918 results on '"Caccone, Adalgisa"'
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2. A new lineage of Galapagos giant tortoises identified from museum samples
3. Microbial Source Tracking in the Sasco Brook, Lower Farm River, and Goodwives River Watersheds of Long Island Sound
4. Genomic evidence of sex chromosome aneuploidy and infection-associated genotypes in the tsetse fly Glossina fuscipes, the major vector of African trypanosomiasis in Uganda
5. Northern Fennoscandia via the British Isles: evidence for a novel post-glacial recolonization route by winter moth (Operophtera brumata)
6. Improved reference genome of the arboviral vector Aedes albopictus
7. Giant tortoise genomes provide insights into longevity and age-related disease
8. Population genomics through time provides insights into the consequences of decline and rapid demographic recovery through head‐starting in a Galapagos giant tortoise
9. The Galapagos giant tortoise Chelonoidis phantasticus is not extinct
10. Application of multiplex amplicon deep-sequencing (MAD-seq) to screen for putative drug resistance markers in the Necator americanus isotype-1 β-tubulin gene
11. A machine-learning approach to map landscape connectivity in Aedes aegypti with genetic and environmental data
12. Genome-Wide Assessment of Diversity and Divergence Among Extant Galapagos Giant Tortoise Species
13. Temporal Mitogenomics of the Galapagos Giant Tortoise from Pinzón Reveals Potential Biases in Population Genetic Inference.
14. Theory, practice, and conservation in the age of genomics: The Galápagos giant tortoise as a case study
15. Author Correction: Identification of Genetically Important Individuals of the Rediscovered Floreana Galápagos Giant Tortoise (Chelonoidis elephantopus) Provides Founders for Species Restoration Program.
16. Identification of Genetically Important Individuals of the Rediscovered Floreana Galápagos Giant Tortoise (Chelonoidis elephantopus) Provide Founders for Species Restoration Program.
17. Population genomic structure of a widespread, urban‐dwelling mammal: The eastern grey squirrel (Sciurus carolinensis)
18. Author Correction: Improved reference genome of the arboviral vector Aedes albopictus
19. Description of a New Galapagos Giant Tortoise Species (Chelonoidis; Testudines: Testudinidae) from Cerro Fatal on Santa Cruz Island.
20. List of contributors
21. Evolution and phylogenetics
22. Lineage fusion in Galápagos giant tortoises.
23. A genotyping array for the globally invasive vector mosquito, Aedes albopictus
24. Aalbo1200: global genetic differentiation and variability of the mosquito Aedes albopictus
25. Editing nature : Local roots of global governance
26. Urban rat races : spatial population genomics of brown rats ( Rattus norvegicus ) compared across multiple cities
27. The genetic legacy of Lonesome George survives: Giant tortoises with Pinta Island ancestry identified in Galápagos
28. Widespread hybridization among native and invasive species of Operophtera moths (Lepidoptera: Geometridae) in Europe and North America
29. Polyandry is a common event in wild populations of the Tsetse fly Glossina fuscipes fuscipes and may impact population reduction measures.
30. Giant Tortoises Are Not So Slow: Rapid Diversification and Biogeographic Consensus in the Galápagos
31. Genetic Analysis of a Successful Repatriation Programme: Giant Galápagos Tortoises
32. Phylogeography and History of Giant Galápagos Tortoises
33. Molecular Biogeography of Cave Life: A Study Using Mitochondrial DNA from Bathysciine Beetles
34. Origin and Evolutionary Relationships of Giant Galápagos Tortoises
35. Whole-genome sequencing confirms multiple species of Galapagos giant tortoises
36. Mitochondrial DNA Phylogenies for the Drosophila obscura Group
37. Mitochondrial DNA Rates and Biogeography in European Newts (Genus Euproctus)
38. Global population divergence and admixture of the brown rat (Rattus norvegicus)
39. Ecological and evolutionary influences on body size and shape in the Galápagos marine iguana ( Amblyrhynchus cristatus )
40. Genomic insights into the ancient spread of Lyme disease across North America
41. Hybridization masks speciation in the evolutionary history of the Galápagos marine iguana
42. Supplementary material 1 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
43. Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA
44. Supplementary material 3 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
45. Supplementary material 4 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
46. Supplementary material 2 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
47. Supplementary material 9 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
48. Supplementary material 8 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
49. Supplementary material 7 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
50. Supplementary material 5 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
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