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1.
Parasitology ; 147(1): 120-125, 2020 01.
Artigo em Inglês | MEDLINE | ID: mdl-31559931

RESUMO

Environmental toxicants are pervasive in nature, but sub-lethal effects on non-target organisms and their parasites are often overlooked. Particularly, studies on terrestrial hosts and their parasites exposed to agricultural toxicants are lacking. Here, we studied the effect of sequence and timing of sub-lethal exposures of the pyrethroid insecticide alpha-cypermethrin on parasite establishment using the tapeworm Hymenolepis diminuta and its intermediate insect host Tenebrio molitor as a model system. We exposed T. molitor to alpha-cypermethrin (LD20) before and after experimental H. diminuta infection and measured the establishment success of larval tapeworms. Also, we conducted in vitro studies quantifying the direct effect of the insecticide on parasite viability. Our results showed that there was no direct lethal effect of alpha-cypermethrin on H. diminuta cysticercoids at relevant concentrations (LD10 to LD90 of the intermediate host). However, we observed a significantly increased establishment of H. diminuta in beetles exposed to alpha-cypermethrin (LD20) after parasite infection. In contrast, parasite establishment was significantly lower in beetles exposed to the insecticide before parasite infection. Thus, our results indicate that environmental toxicants potentially impact host-parasite interactions in terrestrial systems, but that the outcome is context-dependent by enhancing or reducing parasite establishment depending on timing and sequence of exposure.


Assuntos
Hymenolepis diminuta , Inseticidas/farmacologia , Piretrinas/farmacologia , Tenebrio/parasitologia , Animais , Besouros/efeitos dos fármacos , Besouros/parasitologia , Exposição Ambiental , Interações Hospedeiro-Parasita/efeitos dos fármacos , Hymenolepis diminuta/efeitos dos fármacos , Hymenolepis diminuta/fisiologia , Tenebrio/efeitos dos fármacos , Fatores de Tempo
2.
Pestic Biochem Physiol ; 162: 113-121, 2020 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-31836046

RESUMO

It is widely accepted that sensitivity towards pesticides varies significantly between species. Much less is known about the potential differences in pesticide sensitivity and its biological mechanism throughout the lifecycle of a single species. In the present study we used three life-stages (larvae, pupae and adult) of the holometabolous insect Tenebrio molitor to investigate: i) Life-stage specific differences in sensitivity towards the pyrethroid insecticide α-cypermethrin after topical exposure, and ii) whether these differences can be explained by the degree of uptake and/or excretion. Finally, we investigated if an efficient excretion coincided with higher activities of the detoxifying enzymes cytochrome P450 (P450), esterases (EST) and glutathione-S-transferease (GST). We found that mobility of adults of T. molitor was more affected by α-cypermethrin treatment than larvae and pupae. Mortality was relatively low for all life stages and did not vary significantly with dose within the duration of the experiment, which indicated that death was (at least partly) due to starvation (indirect effect of paralysis) rather that direct effects of the insecticide. Insecticide treatment during the pupal stage further impaired normal development from pupa to adult. Toxicokinetic measurements showed that cuticle penetration of α-cypermethrin differed significantly between life-stages. Approximately 50% of the applied insecticide had penetrated the adult cuticle after 1 h, whereas a maximum of 30% and 16% had penetrated the waxier cuticle of larvae and pupae. Further, the pupal stage lacked the ability to excrete compounds, and hence internal insecticide concentrations in pupae increased or stagnated until emergence of the adult. Finally, quantification of detoxification enzymes showed a markedly higher activity of P450 in adults and larvae compared to pupae. These findings suggest that assessing toxicity and/or risk of pesticides collectively for a species may not be adequate without taking into account the potential sensitivity differences between life stages.


Assuntos
Besouros , Inseticidas , Piretrinas , Tenebrio , Animais , Larva , Pupa
3.
Behav Ecol ; 34(6): 960-968, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37969549

RESUMO

Parasite-induced modification of host behavior increasing transmission to a next host is a common phenomenon. However, field-based studies are rare, and the role of environmental factors in eliciting host behavioral modification is often not considered. We examined the effects of temperature, relative humidity (RH), time of day, date, and an irradiation proxy on behavioral modification of the ant Formica polyctena (Förster, 1850) by the brain-encysting lancet liver fluke Dicrocoelium dendriticum (Rudolphi, 1819). This fluke induces ants to climb and bite to vegetation by the mandibles in a state of temporary tetany. A total of 1264 individual ants expressing the modified behavior were observed over 13 non-consecutive days during one year in the Bidstrup Forests, Denmark. A sub-set of those ants (N = 172) was individually marked to track the attachment and release of infected ants in relation to variation in temperature. Infected ants primarily attached to vegetation early and late in the day, corresponding to low temperature and high RH, presumably coinciding with the grazing activity of potential herbivorous definitive hosts. Temperature was the single most important determinant for the induced phenotypic change. On warm days, infected ants altered between the manipulated and non-manipulated state multiple times, while on cool days, many infected ants remained attached to the vegetation all day. Our results suggest that the temperature sensitivity of the infected ants serves the dual purpose of exposing infected ants to the next host at an opportune time, while protecting them from exposure to high temperatures, which might increase host (and parasite) mortality.

4.
Sci Rep ; 13(1): 13641, 2023 08 22.
Artigo em Inglês | MEDLINE | ID: mdl-37608060

RESUMO

The global biodiversity crisis emphasizes our need to understand how different stressors (climatic, chemical, parasitic, etc.) interact and affect biological communities. We provide a comprehensive meta-analysis investigating joint effects of chemical and parasitic stressors for 1064 chemical-parasitic combinations using the Multiplicative model on mortality of arthropods. We tested both features of the experimental setup (control mortality, stressor effect level) and the chemical mode of action, host and parasite phylogeny, and parasite-host interaction traits as explanatory factors for deviations from the reference model. Synergistic interactions, defined as higher mortality than predicted, were significantly more frequent than no interactions or antagony. Experimental setup significantly affected the results, with studies reporting high (> 10%) control mortality or using low stressor effects (< 20%) being more synergistic. Chemical mode of action played a significant role for synergy, but there was no effects of host and parasite phylogeny, or parasite-host interaction traits. The finding that experimental design played a greater role in finding synergy than biological factors, emphasize the need to standardize the design of mixed stressor studies across scientific disciplines. In addition, combinations testing more biological traits e.g. avoidance, coping, and repair processes are needed to test biology-based hypotheses for synergistic interactions.


Assuntos
Artrópodes , Parasitos , Animais , Interações Hospedeiro-Parasita , Adaptação Psicológica , Biodiversidade
5.
Nat Commun ; 13(1): 3888, 2022 07 06.
Artigo em Inglês | MEDLINE | ID: mdl-35794092

RESUMO

The neglected tropical disease trichuriasis is caused by the whipworm Trichuris trichiura, a soil-transmitted helminth that has infected humans for millennia. Today, T. trichiura infects as many as 500 million people, predominantly in communities with poor sanitary infrastructure enabling sustained faecal-oral transmission. Using whole-genome sequencing of geographically distributed worms collected from human and other primate hosts, together with ancient samples preserved in archaeologically-defined latrines and deposits dated up to one thousand years old, we present the first population genomics study of T. trichiura. We describe the continent-scale genetic structure between whipworms infecting humans and baboons relative to those infecting other primates. Admixture and population demographic analyses support a stepwise distribution of genetic variation that is highest in Uganda, consistent with an African origin and subsequent translocation with human migration. Finally, genome-wide analyses between human samples and between human and non-human primate samples reveal local regions of genetic differentiation between geographically distinct populations. These data provide insight into zoonotic reservoirs of human-infective T. trichiura and will support future efforts toward the implementation of genomic epidemiology of this globally important helminth.


Assuntos
Tricuríase , Trichuris , Animais , Estudo de Associação Genômica Ampla , Humanos , Metagenômica , Filogenia , Primatas/genética , Tricuríase/epidemiologia , Trichuris/genética
6.
PLoS One ; 13(4): e0195481, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29694397

RESUMO

High-resolution insight into parasitic infections and diet of past populations in Northern Europe and the Middle East (500 BC- 1700 AD) was obtained by pre-concentration of parasite eggs from ancient latrines and deposits followed by shotgun sequencing of DNA. Complementary profiling of parasite, vertebrate and plant DNA proved highly informative in the study of ancient health, human-animal interactions as well as animal and plant dietary components. Most prominent were finding of soil-borne parasites transmitted directly between humans, but also meat-borne parasites that require consumption of raw or undercooked fish and pork. The detection of parasites for which sheep, horse, dog, pig, and rodents serves as definitive hosts are clear markers of domestic and synanthropic animals living in closer proximity of the respective sites. Finally, the reconstruction of full mitochondrial parasite genomes from whipworm (Ascaris lumbricoides) and roundworm species (Trichuris trichiura and Trichuris muris) and estimates of haplotype frequencies elucidates the genetic diversity and provides insights into epidemiology and parasite biology.


Assuntos
DNA Antigo , Dieta , Fezes/química , Fezes/parasitologia , Banheiros , Agricultura , Animais , Arqueologia/métodos , Biodiversidade , DNA Mitocondrial , DNA de Plantas , Ovos , Europa (Continente) , História Antiga , Humanos , Metagenoma , Oriente Médio , Parasitos/genética , Doenças Parasitárias/epidemiologia , Doenças Parasitárias/história , Filogenia , Análise de Sequência de DNA
7.
J Parasitol ; 101(1): 57-63, 2015 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-25357228

RESUMO

Ancient parasite eggs were recovered from environmental samples collected at a Viking-age settlement in Viborg, Denmark, dated 1018-1030 A.D. Morphological examination identified Ascaris sp., Trichuris sp., and Fasciola sp. eggs, but size and shape did not allow species identification. By carefully selecting genetic markers, PCR amplification and sequencing of ancient DNA (aDNA) isolates resulted in identification of: the human whipworm, Trichuris trichiura , using SSUrRNA sequence homology; Ascaris sp. with 100% homology to cox1 haplotype 07; and Fasciola hepatica using ITS1 sequence homology. The identification of T. trichiura eggs indicates that human fecal material is present and, hence, that the Ascaris sp. haplotype 07 was most likely a human variant in Viking-age Denmark. The location of the F. hepatica finding suggests that sheep or cattle are the most likely hosts. Further, we sequenced the Ascaris sp. 18S rRNA gene in recent isolates from humans and pigs of global distribution and show that this is not a suited marker for species-specific identification. Finally, we discuss ancient parasitism in Denmark and the implementation of aDNA analysis methods in paleoparasitological studies. We argue that when employing species-specific identification, soil samples offer excellent opportunities for studies of human parasite infections and of human and animal interactions of the past.


Assuntos
Ascaríase/história , Doenças dos Bovinos/história , Fasciolíase/história , Doenças dos Ovinos/história , Tricuríase/história , Animais , Ascaris/classificação , Ascaris/genética , Ascaris/isolamento & purificação , Bovinos , Doenças dos Bovinos/parasitologia , Impressões Digitais de DNA , Dinamarca , Fasciola hepatica/classificação , Fasciola hepatica/genética , Fasciola hepatica/isolamento & purificação , História Medieval , Humanos , Dados de Sequência Molecular , Óvulo/classificação , Paleopatologia , Ovinos , Doenças dos Ovinos/parasitologia , Trichuris/classificação , Trichuris/genética , Trichuris/isolamento & purificação
8.
J Parasitol ; 101(3): 297-303, 2015 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-25723380

RESUMO

Echinococcus multilocularis (EM) is a pathogenic and potentially fatal cestode causing human alveolar echinococcosis (AE). A meta-analysis was conducted using a generalized estimation equation approach (GEE) to assess the effect of taxonomic, environmental, and diagnostic variables on EM prevalence in different hosts. Red foxes ( Vulpes vulpes ) had significantly higher prevalence of EM than domestic dogs ( Canis lupus familiaris), with the diagnostic method playing an important factor in assessing prevalence. For intermediate hosts genera was significantly associated with EM prevalence, although there was some indication of publication bias in this dataset. This study also highlights the possible importance of temperature and precipitation to EM transmission. This implies the possibility of a changing climate affecting the future distribution of the parasite.


Assuntos
Equinococose/epidemiologia , Echinococcus multilocularis , Animais , Arvicolinae/parasitologia , Cães , Echinococcus multilocularis/crescimento & desenvolvimento , Raposas/parasitologia , Humanos , Estágios do Ciclo de Vida , Fatores de Risco
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