Habitat amount and distribution modify community dynamics under climate change

被引:63
作者
Fourcade, Yoan [1 ,2 ]
WallisDeVries, Michiel F. [3 ,4 ]
Kuussaari, Mikko [5 ]
van Swaay, Chris A. M. [3 ]
Heliola, Janne [5 ]
Ockinger, Erik [1 ]
机构
[1] Swedish Univ Agr Sci, Dept Ecol, Uppsala, Sweden
[2] Univ Paris Est Creteil, Sorbonne Univ, Inst Ecol & Sci Environm, IEES,IRD,CNRS,INRAE, F-94010 Creteil, France
[3] Vlinderstichting Dutch Butterfly Conservat, Wageningen, Netherlands
[4] Wageningen Univ, Plant Ecol & Nat Conservat Grp, Wageningen, Netherlands
[5] Finnish Environm Inst, Biodivers Ctr, Helsinki, Finland
基金
瑞典研究理事会;
关键词
Butterflies; climate change; community dynamics; community temperature index; fragmentation; habitat amount; habitat configuration; semi‐ natural habitat; species traits; SPECIES RICHNESS; RANGE SHIFTS; FRAGMENTATION; RESPONSES; EXTINCTION; DISPERSAL; LANDSCAPE; BIRDS; REORGANIZATION; BIODIVERSITY;
D O I
10.1111/ele.13691
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Habitat fragmentation may present a major impediment to species range shifts caused by climate change, but how it affects local community dynamics in a changing climate has so far not been adequately investigated empirically. Using long-term monitoring data of butterfly assemblages, we tested the effects of the amount and distribution of semi-natural habitat (SNH), moderated by species traits, on climate-driven species turnover. We found that spatially dispersed SNH favoured the colonisation of warm-adapted and mobile species. In contrast, extinction risk of cold-adapted species increased in dispersed (as opposed to aggregated) habitats and when the amount of SNH was low. Strengthening habitat networks by maintaining or creating stepping-stone patches could thus allow warm-adapted species to expand their range, while increasing the area of natural habitat and its spatial cohesion may be important to aid the local persistence of species threatened by a warming climate.
引用
收藏
页码:950 / 957
页数:8
相关论文
共 55 条
[11]   Effects of habitat fragmentation on biodiversity [J].
Fahrig, L .
ANNUAL REVIEW OF ECOLOGY EVOLUTION AND SYSTEMATICS, 2003, 34 :487-515
[12]   Ecological Responses to Habitat Fragmentation Per Se [J].
Fahrig, Lenore .
ANNUAL REVIEW OF ECOLOGY, EVOLUTION, AND SYSTEMATICS, VOL 48, 2017, 48 :1-23
[13]  
Fletcher R. J. Jr., 2018, Biological Conservation, V226, P9
[14]   Climate and land-cover change alter bumblebee species richness and community composition in subalpine areas [J].
Fourcade, Yoan ;
Astrom, Sandra ;
Ockinger, Erik .
BIODIVERSITY AND CONSERVATION, 2019, 28 (03) :639-653
[15]   Empirical Predictability of Community Responses to Climate Change [J].
Gauzere, Pierre ;
Iversen, Lars Lonsmann ;
Barnagaud, Jean-Yves ;
Svenning, Jens-Christian ;
Blonder, Benjamin .
FRONTIERS IN ECOLOGY AND EVOLUTION, 2018, 6
[16]   Where do they go? The effects of topography and habitat diversity on reducing climatic debt in birds [J].
Gauzere, Pierre ;
Prince, Karine ;
Devictor, Vincent .
GLOBAL CHANGE BIOLOGY, 2017, 23 (06) :2218-2229
[17]   Can protected areas mitigate the impacts of climate change on bird's species and communities? [J].
Gauzere, Pierre ;
Jiguet, Frederic ;
Devictor, Vincent .
DIVERSITY AND DISTRIBUTIONS, 2016, 22 (06) :625-637
[18]   More than 75 percent decline over 27 years in total flying insect biomass in protected areas [J].
Hallmann, Caspar A. ;
Sorg, Martin ;
Jongejans, Eelke ;
Siepel, Henk ;
Hofland, Nick ;
Schwan, Heinz ;
Stenmans, Werner ;
Mueller, Andreas ;
Sumser, Hubert ;
Hoerren, Thomas ;
Goulson, Dave ;
de Kroon, Hans .
PLOS ONE, 2017, 12 (10)
[19]   Fine-grain modeling of species' response to climate change: holdouts, stepping-stones, and microrefugia [J].
Hannah, Lee ;
Flint, Lorraine ;
Syphard, Alexandra D. ;
Moritz, Max A. ;
Buckley, Lauren B. ;
McCullough, Ian M. .
TRENDS IN ECOLOGY & EVOLUTION, 2014, 29 (07) :390-397
[20]  
Haylock M. R., 2008, Journal of Geophysical Research, V113