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1.
Annu Rev Microbiol ; 74: 39-63, 2020 09 08.
Artigo em Inglês | MEDLINE | ID: mdl-32905751

RESUMO

African apes harbor at least twelve Plasmodium species, some of which have been a source of human infection. It is now well established that Plasmodium falciparum emerged following the transmission of a gorilla parasite, perhaps within the last 10,000 years, while Plasmodium vivax emerged earlier from a parasite lineage that infected humans and apes in Africa before the Duffy-negative mutation eliminated the parasite from humans there. Compared to their ape relatives, both human parasites have greatly reduced genetic diversity and an excess of nonsynonymous mutations, consistent with severe genetic bottlenecks followed by rapid population expansion. A putative new Plasmodium species widespread in chimpanzees, gorillas, and bonobos places the origin of Plasmodium malariae in Africa. Here, we review what is known about the origins and evolutionary history of all human-infective Plasmodium species, the time and circumstances of their emergence, and the diversity, host specificity, and zoonotic potential of their ape counterparts.


Assuntos
Evolução Molecular , Hominidae/parasitologia , Malária/transmissão , Malária/veterinária , Plasmodium/genética , Animais , DNA de Protozoário , Variação Genética , Gorilla gorilla/parasitologia , Humanos , Malária/parasitologia , Pan troglodytes/parasitologia , Filogenia , Plasmodium/classificação , Plasmodium falciparum/genética , Zoonoses/parasitologia
2.
ISME J ; 14(2): 609-622, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31719654

RESUMO

Documenting the natural diversity of eukaryotic organisms in the nonhuman primate (NHP) gut is important for understanding the evolution of the mammalian gut microbiome, its role in digestion, health and disease, and the consequences of anthropogenic change on primate biology and conservation. Despite the ecological significance of gut-associated eukaryotes, little is known about the factors that influence their assembly and diversity in mammals. In this study, we used an 18S rRNA gene fragment metabarcoding approach to assess the eukaryotic assemblage of 62 individuals representing 16 NHP species. We find that cercopithecoids, and especially the cercopithecines, have substantially higher alpha diversity than other NHP groups. Gut-associated protists and nematodes are widespread among NHPs, consistent with their ancient association with NHP hosts. However, we do not find a consistent signal of phylosymbiosis or host-species specificity. Rather, gut eukaryotes are only weakly structured by primate phylogeny with minimal signal from diet, in contrast to previous reports of NHP gut bacteria. The results of this study indicate that gut-associated eukaryotes offer different information than gut-associated bacteria and add to our understanding of the structure of the gut microbiome.


Assuntos
Biodiversidade , Microbioma Gastrointestinal , Metagenômica , Primatas/microbiologia , Primatas/parasitologia , Animais , Animais Selvagens/microbiologia , Animais Selvagens/parasitologia , Blastocisto/classificação , Cercopithecidae/microbiologia , Cercopithecidae/parasitologia , Cilióforos/classificação , Cilióforos/genética , Cilióforos/isolamento & purificação , Dieta , Endolimax/classificação , Endolimax/genética , Endolimax/isolamento & purificação , Entamoeba/classificação , Entamoeba/genética , Eucariotos/classificação , Eucariotos/genética , Eucariotos/isolamento & purificação , Fezes/microbiologia , Fezes/parasitologia , Fungos/classificação , Fungos/genética , Fungos/isolamento & purificação , Hominidae/microbiologia , Hominidae/parasitologia , Especificidade de Hospedeiro , Lemur/microbiologia , Lemur/parasitologia , Nematoides/classificação , Nematoides/genética , Nematoides/isolamento & purificação , Filogenia , Platirrinos/microbiologia , Platirrinos/parasitologia
3.
Int J Parasitol ; 48(7): 531-542, 2018 06.
Artigo em Inglês | MEDLINE | ID: mdl-29476866

RESUMO

African apes are endemically infected with numerous Plasmodium spp. including close relatives of human Plasmodium falciparum, Plasmodium vivax, Plasmodium ovale, and Plasmodium malariae. Although these ape parasites are not believed to pose a zoonotic threat, their ability to colonise humans has not been fully explored. In particular, it remains unknown whether ape parasites are able to initiate exo-erythrocytic replication in human hepatocytes following the bite of an infective mosquito. Since animal studies have shown that liver stage infection can result in the excretion of parasite nucleic acids into the bile, we screened faecal samples from 504 rural Cameroonians for Plasmodium DNA. Using pan-Laverania as well as P. malariae- and P. vivax-specific primer sets, we amplified human P. falciparum (n = 14), P. malariae (n = 1), and P. ovale wallikeri (n = 1) mitochondrial sequences from faecal DNA of 15 individuals. However, despite using an intensified PCR screening approach we failed to detect ape Laverania, ape P. vivax or ape P. malariae parasites in these same subjects. One faecal sample from a hunter-gatherer contained a sequence closely related to the porcupine parasite Plasmodium atheruri. Since this same faecal sample also contained porcupine mitochondrial DNA, but a matching blood sample was Plasmodium-negative, it is likely that this hunter-gatherer consumed Plasmodium-infected bushmeat. Faecal Plasmodium detection was not secondary to intestinal bleeding and/or infection with gastrointestinal parasites, but indicative of blood parasitaemia. Quantitative PCR identified 26-fold more parasite DNA in the blood of faecal Plasmodium-positive than faecal Plasmodium-negative individuals (P = 0.01). However, among blood-positive individuals only 10% - 20% had detectable Plasmodium sequences in their stool. Thus, faecal screening of rural Cameroonians failed to uncover abortive ape Plasmodium infections, but detected infection with human parasites, albeit with reduced sensitivity compared with blood analysis.


Assuntos
DNA de Protozoário/isolamento & purificação , Fezes/parasitologia , Hominidae/parasitologia , Malária/veterinária , Plasmodium/classificação , Zoonoses , Animais , Camarões/epidemiologia , Humanos , Malária/epidemiologia , Malária/parasitologia , Filogenia , Plasmodium/genética
4.
Infez Med ; 24(2): 93-104, 2016 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-27367318

RESUMO

Malaria, the most common parasitic disease in the world, is transmitted to the human host by mosquitoes of the genus Anopheles. The transmission of malaria requires the interaction between the host, the vector and the parasite.The four species of parasites responsible for human malaria are Plasmodium falciparum, Plasmodium ovale, Plasmodium malariae and Plasmodium vivax. Occasionally humans can be infected by several simian species, like Plasmodium knowlesi, recognised as a major cause of human malaria in South-East Asia since 2004. While P. falciparum is responsible for most malaria cases, about 8% of estimated cases globally are caused by P. vivax. The different Plasmodia are not uniformly distributed although there are areas of species overlap. The life cycle of all species of human malaria parasites is characterised by an exogenous sexual phase in which multiplication occurs in several species of Anopheles mosquitoes, and an endogenous asexual phase in the vertebrate host. The time span required for mature oocyst development in the salivary glands is quite variable (7-30 days), characteristic of each species and influenced by ambient temperature. The vector Anopheles includes 465 formally recognised species. Approximately 70 of these species have the capacity to transmit Plasmodium spp. to humans and 41 are considered as dominant vector capable of transmitting malaria. The intensity of transmission is dependent on the vectorial capacity and competence of local mosquitoes. An efficient system for malaria transmission needs strong interaction between humans, the ecosystem and infected vectors. Global warming induced by human activities has increased the risk of vector-borne diseases such as malaria. Recent decades have witnessed changes in the ecosystem and climate without precedent in human history although the emphasis in the role of temperature on the epidemiology of malaria has given way to predisposing conditions such as ecosystem changes, political instability and health policies that have reduced the funds for vector control, combined with the presence of migratory flows from endemic countries.


Assuntos
Anopheles/parasitologia , Clima , Insetos Vetores/parasitologia , Malária/transmissão , Animais , Anopheles/classificação , Mudança Climática , Reservatórios de Doenças , Doenças Endêmicas , Feminino , Saúde Global , Hominidae/parasitologia , Humanos , Estágios do Ciclo de Vida , Malária/epidemiologia , Malária/prevenção & controle , Malária/veterinária , Plasmodium/classificação , Plasmodium/fisiologia , Dinâmica Populacional , Doenças dos Primatas/epidemiologia , Doenças dos Primatas/parasitologia , Doenças dos Primatas/transmissão , Especificidade da Espécie , Urbanização
6.
Proc Natl Acad Sci U S A ; 113(19): 5329-34, 2016 May 10.
Artigo em Inglês | MEDLINE | ID: mdl-27071123

RESUMO

Recent studies have highlighted the large diversity of malaria parasites infecting African great apes (subgenus Laverania) and their strong host specificity. Although the existence of genetic incompatibilities preventing the cross-species transfer may explain host specificity, the existence of vectors with a high preference for a determined host represents another possibility. To test this hypothesis, we undertook a 15-mo-long longitudinal entomological survey in two forest regions of Gabon, where wild apes live, at different heights under the canopy. More than 2,400 anopheline mosquitoes belonging to 18 species were collected. Among them, only three species of Anopheles were found infected with ape Plasmodium: Anopheles vinckei, Anopheles moucheti, and Anopheles marshallii Their role in transmission was confirmed by the detection of the parasites in their salivary glands. Among these species, An. vinckei showed significantly the highest prevalence of infection and was shown to be able to transmit parasites of both chimpanzees and gorillas. Transmission was also shown to be conditioned by seasonal factors and by the heights of capture under the canopy. Moreover, human landing catches of sylvan Anopheles demonstrated the propensity of these three vector species to feed on humans when available. Our results suggest therefore that the strong host specificity observed in the Laveranias is not linked to a specific association between the vertebrate host and the vector species and highlight the potential role of these vectors as bridge between apes and humans.


Assuntos
Anopheles/parasitologia , Vetores de Doenças/classificação , Hominidae/microbiologia , Hominidae/parasitologia , Malária/parasitologia , Plasmodium/isolamento & purificação , Animais , Gabão , Humanos , Floresta Úmida , Especificidade da Espécie , Zoonoses/microbiologia , Zoonoses/parasitologia
7.
PLoS One ; 10(6): e0126933, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26039338

RESUMO

African great apes are naturally infected by a multitude of Plasmodium species most of them recently discovered, among which several are closely related to human malaria agents. However, it is still unknown whether these animals can serve as source of infections for humans living in their vicinity. To evaluate this possibility, we analysed the nature of Plasmodium infections from a bank of 4281 human blood samples collected in 210 villages of Gabon, Central Africa. Among them, 2255 were detected positive to Plasmodium using molecular methods (Plasmodium Cytochrome b amplification). A high throughput sequencing technology (454 GS-FLX Titanium technology, Roche) was then used to identify the Plasmodium species present within each positive sample. Overall, we identified with confidence only three species infecting humans in Gabon: P. falciparum, P. malariae and P. ovale. None of the species known to infect non-human primates in Central Africa was found. Our study shows that ape Plasmodium parasites of the subgenus Laverania do not constitute a frequent source of infection for humans. It also suggests that some strong host genetic barriers must exist to prevent the cross species transmission of ape Plasmodium in a context of ever increasing contacts between humans and wildlife.


Assuntos
Doenças dos Símios Antropoides/genética , Citocromos b/genética , Hominidae/parasitologia , Malária/genética , Plasmodium/genética , Proteínas de Protozoários/genética , Animais , Doenças dos Símios Antropoides/parasitologia , Feminino , Gabão , Humanos , Masculino , Plasmodium/patogenicidade , Especificidade da Espécie
9.
Sci Rep ; 4: 4478, 2014 Mar 27.
Artigo em Inglês | MEDLINE | ID: mdl-24675424

RESUMO

The consumption of insects by apes has previously been reported based on direct observations and/or trail signs in feces. However, DNA-based diet analyses may have the potential to reveal trophic links for these wild species. Herein, we analyzed the insect-diet diversity of 9 feces obtained from three species of African great apes, gorilla (Gorilla gorilla gorilla), chimpanzee (Pan troglodytes) and bonobo (Pan paniscus), using two mitochondrial amplifications for arthropods. A total of 1056 clones were sequenced for Cyt-b and COI gene libraries, which contained 50 and 56 operational taxonomic units (OTUs), respectively. BLAST research revealed that the OTUs belonged to 32 families from 5 orders (Diptera, Isoptera, Lepidoptera, Coleoptera, and Orthoptera). While ants were not detected by this method, the consumption of flies, beetles, moths, mosquitoes and termites was evident in these samples. Our findings indicate that molecular techniques can be used to analyze insect food items in wild animals.


Assuntos
Fezes/parasitologia , Hominidae/parasitologia , Insetos/classificação , Insetos/genética , Isópteros/classificação , Isópteros/genética , Animais , Doenças dos Símios Antropoides/parasitologia , Análise por Conglomerados , Código de Barras de DNA Taxonômico , Genes Mitocondriais , Dados de Sequência Molecular , Filogenia
10.
Proc Natl Acad Sci U S A ; 110(20): 8123-8, 2013 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-23637341

RESUMO

Plasmodium vivax is considered to be absent from Central and West Africa because of the protective effect of Duffy negativity. However, there are reports of persons returning from these areas infected with this parasite and observations suggesting the existence of transmission. Among the possible explanations for this apparent paradox, the existence of a zoonotic reservoir has been proposed. May great apes be this reservoir? We analyze the mitochondrial and nuclear genetic diversity of P. vivax parasites isolated from great apes in Africa and compare it to parasites isolated from travelers returning from these regions of Africa, as well as to human isolates distributed all over the world. We show that the P. vivax sequences from parasites of great apes form a clade genetically distinct from the parasites circulating in humans. We show that this clade's parasites can be infectious to humans by describing the case of a traveler returning from the Central African Republic infected with one of them. The relationship between this P. vivax clade in great apes and the human isolates is discussed.


Assuntos
Evolução Molecular , Especificidade de Hospedeiro , Malária/parasitologia , Plasmodium vivax/genética , Adulto , Animais , República Centro-Africana , Culicidae/parasitologia , DNA Mitocondrial/genética , Variação Genética , Genoma , Haplótipos , Hominidae/parasitologia , Humanos , Masculino , Dados de Sequência Molecular , Filogenia , Reação em Cadeia da Polimerase , Fatores de Tempo
13.
BMC Evol Biol ; 11: 70, 2011 Mar 15.
Artigo em Inglês | MEDLINE | ID: mdl-21406081

RESUMO

BACKGROUND: Plasmodium falciparum is responsible for the most acute form of human malaria. Most recent studies demonstrate that it belongs to a monophyletic lineage specialized in the infection of great ape hosts. Several other Plasmodium species cause human malaria. They all belong to another distinct lineage of parasites which infect a wider range of primate species. All known mammalian malaria parasites appear to be monophyletic. Their clade includes the two previous distinct lineages of parasites of primates and great apes, one lineage of rodent parasites, and presumably Hepatocystis species. Plasmodium falciparum and great ape parasites are commonly thought to be the sister-group of all other mammal-infecting malaria parasites. However, some studies supported contradictory origins and found parasites of great apes to be closer to those of rodents, or to those of other primates. RESULTS: To distinguish between these mutually exclusive hypotheses on the origin of Plasmodium falciparum and its great ape infecting relatives, we performed a comprehensive phylogenetic analysis based on a data set of three mitochondrial genes from 33 to 84 malaria parasites. We showed that malarial mitochondrial genes have evolved slowly and are compositionally homogeneous. We estimated their phylogenetic relationships using Bayesian and maximum-likelihood methods. Inferred trees were checked for their robustness to the (i) site selection, (ii) assumptions of various probabilistic models, and (iii) taxon sampling. Our results robustly support a common ancestry of rodent parasites and Plasmodium falciparum's relatives infecting great apes. CONCLUSIONS: Our results refute the most common view of the origin of great ape malaria parasites, and instead demonstrate the robustness of a less well-established phylogenetic hypothesis, under which Plasmodium falciparum and its relatives infecting great apes are closely related to rodent parasites. This study sheds light on the evolutionary history of Plasmodium falciparum, a major issue for human health.


Assuntos
Evolução Molecular , Genes Mitocondriais , Hominidae/parasitologia , Plasmodium falciparum/genética , Animais , Teorema de Bayes , DNA Mitocondrial/genética , DNA de Protozoário/genética , Genoma Mitocondrial , Funções Verossimilhança , Malária/parasitologia , Modelos Genéticos , Filogenia , Plasmodium falciparum/classificação , Alinhamento de Sequência , Análise de Sequência de DNA
14.
Bull Acad Natl Med ; 195(8): 1945-54, 2011 Nov.
Artigo em Francês | MEDLINE | ID: mdl-22844753

RESUMO

Malaria parasites (Plasmodium spp) that infect great apes are very poorly documented Malaria was first described in gorillas, chimpanzees and orangutans in the early 20th century, but most studies were confined to a handful of chimpanzees in the 1930-1950s and a few orangutans in the 1970s. The three Plasmodium species described in African great apes were very similar to those infecting humans. The most extensively studied was P reichenowi, because of its close phylogenetic relation to P. falciparum, the predominant parasite in Africa and the most dangerous for humans. In the last three years, independent molecular studies of various chimpanzee and gorilla populations have revealed an unexpected diversity in the Plasmodium species they harbor, which are also phylogenetically close to P falciparum. In addition, cases of non human primate infection by human malaria parasites have been observed. These observations shed fresh light on the origin and evolutionary history of P. falciparum and provide a unique opportunity to probe the biological specificities of this major human parasite.


Assuntos
Hominidae/parasitologia , Malária Falciparum/parasitologia , Animais
15.
Parasitology ; 138(13): 1737-49, 2011 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-21118608

RESUMO

OBJECTIVE: The evolutionary history of human malaria parasites (genus Plasmodium) has long been a subject of speculation and controversy. The complete genome sequences of the two most widespread human malaria parasites, P. falciparum and P. vivax, and of the monkey parasite P. knowlesi are now available, together with the draft genomes of the chimpanzee parasite P. reichenowi, three rodent parasites, P. yoelii yoelli, P. berghei and P. chabaudi chabaudi, and one avian parasite, P. gallinaceum. METHODS: We present here an analysis of 45 orthologous gene sequences across the eight species that resolves the relationships of major Plasmodium lineages, and provides the first comprehensive dating of the age of those groups. RESULTS: Our analyses support the hypothesis that the last common ancestor of P. falciparum and the chimpanzee parasite P. reichenowi occurred around the time of the human-chimpanzee divergence. P. falciparum infections of African apes are most likely derived from humans and not the other way around. On the other hand, P. vivax, split from the monkey parasite P. knowlesi in the much more distant past, during the time that encompasses the separation of the Great Apes and Old World Monkeys. CONCLUSION: The results support an ancient association between malaria parasites and their primate hosts, including humans.


Assuntos
Evolução Biológica , Evolução Molecular , Genoma de Protozoário/genética , Interações Hospedeiro-Parasita/genética , Plasmodium/classificação , Plasmodium/genética , Animais , Sequência de Bases , DNA Mitocondrial/genética , Haplorrinos/genética , Haplorrinos/parasitologia , Hominidae/genética , Hominidae/parasitologia , Humanos , Malária/parasitologia , Malária Falciparum/parasitologia , Pan troglodytes/genética , Pan troglodytes/parasitologia , Filogenia , Plasmodium/fisiologia , Plasmodium falciparum/genética , Plasmodium falciparum/fisiologia
16.
J Parasitol ; 96(6): 1139-44, 2010 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-21158624

RESUMO

Balantidium coli is a ciliate reported in many mammalian species, including African great apes. In the former, asymptomatic infections as well as clinical balantidiasis have been reported in captivity. We carried out a cross-sectional study of B. coli in African great apes (chimpanzees, bonobos, and both species of gorillas) and examined 1,161 fecal samples from 28 captive facilities in Europe, plus 2 sanctuaries and 11 wild sites in Africa. Samples were analyzed with the use of Sheather's flotation and merthiolate-iodine-formaldehyde (MIFC) sedimentation. MIFC sedimentation was the more sensitive technique for diagnostics of B. coli in apes. Although not detected in any wild-ape populations, B. coli was diagnosed in 52.6% of captive individuals. Surprisingly, in the apes' feces, trophozoites of B. coli were commonly detected, in contrast with other animals, e.g., Old World monkeys, pigs, etc. Most likely reservoirs for B. coli in captive apes include synantropic rats. High starch diets in captive apes are likely to exacerbate the occurrence of balantidiasis in captive apes.


Assuntos
Animais Selvagens/parasitologia , Animais de Zoológico/parasitologia , Doenças dos Símios Antropoides/epidemiologia , Hominidae/parasitologia , África/epidemiologia , Animais , Doenças dos Símios Antropoides/parasitologia , Balantidíase/epidemiologia , Balantidíase/veterinária , Estudos Transversais , Dieta/veterinária , Carboidratos da Dieta/administração & dosagem , Europa (Continente)/epidemiologia , Fezes/parasitologia , Gorilla gorilla , Pan paniscus , Pan troglodytes , Amido/administração & dosagem
17.
J Biol ; 8(2): 20, 2009.
Artigo em Inglês | MEDLINE | ID: mdl-19232074

RESUMO

Although most epidemic human infectious diseases are caused by recently introduced pathogens, cospeciation of parasite and host is commonplace for endemic infections. Occasional host infidelity, however, provides the endemic parasite with an opportunity to survive the potential extinction of its host. Such infidelity may account for the survival of certain types of human lice, and it is currently exemplified by viruses such as HIV.


Assuntos
Hominidae/parasitologia , Infestações por Piolhos/parasitologia , Ftirápteros/fisiologia , Animais , Evolução Biológica , Hominidae/classificação , Interações Hospedeiro-Parasita , Humanos , Ftirápteros/classificação , Doenças dos Primatas/parasitologia , Fatores de Tempo
18.
Ecohealth ; 6(4): 557-64, 2009 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-20238141

RESUMO

Many studies have examined the long-term effects of selective logging on the abundance and diversity of free-ranging primates. Logging is known to reduce the abundance of some primate species through associated hunting and the loss of food trees for frugivores; however, the potential role of pathogens in such primate population declines is largely unexplored. Selective logging results in a suite of alterations in host ecology and forest structure that may alter pathogen dynamics in resident wildlife populations. In addition, environmental pollution with human fecal material may present a risk for wildlife infections with zoonotic protozoa, such as Cryptosporidium and Giardia. To better understand this interplay, we compared patterns of infection with these potentially pathogenic protozoa in sympatric western lowland gorillas (Gorilla gorilla gorilla) and chimpanzees (Pan troglodytes troglodytes) in the undisturbed Goualougo Triangle of Nouabalé-Ndoki National Park and the adjacent previously logged Kabo Concession in northern Republic of Congo. No Cryptosporidium infections were detected in any of the apes examined and prevalence of infection with Giardia was low (3.73% overall) and did not differ between logged and undisturbed forest for chimpanzees or gorillas. These results provide a baseline for prevalence of these protozoa in forest-dwelling African apes and suggest that low-intensity logging may not result in long-term elevated prevalence of potentially pathogenic protozoa.


Assuntos
Ecologia , Doenças dos Primatas/epidemiologia , Infecções Protozoárias em Animais/epidemiologia , Árvores , Animais , Congo/epidemiologia , Cryptosporidium/isolamento & purificação , Fezes/parasitologia , Agricultura Florestal/métodos , Giardia/isolamento & purificação , Gorilla gorilla/parasitologia , Hominidae/parasitologia , Interações Hospedeiro-Parasita , Humanos , Pan troglodytes/parasitologia , Prevalência , Doenças dos Primatas/parasitologia , Doenças dos Primatas/transmissão , Infecções Protozoárias em Animais/transmissão
19.
BMC Evol Biol ; 8: 223, 2008 Jul 30.
Artigo em Inglês | MEDLINE | ID: mdl-18667061

RESUMO

BACKGROUND: Malaria kills more people worldwide than all inherited human genetic disorders combined. To characterize how the parasites causing this disease adapt to different host environments, we compared the evolutionary genomics of two distinct groups of malaria pathogens in order to identify critical properties associated with infection of different hosts: those parasites infecting hominids (Plasmodium falciparum and P. reichenowi) versus parasites infecting rodent hosts (P. yoelii yoelii, P. berghei, and P. chabaudi). Adaptation by the parasite to its host is likely highly critical to the evolution of these species. RESULTS: Our comparative analysis suggests that patterns of molecular evolution in the hominid parasite lineage are generally similar to those of the rodent lineage but distinct in several aspects. The most rapidly evolving genes in both lineages are those involved in host-parasite interactions as well as those that show the lowest expression levels. However, we found that, similar to their respective mammal host lineages, parasite genomes infecting hominids are generally less constrained, evolving at faster rates, and accumulating more deleterious mutations than those infecting murids, which may reflect an historical lower effective size of the hominid lineage and relaxed host-driven selective pressures. CONCLUSION: Our study highlights for the first time the differences in trends and rates of evolution in Plasmodium lineages infecting different hosts and emphasizes the potential importance of the variation in effective size between lineages to explain variation in selective constraints among genomes.


Assuntos
Evolução Molecular , Genoma de Protozoário/genética , Malária/genética , Plasmodium/genética , Seleção Genética , Adaptação Biológica/genética , Animais , Variação Genética , Hominidae/parasitologia , Interações Hospedeiro-Parasita/genética , Funções Verossimilhança , Malária/parasitologia , Filogenia , Roedores/parasitologia , Alinhamento de Sequência
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