| Keyword search (4,163 papers available) | ![]() |
"Biodiversity" Keyword-tagged Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | The Bug-Network (BugNet): A Global Experimental Network Testing the Effects of Invertebrate Herbivores and Fungal Pathogens on Plant Communities and Ecosystem Function in Open Ecosystems | Kempel A; Adamidis GC; Anadón JD; Atkinson J; Auge H; Avtzis D; Bachelot B; Bashirzadeh M; Bota JL; Classen A; Constantinou I; Crawley M; de Bellis T; Dostal P; Ebeling A; Eisenhauer N; Eldridge DJ; Encina G; Estrada C; Everingham S; Fanin N; Feng Y; Gaspar M; Gooriah L; Graff P; Montalván EG; Montalván PG; Hartke TR; Huang L; Jochum M; Kaljund K; Karmiris I; Koorem K; Korell L; Laine AL; le Provost G; Lessard JP; Liu M; Liu X; Liu Y; Llancabure J; Loïez S; Loydi A; Marrero H; Gockel S; Montoya A; Münzbergo | 41080499 ENCS |
| 2 | 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 |
| 3 | Variation in flower morphology associated with higher bee diversity in urban green spaces | Sinno S; MacInnis G; Lessard JP; Ziter CD; | 39609370 BIOLOGY |
| 4 | 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 |
| 5 | Reciprocal inhibition and competitive hierarchy cause negative biodiversity-ecosystem function relationships | D' Andrea R; Khattar G; Koffel T; Frans VF; Bittleston LS; Cuellar-Gempeler C; | 38193391 BIOLOGY |
| 6 | 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 |
| 7 | Macrogenetics reveals multifaceted influences of environmental variation on vertebrate population genetic diversity across the Americas | Lawrence ER; Pedersen EJ; Fraser DJ; | 37365672 BIOLOGY |
| 8 | Identifying climate change refugia for South American biodiversity | Sales LP; Pires MM; | 36919472 BIOLOGY |
| 9 | Decline in wild bee species richness associated with honey bee (Apis mellifera L.) abundance in an urban ecosystem | MacInnis G; Normandin E; Ziter CD; | 36755869 BIOLOGY |
| 10 | 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 |
| 11 | Diversity from genes to ecosystems: A unifying framework to study variation across biological metrics and scales. | Gaggiotti OE, Chao A, Peres-Neto P, Chiu CH, Edwards C, Fortin MJ, Jost L, Richards CM, Selkoe KA | 30026805 BIOLOGY |
| 12 | Biodiversity Observations Miner: A web application to unlock primary biodiversity data from published literature. | Muñoz G, Kissling WD, van Loon EE | 30692868 BIOLOGY |
| Title: | Global assessment of effective population sizes: Consistent taxonomic differences in meeting the 50/500 rule | ||||
| Authors: | Clarke SH, Lawrence ER, Matte JM, Gallagher BK, Salisbury SJ, Michaelides SN, Koumrouyan R, Ruzzante DE, Grant JWA, Fraser DJ | ||||
| Link: | https://pubmed.ncbi.nlm.nih.gov/38613250/ | ||||
| DOI: | 10.1111/mec.17353 | ||||
| Publication: | Molecular ecology | ||||
| Keywords: | 50/500 rule; Global Human Footprint; biodiversity; conservation biology; effective population size; macrogenetics; | ||||
| PMID: | 38613250 | Category: | Date Added: | 2024-04-13 | |
| Dept Affiliation: |
BIOLOGY
1 Department of Biology, Concordia University, Montreal, Quebec, Canada. 2 Department of Biology, Dalhousie University, Halifax, Nova Scotia, Canada. |
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Description: |
Effective population size (Ne) is a particularly useful metric for conservation as it affects genetic drift, inbreeding and adaptive potential within populations. Current guidelines recommend a minimum Ne of 50 and 500 to avoid short-term inbreeding and to preserve long-term adaptive potential respectively. However, the extent to which wild populations reach these thresholds globally has not been investigated, nor has the relationship between Ne and human activities. Through a quantitative review, we generated a dataset with 4610 georeferenced Ne estimates from 3829 populations, extracted from 723 articles. These data show that certain taxonomic groups are less likely to meet 50/500 thresholds and are disproportionately impacted by human activities; plant, mammal and amphibian populations had a <54% probability of reaching = 50 and a <9% probability of reaching = 500. Populations listed as being of conservation concern according to the IUCN Red List had a smaller median than unlisted populations, and this was consistent across all taxonomic groups. was reduced in areas with a greater Global Human Footprint, especially for amphibians, birds and mammals, however relationships varied between taxa. We also highlight several considerations for future works, including the role that gene flow and subpopulation structure plays in the estimation of in wild populations, and the need for finer-scale taxonomic analyses. Our findings provide guidance for more specific thresholds based on Ne and help prioritise assessment of populations from taxa most at risk of failing to meet conservation thresholds. |



