Toward a Management Framework for Networks of Protected Areas in the Face of Climate Change

被引:82
|
作者
Hole, David G. [1 ,2 ]
Huntley, Brian [1 ]
Arinaitwe, Julius [3 ]
Butchart, Stuart H. M. [4 ]
Collingham, Yvonne C. [1 ]
Fishpool, Lincoln D. C. [4 ]
Pain, Deborah J. [5 ]
Willis, Stephen G. [1 ]
机构
[1] Univ Durham, Sch Biol & Biomed Sci, Durham DH1 3LE, England
[2] Conservat Int, Sci & Knowledge Div, Arlington, VA 22202 USA
[3] BirdLife Africa Partnership Secretariat, Nairobi, Kenya
[4] BirdLife Int, Cambridge CB3 0NA, Cambs, England
[5] Royal Soc Protect Birds, Sandy SG19 2DL, Beds, England
关键词
Africa; colonist species; emigrant species; important bird areas; network gaps; priority species; protected areas; site management strategies; species' adaptation; adaptacion de especies; areas de importancia para aves; areas protegidas; especies colonizadoras; especies emigrantes; especies prioritarias; especies protegidas; estrategias de manejo; vacios en redes; CHANGE ADAPTATION STRATEGIES; SPECIES DISTRIBUTIONS; POTENTIAL IMPACTS; CONSERVATION; MODELS; CHALLENGE;
D O I
10.1111/j.1523-1739.2010.01633.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Networks of sites of high importance for conservation of biological diversity are a cornerstone of current conservation strategies but are fixed in space and time. As climate change progresses, substantial shifts in species' ranges may transform the ecological community that can be supported at a given site. Thus, some species in an existing network may not be protected in the future or may be protected only if they can move to sites that in future provide suitable conditions. We developed an approach to determine appropriate climate-change adaptation strategies for individual sites within a network that was based on projections of future changes in the relative proportions of emigrants (species for which a site becomes climatically unsuitable), colonists (species for which a site becomes climatically suitable), and persistent species (species able to remain within a site despite the climatic change). Our approach also identifies key regions where additions to a network could enhance its future effectiveness. Using the sub-Saharan African Important Bird Area (IBA) network as a case study, we found that appropriate conservation strategies for individual sites varied widely across sub-Saharan Africa, and key regions where new sites could help increase network robustness varied in space and time. Although these results highlight the potential difficulties within any planning framework that seeks to address climate-change adaptation needs, they demonstrate that such planning frameworks are necessary, if current conservation strategies are to be adapted effectively, and feasible, if applied judiciously.
引用
收藏
页码:305 / 315
页数:11
相关论文
共 50 条
  • [31] The effectiveness of global protected areas for climate change mitigation
    L. Duncanson
    M. Liang
    V. Leitold
    J. Armston
    S. M. Krishna Moorthy
    R. Dubayah
    S. Costedoat
    B. J. Enquist
    L. Fatoyinbo
    S. J. Goetz
    M. Gonzalez-Roglich
    C. Merow
    P. R. Roehrdanz
    K. Tabor
    A. Zvoleff
    [J]. Nature Communications, 14
  • [32] Adaptation to climate change Legal challenges for protected areas
    Cliquet, An
    Backes, Chris
    Harris, Jim
    Howsam, Peter
    [J]. UTRECHT LAW REVIEW, 2009, 5 (01): : 158 - 175
  • [33] Protected Areas and Tourism Resources: Toward Sustainable Management
    Blanco-Cerradelo, Lidia
    Isabel Dieguez-Castrillon, M.
    Antonio Fraiz-Brea, Jose
    Gueimonde-Canto, Ana
    [J]. LAND, 2022, 11 (11)
  • [34] Increasing resilience of natural protected areas to future climate change: A fuzzy adaptive management approach
    Prato, Tony
    [J]. ECOLOGICAL MODELLING, 2012, 242 : 46 - 53
  • [35] Modelling plant invasion pathways in protected areas under climate change: implication for invasion management
    Wang, Chun-Jing
    Wan, Ji-Zhong
    Qu, Hong
    Zhang, Zhi-Xiang
    [J]. WEB ECOLOGY, 2017, 17 (02) : 69 - 77
  • [36] A conceptual framework for the integral management of marine protected areas
    Ojeda-Martinez, Celia
    Gimenez Casalduero, Francisca
    Bayle-Sempere, Just T.
    Barbera Cebrian, Carmen
    Valle, Carlos
    Luis Sanchez-Lizaso, Jose
    Forcada, Aitor
    Sanchez-Jerez, Pablo
    Martin-Sosa, Pablo
    Falcon, Jesus M.
    Salas, Fuensanta
    Graziano, Mariagrazia
    Chemello, Renato
    Stobart, Ben
    Cartagena, Pedro
    Perez-Ruzafa, Angel
    Vandeperre, Frederic
    Rochel, Elisabeth
    Planes, Serge
    Brito, Alberto
    [J]. OCEAN & COASTAL MANAGEMENT, 2009, 52 (02) : 89 - 101
  • [37] Managing Protected Areas Under Climate Change: Challenges and Priorities
    Sven Rannow
    Nicholas A. Macgregor
    Juliane Albrecht
    Humphrey Q. P. Crick
    Michael Förster
    Stefan Heiland
    Georg Janauer
    Mike D. Morecroft
    Marco Neubert
    Anca Sarbu
    Jadwiga Sienkiewicz
    [J]. Environmental Management, 2014, 54 : 732 - 743
  • [38] The potential impacts of global climate change on marine protected areas
    Cristina G. Soto
    [J]. Reviews in Fish Biology and Fisheries, 2002, 11 : 181 - 195
  • [39] The potential impacts of global climate change on marine protected areas
    Soto, CG
    [J]. REVIEWS IN FISH BIOLOGY AND FISHERIES, 2001, 11 (03) : 181 - 195
  • [40] Climate change adaptation for biodiversity in protected areas: An overview of actions
    Gillingham, Phillipa Kirsty
    Britton, J. Robert
    Jones, Georgia
    Miller-Rushing, Abraham
    Stafford, Richard
    Slater, Helen
    [J]. BIOLOGICAL CONSERVATION, 2024, 289