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A Climate-Driven Functional Inversion of Connected Marine Ecosystems.

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Climate change rapidly altered fish populations in the English Channel and North Sea. Warming oceans caused species with specific traits to shift northward, inverting ecosystem functions.

Keywords:
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Area of Science:

  • Marine ecology
  • Climate change impacts
  • Ecosystem functioning

Background:

  • Species distribution shifts are known responses to climate warming.
  • The impact of these shifts on ecosystem functional structure is less understood.
  • Understanding these changes is crucial for sustainable natural resource management.

Purpose of the Study:

  • To investigate the consequences of climate-driven species distribution shifts on ecosystem functional structure.
  • To analyze the impact of a climate oscillation on fish communities in connected North Atlantic ecosystems.

Main Methods:

  • Utilized thirty years of fish monitoring data.
  • Applied time-lag-based causality analyses to assess climate impacts.
  • Examined shifts in species' functional traits and their distribution.

Main Results:

  • A climate oscillation to a warm phase in the late 1990s triggered a rapid shift in functional structure in the English Channel and North Sea.
  • Warming oceans caused pelagic fishes with r-selected traits to shift northward, inverting the functional structure between the two ecosystems.
  • The functional shift occurred with a one-year time lag following the climate oscillation.

Conclusions:

  • Ecosystems responded rapidly to climate change, with significant functional structure inversion.
  • Historical overfishing may have increased ecosystem vulnerability to climate stress.
  • Future warming events could lead to profound changes in ecosystem functioning and services.