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Whole genomes show contrasting trends of population size changes and genomic diversity for an Amazonian endemic passerine over the late quaternary.
Dalapicolla, Jeronymo; Weir, Jason T; Vilaça, Sibelle Torres; Quaresma, Tânia Fontes; Schneider, Maria P C; Vasconcelos, Ana Tereza R; Aleixo, Alexandre.
Affiliation
  • Dalapicolla J; Instituto Tecnológico Vale Belém Pará Brazil.
  • Weir JT; Departamento de Sistemática e Ecologia Universidade Federal da Paraíba, João Pessoa Paraíba Brazil.
  • Vilaça ST; Department of Biological Sciences University of Toronto Scarborough Toronto Ontario Canada.
  • Quaresma TF; Department of Ecology and Evolutionary Biology University of Toronto Toronto Ontario Canada.
  • Schneider MPC; Department of Natural History, Royal Ontario Museum Toronto Ontario Canada.
  • Vasconcelos ATR; Instituto Tecnológico Vale Belém Pará Brazil.
  • Aleixo A; Instituto Tecnológico Vale Belém Pará Brazil.
Ecol Evol ; 14(4): e11250, 2024 Apr.
Article in En | MEDLINE | ID: mdl-38660467
ABSTRACT
The "Amazon tipping point" is a global change scenario resulting in replacement of upland terra-firme forests by large-scale "savannization" of mostly southern and eastern Amazon. Reduced rainfall accompanying the Last Glacial Maximum (LGM) has been proposed to have acted as such a tipping point in the past, with the prediction that terra-firme inhabiting species should have experienced reductions in population size as drier habitats expanded. Here, we use whole-genomes of an Amazonian endemic organism (Scale-backed antbirds - Willisornis spp.) sampled from nine populations across the region to test this historical demography scenario. Populations from southeastern Amazonia and close to the Amazon-Cerrado ecotone exhibited a wide range of demographic patterns, while most of those from northern and western Amazonia experienced uniform expansions between 400 kya and 80-60 kya, with gradual declines toward 20 kya. Southeastern populations of Willisornis were the last to diversify and showed smaller heterozygosity and higher runs of homozygosity values than western and northern populations. These patterns support historical population declines throughout the Amazon that affected more strongly lineages in the southern and eastern areas, where historical "tipping point" conditions existed due to the widespread replacement of humid forest by drier and open vegetation during the LGM.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Ecol Evol Year: 2024 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Ecol Evol Year: 2024 Type: Article