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Insecten en klimaatswijziging in België: van de regen in de drup...

Research output: Contribution to journalA2: Article in a journal with peer review, not included in A1

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Insecten en klimaatswijziging in België : van de regen in de drup... / Maes, Dirk; Anselin, Anny; Decleer, Kris; De Knijf, Geert; Fichefet, V.

In: Natuur.Focus, Vol. 7, No. 3, 2008, p. 107-111.

Research output: Contribution to journalA2: Article in a journal with peer review, not included in A1

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@article{67006cdac56e4a679ee6318d60924289,
title = "Insecten en klimaatswijziging in Belgi{\"e}: van de regen in de drup...",
abstract = "Being ectothermal, insects are predicted to suffer more severely from climate change than warm-blooded animals. We forecast possible changes in diversity and composition of butterflies, grasshoppers and dragonflies in Belgium under increasingly severe climate change scenarios for the year 2100. Butterfly and grasshopper diversity were predicted to decrease significantly in all scenarios and species-rich locations were predicted to move towards higher altitudes. Dragonfly diversity was predicted to decrease significantly in all scenarios, but dragonfly-rich locations were predicted to move upwards only in the less severe scenarios. The largest turnover rates were predicted to occur at higher altitudes for butterflies and grasshoppers, but at intermediate altitudes for dragonflies. We discuss possible conservation and policy measures to mitigate the putative strond impact of climate change on insect diversity in Belgium",
author = "Dirk Maes and Anny Anselin and Kris Decleer and {De Knijf}, Geert and V Fichefet",
year = "2008",
language = "Nederlands",
volume = "7",
pages = "107--111",
journal = "Natuur.Focus",
issn = "1379-8863",
publisher = "Natuurpunt",
number = "3",

}

RIS

TY - JOUR

T1 - Insecten en klimaatswijziging in België

T2 - van de regen in de drup...

AU - Maes, Dirk

AU - Anselin, Anny

AU - Decleer, Kris

AU - De Knijf, Geert

AU - Fichefet, V

PY - 2008

Y1 - 2008

N2 - Being ectothermal, insects are predicted to suffer more severely from climate change than warm-blooded animals. We forecast possible changes in diversity and composition of butterflies, grasshoppers and dragonflies in Belgium under increasingly severe climate change scenarios for the year 2100. Butterfly and grasshopper diversity were predicted to decrease significantly in all scenarios and species-rich locations were predicted to move towards higher altitudes. Dragonfly diversity was predicted to decrease significantly in all scenarios, but dragonfly-rich locations were predicted to move upwards only in the less severe scenarios. The largest turnover rates were predicted to occur at higher altitudes for butterflies and grasshoppers, but at intermediate altitudes for dragonflies. We discuss possible conservation and policy measures to mitigate the putative strond impact of climate change on insect diversity in Belgium

AB - Being ectothermal, insects are predicted to suffer more severely from climate change than warm-blooded animals. We forecast possible changes in diversity and composition of butterflies, grasshoppers and dragonflies in Belgium under increasingly severe climate change scenarios for the year 2100. Butterfly and grasshopper diversity were predicted to decrease significantly in all scenarios and species-rich locations were predicted to move towards higher altitudes. Dragonfly diversity was predicted to decrease significantly in all scenarios, but dragonfly-rich locations were predicted to move upwards only in the less severe scenarios. The largest turnover rates were predicted to occur at higher altitudes for butterflies and grasshoppers, but at intermediate altitudes for dragonflies. We discuss possible conservation and policy measures to mitigate the putative strond impact of climate change on insect diversity in Belgium

M3 - A2: Artikel in een tijdschrift met peer review, dat niet inbegrepen is in A1

VL - 7

SP - 107

EP - 111

JO - Natuur.Focus

JF - Natuur.Focus

SN - 1379-8863

IS - 3

ER -

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