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  3. Ecology and Evolutionary Biology / 生態學與演化生物學研究所
  4. Native and exotic submerged aquatic vegetation provide different nutritional and refuge values for macroinvertebrates
 
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Native and exotic submerged aquatic vegetation provide different nutritional and refuge values for macroinvertebrates

Journal
Journal of Experimental Marine Biology and Ecology
Journal Volume
409
Journal Issue
1-2
Pages
42-47
Date Issued
2011
Author(s)
CHUAN-KAI HO  
DOI
10.1016/j.jembe.2011.08.001
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-82555167038&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/363746
Abstract
Proliferation of exotic submerged aquatic vegetation (SAV) has the potential to alter trophic interactions among native fauna. The invasion of Myriophyllum spicatum (Eurasian watermilfoil) into brackish and freshwater wetlands on the Gulf Coast of the United States has decreased the abundance of native plant species such as Ruppia maritima (widgeongrass). Macroinvertebrates use SAV to meet nutritional requirements and seek refuge from predators. Shifts in SAV dominance can alter patterns of SAV use by associated fauna, but the dynamics of these alterations following Myriophyllum displacement of Ruppia are not well understood. In our study, we examined the trophic implications of shifts between native (Ruppia) and exotic (Myriophyllum) SAV in a brackish wetland in Port Arthur, Texas, USA. This study addressed the following questions: 1) Do aquatic invertebrates directly consume Myriophyllum, and 2) do predator-prey interactions differ in native and exotic SAV canopies? We collected Ruppia, Myriophyllum, Palaemonetes spp. (grass shrimp), and juvenile Callinectes sapidus (blue crabs) from the field and ran a series of three mesocosm experiments in the laboratory. In a "no-choice" grazing experiment, Palaemonetes consumed 13% of the Ruppia biomass but had no impact on Myriophyllum biomass. In a second study, when given a choice of plant canopies, Palaemonetes selected Ruppia over Myriophyllum 60% of the time when Callinectes was absent, but selected Myriophyllum more frequently in the presence of Callinectes. The selection of Myriophyllum was likely due to its refuge value; a third mesocosm experiment resulted in 60% Palaemonetes mortality due to Callinectes predation in Ruppia canopies but only 20% mortality in Myriophyllum canopies. Myriophyllum has a more structurally complex canopy that probably provides better protection from predation. Our studies suggest that native and exotic plants provide substantially different values as food sources and as refuges from predators for lower trophic levels. © 2011 Elsevier B.V.
Subjects
Brackish marsh; Estuary; Exotic submerged aquatic vegetation; Food webs; Herbivory; Indirect trophic interactions
SDGs

[SDGs]SDG15

Other Subjects
biological invasion; canopy; dominance; grass; macroinvertebrate; mesocosm; native species; nutrient cycling; predation; predator; predator-prey interaction; refugium; submerged vegetation; trophic interaction; trophic level; vegetation type; wetland; Gulf Coast [United States]; United States; Callinectes; Callinectes sapidus; Decapoda (Crustacea); Invertebrata; Myriophyllum; Myriophyllum spicatum; Palaemonetes; Ruppia; Ruppia maritima
Type
journal article

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