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1.
Sci Rep ; 10(1): 19474, 2020 11 10.
Artigo em Inglês | MEDLINE | ID: mdl-33173126

RESUMO

Using satellite imagery, drone imagery, and ground counts, we have assembled the first comprehensive global population assessment of Chinstrap penguins (Pygoscelis antarctica) at 3.42 (95th-percentile CI: [2.98, 4.00]) million breeding pairs across 375 extant colonies. Twenty-three previously known Chinstrap penguin colonies are found to be absent or extirpated. We identify five new colonies, and 21 additional colonies previously unreported and likely missed by previous surveys. Limited or imprecise historical data prohibit our assessment of population change at 35% of all Chinstrap penguin colonies. Of colonies for which a comparison can be made to historical counts in the 1980s, 45% have probably or certainly declined and 18% have probably or certainly increased. Several large colonies in the South Sandwich Islands, where conditions apparently remain favorable for Chinstrap penguins, cannot be assessed against a historical benchmark. Our population assessment provides a detailed baseline for quantifying future changes in Chinstrap penguin abundance, sheds new light on the environmental drivers of Chinstrap penguin population dynamics in Antarctica, and contributes to ongoing monitoring and conservation efforts at a time of climate change and concerns over declining krill abundance in the Southern Ocean.


Assuntos
Conservação dos Recursos Naturais/métodos , Comportamento Alimentar/fisiologia , Imagens de Satélites/métodos , Spheniscidae/fisiologia , Distribuição Animal , Animais , Regiões Antárticas , Mudança Climática , Euphausiacea/fisiologia , Geografia , Ilhas , Densidade Demográfica , Dinâmica Populacional , Estações do Ano , Spheniscidae/classificação
2.
Acta Parasitol ; 65(2): 525-534, 2020 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-31919798

RESUMO

PURPOSE: Cardiocephaloides is a small genus of strigeid digeneans with an essentially cosmopolitan distribution. Most members of Cardiocephaloides are found in larid birds, however, Cardiocephaloides physalis is an exception and parasitizes penguins in some coastal regions of South America and South Africa. No prior molecular phylogenetic studies have included DNA sequence data of C. physalis. Herein, we provide molecular phylogenetic analyses of Cardiocephaloides using DNA sequences from five species of these strigeids. METHODS: Adult Cardiocephaloides spp. were obtained from larid birds and penguins collected from 3 biogeographical realms (Palearctic, Nearctic and Neotropics). We have generated sequences of the complete ITS region and partial 28S gene of the nuclear ribosomal DNA, along with partial sequences of the mitochondrial CO1 gene for C. physalis, C. medioconiger and the type species of the genus, C. longicollis and used them for phylogenetic inference. RESULTS: Cardiocephaloides spp. appeared as a 100% supported clade in the phylogenetic tree based on 28S sequences. The position of C. physalis varied between the phylogenetic trees based on the relatively conservative 28S gene on one hand, and variable ITS1 and COI sequences on the other. Cardiocephaloides physalis was nested within the clade of Cardiocephaloides spp. in the 28S tree and appeared as the sister group to the remaining members of the genus in the ITS1 region and COI trees. We detected 0.4-1.6% interspecific divergence in 28S, 1.9-6.9% in the ITS region and 8.7-11.8% in CO1 sequences of Cardiocephaloides spp. Our 28S sequence of C. physalis from South America and a shorter sequence from Africa available in the GenBank were identical. CONCLUSION: Cardiocephaloides as represented in the currently available dataset is monophyletic with C. physalis parasitism in penguins likely resulting from a secondary host-switching event. Identical 28S sequences of C. physalis from South America and Africa cautiously confirm the broad distribution of this species, although comparison of faster mutating genes (e. g., CO1) is recommended for a better substantiated conclusion.


Assuntos
Doenças das Aves/parasitologia , Spheniscidae/parasitologia , Trematódeos/classificação , Infecções por Trematódeos/veterinária , Animais , Sequência de Bases , Teorema de Bayes , Charadriiformes/parasitologia , Chile , DNA de Helmintos/química , DNA Mitocondrial/química , DNA Ribossômico/química , Complexo IV da Cadeia de Transporte de Elétrons/química , Complexo IV da Cadeia de Transporte de Elétrons/genética , Cadeias de Markov , Método de Monte Carlo , Filogenia , RNA Ribossômico 28S/genética , Alinhamento de Sequência , Spheniscidae/classificação , Trematódeos/genética , Infecções por Trematódeos/parasitologia
3.
PLoS One ; 10(12): e0144966, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26675310

RESUMO

Molecular genetic analyses present powerful tools for elucidating demographic and biogeographic histories of taxa. Here we present genetic evidence showing a dynamic history for two cryptic lineages within Eudyptula, the world's smallest penguin. Specifically, we use a suite of genetic markers to reveal that two congeneric taxa ('Australia' and 'New Zealand') co-occur in southern New Zealand, with only low levels of hybridization. Coalescent modelling suggests that the Australian little penguin only recently expanded into southern New Zealand. Analyses conducted under time-dependent molecular evolutionary rates lend support to the hypothesis of recent anthropogenic turnover, consistent with shifts detected in several other New Zealand coastal vertebrate taxa. This apparent turnover event highlights the dynamic nature of the region's coastal ecosystem.


Assuntos
Spheniscidae/genética , Migração Animal , Animais , Austrália , Análise por Conglomerados , DNA Mitocondrial , Evolução Molecular , Fluxo Gênico , Marcadores Genéticos , Genética Populacional , Íntrons , Cadeias de Markov , Repetições de Microssatélites , Dados de Sequência Molecular , Método de Monte Carlo , Nova Zelândia , Spheniscidae/classificação
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