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Soft bottom benthic communities under potentially anthropic and natural pressures in Terra Nova Bay (Ross Sea, Antarctica)

Luigia Donnarumma; Luca Appolloni; Elena Chianese; Federica Ferrigno; Paola Di Donato; Giovanni Fulvio Russo; Roberto Sandulli
Polar Biology · Vol. 48, Issue 2 · 2025

Abstract

Benthic communities have a key function in the Antarctic marine ecosystem since they play a central role in the food web pathway and represent the main “environmental biological memory”. The goal of the study is to evaluate differences in macrozoobenthic community structure, along the Antarctic coasts of Tethys Bay (Ross Sea), potentially affected by two types of pressures: anthropic, due to the presence of a scientific station, and natural, due to the presence of a penguin colony. In the austral summer of 2017/2018 and 2018/2019, four sites were sampled in order to detect the effects of these two types of pressure (anthropic vs. natural vs . two control non-impacted areas). The Road Bay site, near the Italian Station, is rich in macro- and micronutrients and NO 3− and Cd 2+ ; the Adélie Cove site, characterized by organic loads from a close penguin colony, is rich in PO 4 3− . Lower values of NO 3− and PO 4 3− , as well as Cu 2+ and Pb 2+ heavy metals occurred in control sites, between Road Bay and Adélie Cove. The benthic community showed different qualitative–quantitative dominances of species among sites, mainly at 50 m depth. The results clearly show the dominance of different opportunistic species of macrobenthos where penguins or humans’ presence occurred. Therefore, benthic communities may be considered good biological indicators of the overall environmental conditions.

Bibliographic Information

JournalPolar Biology
PublisherSpringer
Publication Date2025-06-01
Publication Year2025
Volume48
Issue2
Document TypeJournal Article
Print ISSN0722-4060
eISSN1432-2056
DOI10.1007/s00300-025-03347-z

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NARA Access Coverage1982-01-01~Current
Journal Homepagehttps://www.springer.com/journal/300
Publisher PageOpen Publisher Page
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