Keyword search (4,163 papers available)

"Conservation" Keyword-tagged Publications:

Title Authors PubMed ID
1 No species left behind: borrowing strength to map data-deficient species Sharma S; Winner K; Pollock LJ; Thorson JT; Mäkinen J; Merow C; Pedersen EJ; Chefira KF; Portmann JM; Iannarilli F; Beery S; de Lutio R; Jetz W; 40571432
BIOLOGY
2 Threatened Birds in a Changing Mediterranean Wetland: Long-Term Trends and Climate-Driven Threats Bouregbi I; Bensakhri Z; Zebsa R; Zouaimia A; Bensouilah S; Bouteraa O; Khelifa R; Ouakid ML; Mahdjoub H; Houhamdi M; 40566545
BIOLOGY
3 Shared Dispersal Patterns but Contrasting Levels of Gene Flow in Two Anadromous Salmonids Along a Broad Subarctic Coastal Gradient Bouchard R; Babin C; Normandeau E; Xuereb A; Boulanger F; Coxon A; Diamond S; Fireman R; Lameboy J; Louttit N; Natawapineskum G; Okimaw D; Torio D; Varty S; Moore JS; Fraser D; Bernatchez L; 40108992
CONCORDIA
4 Widespread admixture blurs population structure and confounds Lake Trout (Salvelinus namaycush) conservation even in the genomic era Bernos TA; Gibelli J; Michaelides S; Won H; Jeon HB; Marin K; Boguski DA; Janjua MY; Gallagher CP; Howland KL; Fraser DJ; 39730611
BIOLOGY
5 Variation in flower morphology associated with higher bee diversity in urban green spaces Sinno S; MacInnis G; Lessard JP; Ziter CD; 39609370
BIOLOGY
6 Temporal Variability in Effective Size ( [Formula] ) Identifies Potential Sources of Discrepancies Between Mark Recapture and Close Kin Mark Recapture Estimates of Population Abundance Ruzzante DE; McCracken GR; Fraser DJ; MacMillan J; Buhariwalla C; Flemming JM; 39582254
BIOLOGY
7 Existing evidence on the effect of urban forest management in carbon solutions and avian conservation: a systematic literature map Hutt-Taylor K; Bassett CG; Kinnunen RP; Frei B; Ziter CD; 39363382
BIOLOGY
8 A Typology of National Park Co-management Agreements in the Era of Reconciliation in Canada Bruce K; Mulrennan ME; 38960921
CONCORDIA
9 Global assessment of effective population sizes: Consistent taxonomic differences in meeting the 50/500 rule Clarke SH; Lawrence ER; Matte JM; Gallagher BK; Salisbury SJ; Michaelides SN; Koumrouyan R; Ruzzante DE; Grant JWA; Fraser DJ; 38613250
BIOLOGY
10 Variation in a Darwin Wasp (Hymenoptera: Ichneumonidae) Community along an Elevation Gradient in a Tropical Biodiversity Hotspot: Implications for Ecology and Conservation Flinte V; Pádua DG; Durand EM; Hodgin C; Khattar G; da Silveira LFL; Fernandes DRR; Sääksjärvi IE; Monteiro RF; Macedo MV; Mayhew PJ; 37999060
BIOLOGY
11 Global meta-analysis of urbanization stressors on insect abundance, richness, and traits Vaz S; Manes S; Khattar G; Mendes M; Silveira L; Mendes E; de Morais Rodrigues E; Gama-Maia D; Lorini ML; Macedo M; Paiva PC; 37543317
BIOLOGY
12 Identifying climate change refugia for South American biodiversity Sales LP; Pires MM; 36919472
BIOLOGY
13 Population demography maintains biogeographic boundaries Schmidt C; Muñoz G; Lancaster LT; Lessard JP; Marske KA; Marshall KE; Garroway CJ; 35753949
BIOLOGY
14 The effect of past defaunation on ranges, niches, and future biodiversity forecasts Sales LP; Galetti M; Carnaval A; Monsarrat S; Svenning JC; Pires MM; 35246902
BIOLOGY
15 Buy them out before they are built: evaluating the proactive acquisition of vacant land in flood-prone areas Atoba K; Newman G; Brody S; Highfield W; Kim Y; Juan A; 34887609
ENCS
16 Small population size and low genomic diversity have no effect on fitness in experimental translocations of a wild fish. Yates MC, Bowles E, Fraser DJ 31771476
BIOLOGY
17 A critical assessment of estimating census population size from genetic population size (or vice versa) in three fishes. Yates MC, Bernos TA, Fraser DJ 29151884
BIOLOGY
18 Genetic diversity of small populations: Not always "doom and gloom"? Fraser DJ 29243868
BIOLOGY
19 Genetic structure and diversity of indigenous rice (Oryza sativa) varieties in the Eastern Himalayan region of Northeast India. Choudhury B, Khan ML, Dayanandan S 23741655
BIOLOGY

 

Title:The effect of past defaunation on ranges, niches, and future biodiversity forecasts
Authors:Sales LPGaletti MCarnaval AMonsarrat SSvenning JCPires MM
Link:https://pubmed.ncbi.nlm.nih.gov/35246902/
DOI:10.1111/gcb.16145
Publication:Global change biology
Keywords:biodiversity conservationdefaunationecological niche modelsrefugee speciesshifting baselines
PMID:35246902 Category: Date Added:2022-03-05
Dept Affiliation: BIOLOGY
1 Department of Animal Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, SP, Brazil.
2 Department of Biology, Faculty of Arts and Science, Concordia University, Montreal, QC, Canada.
3 Department of Biology, University of Miami, Coral Gables, FL, USA.
4 Instituto de Biociências, Departamento de Biodiversidade, Universidade Estadual Paulista (UNESP), Rio Claro, SP, Brazil.
5 Department of Biology and Biology Ph.D. Program, The City University of New York, The Graduate Center of CUNY, USA.
6 Center for Biodiversity Dynamics in a Changing World (BIOCHANGE) and Section for Ecoinformatics and Biodiversity, Department of Biology, Aarhus University, Denmark.

Description:

Humans have reshaped the distribution of biodiversity across the globe, extirpating species from regions otherwise suitable and restricting populations to a subset of their original ranges. Here, we ask if anthropogenic range contractions since the Late Pleistocene led to an under-representation of the realized niches for megafauna, an emblematic group of taxa often targeted for restoration actions. Using reconstructions of past geographic distributions (i.e., natural ranges) for 146 extant terrestrial large-bodied (>44kg) mammals, we estimate their climatic niches as if they had retained their original distributions and evaluate their observed niche dynamics. We found that range contractions led to a sizeable under-representation of their realized niches (i.e., niche unfilling). For 29 species, more than 10% of the environmental space once seen in their natural ranges has been lost due to anthropogenic activity, with at least 12 species undergoing reductions of more than 50% of their realized niches. Eighteen species main now be confined to low-suitability locations, where fitness and abundance are likely diminished; we consider these taxa climatic refugees. For those species, conservation strategies supported by current ranges risk being misguided if current, suboptimal habitats are considered baseline for future restoration actions. Because most climate-based biodiversity forecasts rely exclusively on current occurrence records, we went on to test the effect of neglecting historical information on estimates of species' potential distribution - as a proxy of sensitivity to climate change. We found that niche unfilling driven by past range contraction leads to an overestimation of sensitivity to future climatic change, resulting in 50% higher rates of global extinction, and underestimating the potential for megafauna conservation and restoration under future climate change. In conclusion, range contractions since the Late Pleistocene have also left imprints on megafauna realized climatic niches. Therefore, niche truncation driven by defaunation can directly affect climate and habitat-based conservation strategies.





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