Benthic macroinvertebrate response to estuarine emergent marsh restoration across a delta-wide environmental gradient

被引:1
作者
Rubin, Stephen P. [1 ]
Davis, Melanie J. [2 ]
Grossman, Eric E. [3 ]
Woo, Isa [4 ]
de la Cruz, Susan E. W. [4 ]
Nakai, Glynnis [5 ]
Takekawa, John Y. [4 ]
机构
[1] Western Fisheries Res Ctr, US Geol Survey, Seattle, WA 98115 USA
[2] Western Ecol Res Ctr, U S Geol Survey, Olympia Substn, Olympia, WA USA
[3] Pacific Coastal & Marine Sci Ctr, US Geol Survey, Santa Cruz, CA USA
[4] Western Ecol Res Ctr, San Francisco Bay Estuary Field Stn, US Geol Survey, Moffett Field, CA USA
[5] US Fish & Wildlife Serv, Nisqually Natl Wildlife Refuge Complex, Olympia, WA USA
来源
FRONTIERS IN ECOLOGY AND EVOLUTION | 2024年 / 12卷
关键词
benthic invertebrates; dike removal; Nisqually; restoration; estuaries; marsh; wetlands; tidal flats; JUVENILE CHINOOK SALMON; SCALE SPATIAL-PATTERNS; MACROFAUNAL ASSEMBLAGES; INVERTEBRATE PREY; ORGANIC BIOMASS; RIVER; HABITAT; COASTAL; WETLANDS; MODEL;
D O I
10.3389/fevo.2024.1356679
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Benthic invertebrates play vital roles in estuarine ecosystems, but like other taxa they have been excluded from former marshlands by diking and land use conversion. Dike removal is one way of restoring marsh, but the response of benthic invertebrates has been little studied. Also understudied is variation in benthic invertebrate communities across entire deltas, particularly in the Pacific Northwest of North America where deltas receive high flows and sediment loads for their size. Our goals were to evaluate invertebrate response to large-scale dike removal on the Nisqually River Delta in Puget Sound, Washington, U.S.A., characterize delta-wide invertebrate community variation, and relate invertebrate response and spatial variation to environmental conditions. We sampled invertebrates annually from one year before to three years after dike removal in restoring marsh, previously restored marsh, undisturbed reference marsh, and adjacent tidal flats. Marine taxa immediately colonized the area recently restored to tidal inundation and population size grew exponentially thereafter for several of them. Community composition and diversity recovered completely, and density and biomass were approaching recovery three years later. Invertebrate communities converged between restoring and pre-existing marsh (previously restored and reference), suggesting an influence of reestablished connectivity. Just offshore from the dike line, invertebrates declined one year after dike removal but then rebounded indicating resilience to short-term disturbance. Dike removal effects were not detected farther offshore. Near the offshore edge of the delta, invertebrate biomass and body size were greater than elsewhere and a diverse assemblage of crustaceans, polychaetes, and bivalves was present. Farther inshore, tidal flats were dominated by a few species of small-bodied polychaetes and had higher density but lower biomass and diversity. Facultative detritivores, which can also filter feed, were the dominant feeding guild everywhere on the tidal flats. Density, biomass, diversity, and community composition on the marsh were more similar to the inner than outer tidal flats. Environmental variables most associated with invertebrate community variation were elevation, salinity, and sediment grain size and organic content. Our results are relevant to assessing performance and setting expectations for future restorations and have broad implications for the role of benthic invertebrates in estuarine ecosystems.
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相关论文
共 83 条
[71]   Ecological assessment criteria for restoring anadromous salmonid habitat in Pacific Northwest estuaries [J].
Simenstad, CA ;
Cordell, JR .
ECOLOGICAL ENGINEERING, 2000, 15 (3-4) :283-302
[72]   Functional equivalency trajectories of the restored Gog-Le-Hi-Te estuarine wetland [J].
Simenstad, CA ;
Thom, RM .
ECOLOGICAL APPLICATIONS, 1996, 6 (01) :38-56
[73]  
Takesue R. K., 2016, U.S. Geological Survey Open-File Report 2016-1169, DOI [10.3133/ofr20161169, DOI 10.3133/ofr20161169]
[74]   Restoration of freshwater intertidal habitat functions at Spencer Island, Everett, Washington [J].
Tanner, CD ;
Cordell, JR ;
Rubey, J ;
Tear, LM .
RESTORATION ECOLOGY, 2002, 10 (03) :564-576
[75]   Benthic macrofaunal assemblages of the San Francisco Estuary and Delta, USA [J].
Thompson, Bruce ;
Ranasinghe, J. Ananda ;
Lowe, Sarah ;
Melwani, Aroon ;
Weisberg, Stephen B. .
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2013, 185 (03) :2281-2295
[76]  
Thrush SF, 2004, FRONT ECOL ENVIRON, V2, P299, DOI 10.2307/3868405
[77]   Hydrodynamic conditioning of diversity and functional traits in subtidal estuarine macrozoobenthic communities [J].
van der Wal, Daphne ;
Lambert, Gwladys I. ;
Ysebaert, Tom ;
Plancke, Yves M. G. ;
Herman, Peter M. J. .
ESTUARINE COASTAL AND SHELF SCIENCE, 2017, 197 :80-92
[78]  
Woo I., 2021, Wetland Carbon and Environmental Management, Geophysical Monograph 267, First Edition, DOI [10.1002/9781119639305.ch5, DOI 10.1002/9781119639305.CH5]
[79]   A Mosaic of Estuarine Habitat Types with Prey Resources from Multiple Environmental Strata Supports a Diversified Foraging Portfolio for Juvenile Chinook Salmon [J].
Woo, Isa ;
Davis, Melanie J. ;
Ellings, Christopher S. ;
Hodgson, Sayre ;
Takekawa, John Y. ;
Nakai, Glynnis ;
De La Cruz, Susan E. W. .
ESTUARIES AND COASTS, 2019, 42 (07) :1938-1954
[80]   Enhanced invertebrate prey production following estuarine restoration supports foraging for multiple species of juvenile salmonids (Oncorhynchus spp.) [J].
Woo, Isa ;
Davis, Melanie J. ;
Ellings, Christopher S. ;
Nakai, Glynnis ;
Takekawa, John Y. ;
De La Cruz, Susan .
RESTORATION ECOLOGY, 2018, 26 (05) :964-975