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  • Nature Publishing Group  (2)
  • AMER ASSOC ADVANCEMENT SCIENCE  (1)
  • 1
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 420 (2002), S. 27-27 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] The introduction of oxygen into the Earth's atmosphere was a double-edged sword. It provided a fuel that would allow the evolution of complex organisms with high energy demands, but also represented a new source of toxins. Oxygen-respiring eukaryotes needed not only to develop machinery to harness ...
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2016-11-24
    Description: Carbon capture and storage is promoted as a mitigation method counteracting the increase of atmospheric CO2 levels. However, at this stage, environmental consequences of potential CO2 leakage from sub-seabed storage sites are still largely unknown. In a 3-month-long mesocosm experiment, this study assessed the impact of elevated pCO2 levels (1,500 to 24,400 µatm) on Cerastoderma edule dominated benthic communities from the Baltic Sea. Mortality of C. edule was significantly increased in the highest treatment (24,400 µatm) and exceeded 50%. Furthermore, mortality of small size classes (0-1 cm) was significantly increased in treatment levels ≥6,600 µatm. First signs of external shell dissolution became visible at ≥1,500 µatm, holes were observed at 〉6,600 µatm. C. edule body condition decreased significantly at all treatment levels (1,500-24,400 µatm). Dominant meiofauna taxa remained unaffected in abundance. Densities of calcifying meiofauna taxa (i.e. Gastropoda and Ostracoda) decreased in high CO2 treatments (〉6,600 µatm), while the non - calcifying Gastrotricha significantly increased in abundance at 24,400 µatm. In addition, microbial community composition was altered at the highest pCO2 level. We conclude that strong CO2 leakage can alter benthic infauna community composition at multiple trophic levels, likely due to high mortality of the dominant macrofauna species C. edule.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 3
    Publication Date: 2015-11-27
    Description: The Antarctic Peninsula (AP) is one of three places on Earth that registered the most intense warming in the last 50 years, almost five times the global mean. The cryosphere was rapidly affected registering the largest ice-shelves collapses ever observed and 87 % of glaciers in retreat. Ecosystem responses, although increasingly predicted, have been mainly reported for pelagic systems. However, and despite that most Antarctic species being benthic, registered responses in the Antarctic benthos were restricted to few species and major effects at community level are unknown. This is probably due to the scarcity of baselines against which to assess change. We performed repeat surveys of coastal benthos in 1994, 1998 and 2010 analyzing community structure and environmental variables at King George Island, Antarctica. Here we report a marked shift in an Antarctic benthic community that can be linked to ongoing climate change. However, rather than temperature as the primary factor, we highlight the resulting increased sediment run-off, triggered by glacier retreat as the potential causal factor. The sudden shift from a “filter feeders-ascidian domination” to a “mixed assemblage” suggests that thresholds (e.g. of tolerable sedimentation) and alternative equilibrium states, depending on the reversibility of the changes, could be possible traits in this ecosystem. Sedimentation processes will be increasing under the current scenario of glacier retreat and attention needs to be paid to its effects along the AP.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev , info:eu-repo/semantics/article
    Format: application/pdf
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