The role of habitat fragmentation in Pleistocene megafauna extinction in Eurasia

被引:17
作者
Mondanaro, Alessandro [1 ,2 ]
Di Febbraro, Mirko [3 ]
Melchionna, Marina [2 ]
Maiorano, Luigi [4 ]
Di Marco, Moreno [4 ]
Edwards, Neil R. [5 ]
Holden, Philip B. [5 ]
Castiglione, Silvia [2 ]
Rook, Lorenzo [1 ]
Raia, Pasquale [2 ]
机构
[1] Univ Florence, Dept Earth Sci, Florence, Italy
[2] Univ Naples Federico II, Dept Earth Environm & Resources Sci, Naples, Italy
[3] Univ Molise, Dept Biosci & Terr, Pesche, Isernia, Italy
[4] Univ Roma La Sapienza, Dept Biol & Biotechnol Charles Darwin, Rome, Italy
[5] Open Univ, Sch Environm Earth & Ecosyst Sci, Milton Keynes, Bucks, England
关键词
habitat fragmentation; landscape metrics; linear mixed models; megafauna; species distribution models; species extinction; SPECIES DISTRIBUTION; R PACKAGE; CLIMATE; DISTRIBUTIONS; COMMUNITIES; COMPLEXITY; PREDICT; MODELS; MAXENT; RISK;
D O I
10.1111/ecog.05939
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The idea that several small, rather than a single large, habitat areas should hold the highest total species richness (the so-called SLOSS debate) brings into question the importance of habitat fragmentation to extinction risk. SLOSS studies are generally addressed over a short time scale, potentially ignoring the long-term dimension of extinction risk. Here, we provide the first long-term evaluation of the role of habitat fragmentation in species extinction, focusing on 22 large mammal species that lived in Eurasia during the last 200 000 years. By combining species distribution models and landscape pattern analysis, we compared temporal dynamics of habitat spatial structure between extinct and extant species, estimating the size, number and degree of the geographical isolation of their suitable habitat patches. Our results evidenced that extinct mammals went through considerable habitat fragmentation during the last glacial period and started to fare worse than extant species from about 50 ka. In particular, our modelling effort constrains the fragmentation of habitats into a narrow time window, from 46 to 36 ka ago, surprisingly coinciding with known extinction dates of several megafauna species. Landscape spatial structure was the second most important driver affecting megafauna extinction risk (ca 38% importance), after body mass (ca 39%) and followed by dietary preferences (ca 20%). Our results indicate a major role played by landscape fragmentation on extinction. Such evidence provides insights on what might likely happen in the future, with climate change, habitat loss and fragmentation acting as the main forces exerting their negative effects on biodiversity.
引用
收藏
页码:1619 / 1630
页数:12
相关论文
共 90 条
  • [51] Drivers of change in the realised climatic niche of terrestrial mammals
    Moreno, Di Marco
    Pacifici, Michela
    Maiorano, Luigi
    Rondinini, Carlo
    [J]. ECOGRAPHY, 2021, 44 (08) : 1180 - 1190
  • [52] ENMeval: An R package for conducting spatially independent evaluations and estimating optimal model complexity for MAXENT ecological niche models
    Muscarella, Robert
    Galante, Peter J.
    Soley-Guardia, Mariano
    Boria, Robert A.
    Kass, Jamie M.
    Uriarte, Maria
    Anderson, Robert P.
    [J]. METHODS IN ECOLOGY AND EVOLUTION, 2014, 5 (11): : 1198 - 1205
  • [53] Where is positional uncertainty a problem for species distribution modelling?
    Naimi, Babak
    Hamm, Nicholas A. S.
    Groen, Thomas A.
    Skidmore, Andrew K.
    Toxopeus, Albertus G.
    [J]. ECOGRAPHY, 2014, 37 (02) : 191 - 203
  • [54] A general and simple method for obtaining R2 from generalized linear mixed-effects models
    Nakagawa, Shinichi
    Schielzeth, Holger
    [J]. METHODS IN ECOLOGY AND EVOLUTION, 2013, 4 (02): : 133 - 142
  • [55] Global effects of land use on local terrestrial biodiversity
    Newbold, Tim
    Hudson, Lawrence N.
    Hill, Samantha L. L.
    Contu, Sara
    Lysenko, Igor
    Senior, Rebecca A.
    Boerger, Luca
    Bennett, Dominic J.
    Choimes, Argyrios
    Collen, Ben
    Day, Julie
    De Palma, Adriana
    Diaz, Sandra
    Echeverria-Londono, Susy
    Edgar, Melanie J.
    Feldman, Anat
    Garon, Morgan
    Harrison, Michelle L. K.
    Alhusseini, Tamera
    Ingram, Daniel J.
    Itescu, Yuval
    Kattge, Jens
    Kemp, Victoria
    Kirkpatrick, Lucinda
    Kleyer, Michael
    Correia, David Laginha Pinto
    Martin, Callum D.
    Meiri, Shai
    Novosolov, Maria
    Pan, Yuan
    Phillips, Helen R. P.
    Purves, Drew W.
    Robinson, Alexandra
    Simpson, Jake
    Tuck, Sean L.
    Weiher, Evan
    White, Hannah J.
    Ewers, Robert M.
    Mace, Georgina M.
    Scharlemann, Joern P. W.
    Purvis, Andy
    [J]. NATURE, 2015, 520 (7545) : 45 - +
  • [56] Parnell A., 2016, Bchron: Radiocarbon dating, age-depth modelling, relative sea level rate estimation, and non-parametric phase modelling
  • [57] Maximum entropy modeling of species geographic distributions
    Phillips, SJ
    Anderson, RP
    Schapire, RE
    [J]. ECOLOGICAL MODELLING, 2006, 190 (3-4) : 231 - 259
  • [58] Modeling of species distributions with Maxent:: new extensions and a comprehensive evaluation
    Phillips, Steven J.
    Dudik, Miroslav
    [J]. ECOGRAPHY, 2008, 31 (02) : 161 - 175
  • [59] Functional diversity of marine megafauna in the Anthropocene
    Pimiento, C.
    Leprieur, F.
    Silvestro, D.
    Lefcheck, J. S.
    Albouy, C.
    Rasher, D. B.
    Davis, M.
    Svenning, J-C
    Griffin, J. N.
    [J]. SCIENCE ADVANCES, 2020, 6 (16)
  • [60] More than three million years of community evolution. The temporal and geographical resolution of the Plio-Pleistocene Western Eurasia mammal faunas
    Raia, P.
    Carotenuto, F.
    Meloro, C.
    Piras, P.
    Barbera, C.
    Kotsakis, T.
    [J]. PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY, 2009, 276 (1-4) : 15 - 23