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  5. Diversification of Amazonian spiny tree rats in genus Makalata (Rodentia, Echimyidae): Cryptic diversity, geographic structure and drivers of speciation.

Diversification of Amazonian spiny tree rats in genus Makalata (Rodentia, Echimyidae): Cryptic diversity, geographic structure and drivers of speciation.

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Resource type
Journal article
Creator (person)
Lima Miranda, Cleuton
Pires Farias, Izeni
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Ferreira Da Silva, Maria Nazareth
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Antonelli, Alexandre
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Fabrício Machado, Arielli
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Leite, Rafael N.
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Da Silva Nunes, Mario
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De Oliveira, Tadeu Gomes
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Pieczarka, Julio Cesar
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Date published
December 15, 2022
Abstract
Amazonian mammal diversity is exceptionally high, yet new taxonomic discoveries continue to be made and many questions remain for understanding its diversification through time and space. Here we investigate the diversification of spiny rats in the genus , whose species are strongly associated with seasonally flooded forests, watercourses and flooded islands. We use a biogeographical approach based on a mitochondrial cytochrome b gene through divergence time estimation and reconstruction of ancestral areas and events. Our findings indicate an ancient origin of for the Guiana Shield and Eastern Amazonia as ancestral area. A first cladogenetic event led to a phylogeographic break into two broader clades of through dispersal, implying a pattern of western/Eastern Amazonian clades coinciding with the Purus Arch (middle Miocene). Most of subclades we infer originated between the late Pliocene to the early Pleistocene, with few recent exceptions in the early Pliocene through dispersal and vicariant events. The hypothesis of rivers as dispersal barriers is not corroborated for , as expected for mammalian species associated with seasonally flooded environments. We identify two key events for the expansion and diversification of species: the presence of geologically stable areas in the Guiana and Brazilian shields and the transition from lacustrine conditions in western Amazonia (Acre system) to a river system, with the establishment of the Amazon River transcontinental system and its tributaries. Our results are congruent with older geological scenarios for the Amazon basin formation (Miocene), but we do not discard the influence of recent dynamics on some speciation events and, mainly, on phylogeographic structuring processes.
Contributor (person)
Rigal, François
Project(s)
Priority 2: Trait Diversity and Function
Funder
Funder nameAwards
Svenska Forskningsrådet Formas
Stiftelsen för Strategisk Forskning, Sweden
Royal Botanic Gardens, Kew, United Kingdom
Fundação Amazônia Paraense de Amparo à Pesquisa
2010/110447
Conselho Nacional de Desenvolvimento Científico e Tecnológico, Brazil
SISBIOTA - 305876/2017-1 - 150588/2021-6 - 370542/2021-5
Banco Nacional de Desenvolvimento Econômico e Social, Brazil
2.318.697.0001
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Brazil
BEX 1861/07-7
Journal title
PLOS ONE
Volume
17
Issue
12
Article number
e0276475
Publisher
Public Library of Science (PLoS)
Place of publication
San francisco, Calif., U.S.
eISSN
1932-6203
Date accepted
October 10, 2022
Official URL
https://doi.org/10.1371/journal.pone.0276475
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1371/journal.pone.0276475
Keywords
Amazonian spiny tree rats
Geographic structure
Makalata
Speciation
Diversification
Mammals
Cryptic diversity
Additional information
IF = 3.24 (2021-2022)
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