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  4. Geographic Patterns Of Soft-Bottoms Benthic Communities In Chilean Patagonian Fjords (47 Degrees S-54 Degrees S)-Influence Of Environmental Stress On Diversity Patterns And Stable Isotope Signatures
 
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Geographic Patterns Of Soft-Bottoms Benthic Communities In Chilean Patagonian Fjords (47 Degrees S-54 Degrees S)-Influence Of Environmental Stress On Diversity Patterns And Stable Isotope Signatures

Date Issued
2022-05-06
Author(s)
Soto, Eulogio  
Facultad de Ciencias Económicas y Administrativas  
Eduardo Quiroga
Paula Ortiz
Nicole Salinas
Nicole Olguín
Chester J. Sands
DOI
10.1016/j.pocean.2022.102810
WoS ID
WOS:000806687000001
Abstract
The benthic community in the Chilean Patagonia is as rich and highly diverse as the spatial variation of its habitats and food sources. Environmental stress from glacier melt and river discharge are known drivers of benthic community dynamics. Here, we analyze longitudinal patterns of soft-bottom benthic communities across transects of glacier-marine environments and how these habitats may respond to changes in the environmental conditions. To assess the relationships between environmental heterogeneity (marine and glacial habitats) and benthic biodiversity, this paper reviews biological (mega- and macroinfauna) and sedimentological dataset from multiple oceanographic campaigns in Chilean Patagonian fjords. Furthermore, we analyze isotopic compositions of epibenthic and macroinfaunal organisms (δ13C/δ15N and C/N) to determine particulate organic carbon (POC) and particulate organic nitrogen (PON) availability and organismal stoichiometric budgets within each benthic community. Our results showed that glaciomarine and glaciofluvial environmental stress negatively affected nutrient reservoirs and organic matter (OM) availability, and hence produced changes in benthic diversity and trophic structure throughout the fjords. These conditions shaped the benthic community where small-bodied polychaetes and opportunistic species dominated. Additionally, we found a strong relationship between OM and nutrient availability with faunal isotopic composition, but a decoupling in C/N ratios between fauna and sediment OM, suggesting preferential organic carbon use under limited nitrogen in fjord sediments.
Subjects

Aquatic Science

Geology

Oceanography

OCDE Subjects

Natural Sciences::Phy...

Quartile (Date Issued)
Q1
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