SW7 5BD, England
[4] Carl von Ossietzky Univ Oldenburg, Inst Chem & Biol Marine Environm Terramare, D-26382 Wilhelmshaven, Germany
基金
美国国家科学基金会;
关键词
Functional diversity; Species richness; Coastal eutrophication; Hypoxia; Space-for-time; Gulf of Mexico; Benthic; Bivalve mollusk; Continental shelf; ANTHROPOGENIC EUTROPHICATION; OXYGEN DYNAMICS; HYPOXIA; HISTORY; WATER; BIOIRRIGATION; EVOLUTIONARY; SEDIMENTS; IMPACTS; ANATOMY;
D O I
10.1016/j.csr.2024.105339
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Coastal eutrophication and hypoxia are growing challenges globally, yet their impacts can be difficult to evaluate because of limited biomonitoring that typically postdates the onset of these stressors. We address this limitation by investigating how the taxonomic and functional diversity of marine bivalve communities vary with primary productivity, dissolved oxygen, temperature, and seafloor sediment properties across the northern Gulf of Mexico, a region that includes one of the world's largest dead zones. We hypothesized that taxonomic and functional richness would decline in eutrophic and hypoxic coastal environments. Live bivalve mollusks were sampled at 15 stations, spanning more than 600 km of continental shelf habitat. Individuals were identified to species and characterized based on feeding, mobility, fixation, life position relative to the sediment-water interface, and body size. Alpha and beta taxonomic and functional diversity were computed using Hill numbers and linear models used to assess their covariation with regional environmental conditions. Taxonomic and functional diversity were highest in less eutrophic environments characterized by normoxic conditions, and lowest in more eutrophic environments where oxygen was more limited. Community-level differences were underlain by functional shifts, with abundant shallow-infaunal, deposit and mixed feeders in more eutrophic settings, in contrast with less eutrophic settings where suspension feeders were more abundant. Median body size increased with eutrophication, possibly as a result of hypoxia-induced declines in predator and competitor populations. These results suggest that intensifying nutrient loading and deoxygenation in the coastal zone will cause declines in multiple dimensions of benthic biodiversity with implications for ecosystem function.
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页数:12
相关论文
共 85 条
  • [1] DEAD ZONES ENHANCE KEY FISHERIES SPECIES BY PROVIDING PREDATION REFUGE
    Altieri, Andrew H.
    [J]. ECOLOGY, 2008, 89 (10) : 2808 - 2818
  • [2] Comparative and functional anatomy of the mantle margin in ark clams and their relatives (Bivalvia: Arcoidea) supports association between morphology and life habits
    Audino, J. A.
    Marian, J. E. A. R.
    [J]. JOURNAL OF ZOOLOGY, 2018, 305 (03) : 149 - 162
  • [3] Seasonal Composition of Benthic Macroinfauna Exposed to Hypoxia in the Northern Gulf of Mexico
    Baustian, Melissa M.
    Rabalais, Nancy N.
    [J]. ESTUARIES AND COASTS, 2009, 32 (05) : 975 - 983
  • [4] Origination and Immigration Drive Latitudinal Gradients in Marine Functional Diversity
    Berke, Sarah K.
    Jablonski, David
    Krug, Andrew Z.
    Valentine, James W.
    [J]. PLOS ONE, 2014, 9 (07):
  • [5] Beyond Bergmann's rule: size-latitude relationships in marine Bivalvia world-wide
    Berke, Sarah K.
    Jablonski, David
    Krug, Andrew Z.
    Roy, Kaustuv
    Tomasovych, Adam
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2013, 22 (02): : 173 - 183
  • [6] Annual and spatial variability in gains of body weight in Macoma balthica (L.): Relationships with food supply and water temperature
    Beukema, J. J.
    Cadee, G. C.
    Dekker, R.
    Philippart, C. J. M.
    [J]. JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 2014, 457 : 105 - 112
  • [7] Functional changes in benthic macrofaunal communities along a natural gradient of hypoxia in an upwelling system
    Bon, Melanie
    Grall, Jacques
    Gusmao, Joao B.
    Fajardo, Maritza
    Harrod, Chris
    Pacheco, Aldo S.
    [J]. MARINE POLLUTION BULLETIN, 2021, 164
  • [8] Breitburg D L., 2019, Ocean Deoxygenation: Everyones Problem. Causes, Impacts, Consequences and Solutions, P225, DOI DOI 10.2305/IUCN.CH.2019.1
  • [9] Declining oxygen in the global ocean and coastal waters
    Breitburg, Denise
    Levin, Lisa A.
    Oschlies, Andreas
    Gregoire, Marilaure
    Chavez, Francisco P.
    Conley, Daniel J.
    Garcon, Veronique
    Gilbert, Denis
    Gutierrez, Dimitri
    Isensee, Kirsten
    Jacinto, Gil S.
    Limburg, Karin E.
    Montes, Ivonne
    Naqvi, S. W. A.
    Pitcher, Grant C.
    Rabalais, Nancy N.
    Roman, Michael R.
    Rose, Kenneth A.
    Seibel, Brad A.
    Telszewski, Maciej
    Yasuhara, Moriaki
    Zhang, Jing
    [J]. SCIENCE, 2018, 359 (6371) : 46 - +
  • [10] Biogenic effects on cohesive sediment erodibility resulting from recurring seasonal hypoxia on the Louisiana shelf
    Briggs, Kevin B.
    Cartwright, Grace
    Friedrichs, Carl T.
    Shivarudruppa, S.
    [J]. CONTINENTAL SHELF RESEARCH, 2015, 93 : 17 - 26