Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Seasonal effects of edge and habitat complexity on eelgrass epifaunal assemblages

View through CrossRef
Habitat degradation and fragmentation reduce habitat structural complexity (e.g. amount of physical features) and increase habitat edges. While many studies have focused on the effects of habitat edges or complexity on biodiversity, relatively few have disentangled them or investigated their effects over time. We investigated how proximity to the edge of eelgrassZosterasubg.Zostera marinaLinnaeus, 1753 habitat, shoot density and their interactions across seasons can influence the diversity pattern of epifaunal assemblages in meadows situated in a Mediterranean lagoon (France). We used a combination of field sampling andin situmanipulations with artificial seagrass units (ASUs) mimicking low and high shoot densities. During autumn and spring, we found that shoot density, Z. marina biomass and leaf area index (LAI) were higher inside the meadows than at the edge, while epiphyte load was the highest in spring at the edges. Epifaunal abundance and diversity were higher at the edge than inside the meadow for both natural shoots—regardless of the epiphyte load—and ASUs in spring. In autumn, epifaunal abundance varied positively with ASU density, regardless of the position in the meadow. Our results also showed that edges and habitat complexity affect the epifaunal structure differently across seasons. Therefore, we suggest that recruitment of macrofauna is the main mechanism explaining a positive edge effect during spring. This work highlights the need to consider seasonal dynamics in the assessment of habitat fragmentation and degradation.
Title: Seasonal effects of edge and habitat complexity on eelgrass epifaunal assemblages
Description:
Habitat degradation and fragmentation reduce habitat structural complexity (e.
g.
amount of physical features) and increase habitat edges.
While many studies have focused on the effects of habitat edges or complexity on biodiversity, relatively few have disentangled them or investigated their effects over time.
We investigated how proximity to the edge of eelgrassZosterasubg.
Zostera marinaLinnaeus, 1753 habitat, shoot density and their interactions across seasons can influence the diversity pattern of epifaunal assemblages in meadows situated in a Mediterranean lagoon (France).
We used a combination of field sampling andin situmanipulations with artificial seagrass units (ASUs) mimicking low and high shoot densities.
During autumn and spring, we found that shoot density, Z.
marina biomass and leaf area index (LAI) were higher inside the meadows than at the edge, while epiphyte load was the highest in spring at the edges.
Epifaunal abundance and diversity were higher at the edge than inside the meadow for both natural shoots—regardless of the epiphyte load—and ASUs in spring.
In autumn, epifaunal abundance varied positively with ASU density, regardless of the position in the meadow.
Our results also showed that edges and habitat complexity affect the epifaunal structure differently across seasons.
Therefore, we suggest that recruitment of macrofauna is the main mechanism explaining a positive edge effect during spring.
This work highlights the need to consider seasonal dynamics in the assessment of habitat fragmentation and degradation.

Related Results

An experimental test of dispersal limitation of species diversity in eelgrass meadows
An experimental test of dispersal limitation of species diversity in eelgrass meadows
Abstract Biogenic habitats, including eelgrass, support productive and diverse species assemblages in spatially heterogeneous seascapes. Eelgrass-associated faunal diversit...
Magic graphs
Magic graphs
DE LA TESIS<br/>Si un graf G admet un etiquetament super edge magic, aleshores G es diu que és un graf super edge màgic. La tesis està principalment enfocada a l'estudi del c...
Habitat degradation of an eelgrass bed variably affects epifaunal biodiversity
Habitat degradation of an eelgrass bed variably affects epifaunal biodiversity
Seagrass habitat complexity can determine species diversity and abundance, through, for instance, changes in the availability of microhabitats, refuge from predators or changes in ...
Modeling Elk Nutrition and Habitat Use in Western Oregon and Washington
Modeling Elk Nutrition and Habitat Use in Western Oregon and Washington
ABSTRACTStudies of habitat selection and use by wildlife, especially large herbivores, are foundational for understanding their ecology and management, especially if predictors of ...
Fish Habitat: Essential Fish Habitat and Rehabilitation
Fish Habitat: Essential Fish Habitat and Rehabilitation
<em>Abstract</em> .—Defining and quantifying essential fish habitat is difficult, perhaps particularly so in estuaries, which are typically dynamic. Yet we need habitat...
Macroalgae morphological complexity affects the functional diversity of epifaunal annelid assemblages
Macroalgae morphological complexity affects the functional diversity of epifaunal annelid assemblages
Host structural complexity influences the diversity of associated epifaunal species, but its role in shaping functional trait diversity remains underexplored. We developed a trait-...
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED]Keanu Reeves CBD Gummies ==❱❱ Huge Discounts:[HURRY UP ] Absolute Keanu Reeves CBD Gummies (Available)Order Online Only!! ❰❰= https://www.facebook.com/Keanu-Reeves-CBD-G...
Benthic foraminifera associated to cold-water coral ecosystems
Benthic foraminifera associated to cold-water coral ecosystems
Cold-water coral reef ecosystems occur worldwide and are especially developed along the European margin, from northern Norway to the Gulf of Cadiz and into the Western Mediterranea...

Back to Top