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result(s) for
"host-parasite relationships"
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Functional and Evolutionary Ecology of Fleas
2008,2009
Fleas are one of the most interesting and fascinating taxa of ectoparasites. All species in this relatively small order are obligatory haematophagous (blood-feeding) parasites of higher vertebrates. This book examines how functional, ecological and evolutionary patterns and processes of host-parasite relationships are realized in this particular system. As such it provides an in-depth case study of a host-parasite system, demonstrating how fleas can be used as a model taxon for testing ecological and evolutionary hypotheses. The book moves from basic descriptive aspects, to functional issues and finally to evolutionary explanations. It extracts several general principles that apply equally well to other host-parasite systems, so it appeals not only to flea biologists but also to 'mainstream' parasitologists and ecologists.
Avian haemosporidians of breeding birds in the Davis Mountains sky-islands of west Texas, USA
by
Keith, Katrina D.
,
Grace, Jacquelyn K.
,
Martinez, Viridiana
in
Animal breeding
,
Animals
,
avian malaria
2023
Avian haemosporidians are protozoan parasites transmitted by insect vectors that infect birds worldwide, negatively impacting avian fitness and survival. However, the majority of haemosporidian diversity remains undescribed. Quantifying this diversity is critical to determining parasite–host relationships and host-switching potentials of parasite lineages as climate change induces both host and vector range shifts. In this study, we conducted a community survey of avian haemosporidians found in breeding birds on the Davis Mountains sky islands in west Texas, USA. We determined parasite abundance and host associations and compared our results to data from nearby regions. A total of 265 birds were screened and infections were detected in 108 birds (40.8%). Most positive infections were identified as Haemoproteus (36.2%), followed by Plasmodium (6.8%) and Leucocytozoon (0.8%). A total of 71 haemosporidian lineages were detected of which 39 were previously undescribed. We found that regional similarity influenced shared lineages, as a higher number of lineages were shared with avian communities in the sky islands of New Mexico compared to south Texas, the Texas Gulf Coast and central Mexico. We found that migratory status of avian host did not influence parasite prevalence, but that host phylogeny is likely an important driver.
Journal Article
Life lessons from a parasite : what tapeworms, flukes, lice, and roundworms can teach us about humanity's most difficult problems
by
Janovy, John, Jr., 1937- author
in
Parasites Popular works.
,
Host-parasite relationships Popular works.
,
Parasitology Popular works.
2024
\"In this unique piece of pop-science, one of the world's preeminent experts on parasites reveals their astonishing, disgusting, weird, and fascinating behaviors and how they provide insight into humanity's most difficult problems. Squeamishness aside, what can humans learn from the most reviled yet misunderstood animals on Earth: lice, tapeworms, and maggots that can eat a lizard from the inside? And how can these lessons help us negotiate a world characterized by pandemic disease, ethnic hatred, climate change, war, and internet-driven political chaos? Whether we're learning to adapt to adverse conditions, accept our own limitations, or process new information in a frightening landscape-we can be sure a parasite did it first. Because sometimes, the answers to life's biggest questions can be found by looking at the little things\"-- Provided by publisher.
Interaction of helminth parasites with the haemostatic system of their vertebrate hosts: a scoping review
by
Serrat, Judit
,
González-Miguel, Javier
,
Simón, Fernando
in
Animals
,
coagulation
,
fibrinolysis
2022
Helminth parasitoses are among the most prevalent health issues worldwide. Their control depends largely on unravelling host–parasite interactions, including parasitic exploitation of the host haemostatic system. The present study undertakes a scoping review of the research carried out in this field with the aim of unifying and updating concepts. Multiple keywords combined with Boolean operators were employed to design the literature search strategy. Two online databases were used to identify original peer-reviewed articles written in English and published before 1st January 2020 describing molecular interactions between helminth parasites and the host haemostatic system. Relevant data from the selected sources of evidence were extracted and analysed. Ninety-six publications reporting 259 interactions were selected. Fifty-three proteins belonging to 32 species of helminth parasites were involved in interactions with components of the host haemostatic system. Many of these proteins from both parasite and host were conserved among the different interactions identified. Most of these interactions were related to the inhibition of the coagulation system and the activation of fibrinolysis. This was associated mainly with a potential of parasites to reduce the formation of blood clots in the host and attributed to biological processes, such as parasite nutrition, survival, invasion, evasion and migration or the appearance of pathological mechanisms in the host. A wide range of helminth parasites have developed similar strategies to exploit the haemostatic system of their hosts, which could be regarded as an evolutionary conserved mechanism that could confer benefits to parasites in terms of survival and establishment in their vertebrate hosts. Les parasitoses par les helminthes sont à l’origine de problèmes de santé parmi les plus répandus dans le monde. Leur contrôle dépend en grande partie du démêlage des interactions hôte-parasite, y compris l’exploitation par les parasites du système hémostatique de l’hôte. La présente étude entreprend un examen exploratoire des recherches menées dans ce domaine dans le but d’unifier et d’actualiser les concepts. Plusieurs mots-clés combinés à des opérateurs booléens ont été utilisés pour concevoir la stratégie de recherche documentaire. Deux bases de données en ligne ont été utilisées pour identifier des articles originaux évalués par des pairs rédigés en anglais et publiés avant le 1er janvier 2020, décrivant les interactions moléculaires entre les helminthes parasites et le système hémostatique de l’hôte. Les données pertinentes des sources sélectionnées ont été extraites et analysées. Quatre-vingt-seize publications rapportant 259 interactions ont été sélectionnées. Cinquante-trois protéines appartenant à 32 espèces d’helminthes parasites ont été impliquées dans des interactions avec des composants du système hémostatique de l’hôte. Beaucoup de ces protéines du parasite et de l’hôte ont été conservées parmi les différentes interactions identifiées. La plupart de ces interactions étaient liées à l’inhibition du système de coagulation et à l’activation de la fibrinolyse. Ceci était principalement associé à un potentiel des parasites à réduire la formation de caillots sanguins chez l’hôte et attribué à des processus biologiques, tels que la nutrition, la survie, l’invasion, l’évasion et la migration des parasites ou l’apparition de mécanismes pathologiques chez l’hôte. Un large éventail d’helminthes parasites ont développé des stratégies similaires pour exploiter le système hémostatique de leurs hôtes, ce qui pourrait être considéré comme un mécanisme évolutif conservé qui pourrait conférer des avantages aux parasites en termes de survie et d’établissement chez leurs hôtes vertébrés.
Journal Article
Bats and ticks: host selection and seasonality of bat-specialist ticks in eastern Europe
by
Sándor, Attila D.
,
Corduneanu, Alexandra
,
Barti, Levente
in
Adaptation
,
Adaptation, Physiological
,
Animal behavior
2019
Background
Parasites may actively seek for hosts and may use a number of adaptive strategies to promote their reproductive success and host colonization. These strategies will necessarily influence their host specificity and seasonality. Ticks are important ectoparasites of vertebrates, which (in addition to directly affecting their hosts) may transmit a number of pathogens. In Europe, three hard tick species (Ixodidae:
Ixodes ariadnae
,
I. simplex
and
I. vespertilionis
) and at least two soft tick species (Argasidae:
Argas transgariepinus
and
A. vespertilionis
) are specialized for bats.
Methods
Here we report data on the host range of these ticks and the seasonality of tick infestation on wild caught bats in south-east Europe. We collected 1803 ticks from 30 species of bats living in underground shelters (caves and mines) from Romania and Bulgaria. On the basis of tick–host associations, we tested several hypotheses on host–parasite evolutionary adaptations regulating host specificity, seasonality and sympatric speciation.
Results
We observed significant differences in host specificity and seasonality of abundance between the morphologically different bat specialist ticks (
I. simplex
and
I. vespertilionis
) likely caused by their host choice and their respective host-seeking behavior. The two highly generalist, but morphologically similar tick species (
I. ariadnae
and
I. vespertilionis
) showed temporal differences in occurrence and activity, thus exploiting significantly different host communities while occurring in geographical sympatry.
Conclusions
We conclude that bat-specialist ticks show a wide range of adaptations to their hosts, with differences in specificity, seasonality of occurrence, the prevalence and intensity of infestation and all these contribute to a successful division of temporal niches of ticks sharing morphologically similar hosts occurring in geographical sympatry.
Journal Article
Intraspecific competition between co-infecting parasite strains enhances host survival in African trypanosomes
by
Schötzau, Andreas
,
Brun, Reto
,
Balmer, Oliver
in
Africa
,
Animal and plant ecology
,
Animal, plant and microbial ecology
2009
It is becoming increasingly clear that under natural conditions parasitic infections commonly consist of co-infections with multiple conspecific strains. Multiple-strain infections lead to intraspecific interactions and may have important ecological and evolutionary effects on both hosts and parasites. However, experimental evidence on intraspecific competition or facilitation in infections has been scarce because of the technical challenges of distinguishing and tracking individual co-infecting strains. To overcome this limitation, we engineered transgenic strains of the protozoan parasite Trypanosoma brucei, the causal agent of human African sleeping sickness. Different strains were transfected with fluorescence genes of different colors to make them visually distinguishable in order to investigate the effects of multiple-strain infections on parasite population dynamics and host fitness. We infected mice either with each strain alone or with mixes of two strains. Our results show a strong mutual competitive suppression of co-infecting T. brucei strains very early in infection. This mutual suppression changes within-host parasite dynamics and alleviates the effects of infection on the host. The strength of suppression depends on the density of the co-infecting strain, and differences in life-history traits between the strains determine the consequences of strain—strain competition for the host. Unexpectedly, co-infection with a less virulent strain significantly enhances host survival (+15%). Analysis of the strain dynamics reveals that this is due to the suppression of the density of the more virulent strain (-33%), whose degree of impact ultimately determines the physical condition of the host. The competitive suppression is likely caused by allelopathic interference or by apparent competition mediated by strain-specific immune responses. These findings highlight the importance of intraspecific variation for parasite—parasite and parasite—host interactions. To fully understand parasite and disease dynamics, the genetic diversity of infections must be taken into account. Through changes in parasite dynamics, intraspecific variation may further affect transmission dynamics and select for increased virulence of each strain. The precise mechanisms underlying mutual suppression are not yet understood but may be exploitable to fight this devastating parasite. Our results are therefore not only of basic ecological interest investigating an important form of intraspecific competition, but may also have applied relevance for public health.
Journal Article
Logging effects on parasitic infections in a swamp rat (Malacomys edwardsi) in West Africa
by
Klein, Alexandra-Maria
,
Mupepele, Anne-Christine
,
Lawer, Eric Adjei
in
Ascaris
,
body condition
,
chainsaw milling
2022
Habitat disturbance can have negative impacts on biodiversity, such as reducing species richness. The effects of habitat disturbances on parasite infections of host species, potentially altering their survival rate and thus abundance, are less well known. We examined the influence of forest logging in combination with seasonality, host abundance, host body condition, and host sex, on the community composition of gastrointestinal parasites infecting Edward's swamp rat, Malacomys edwardsi. Community composition of parasites did not differ between logged and undisturbed sites, but the abundance of some nematodes (i.e., Ascaris and hookworm) was higher in undisturbed than logged sites. The higher abundance of these nematode species implies a changed host-parasite relationship, thus potentially influencing host persistence.
Journal Article
Detrimental effects of a failed infection by a co-invasive parasite on a native congeneric parasite and its native host
2021
Biological invaders often are accompanied by co-invasive parasites that can alter ecosystem function and established native host-parasite relationships. When these co-invasive parasites establish in a community, they can affect native host fitness and native parasite infection intensity, prevalence, and success within the native host. The mosquito, Aedes triseriatus, is North American host to protozoan parasite, Ascogregarina barretti. In geographic regions invaded by the mosquito Aedes albopictus, A. triseriatus may also be infected by A. albopictus’ co-invasive parasite, Ascogregarina taiwanensis. We tested the hypotheses that: (1) The presence of a co-invasive parasite will negatively affect native parasite fitness, yielding decreased infection intensity, prevalence, and infection success, which could be caused by immune induction of the host or inter-parasite competition, and (2) Coinfection with the native and co-invasive parasites will negatively affect host fitness, yielding increased larval development time and decreased survival and reproductive fitness, caused by increased costs of infection. In our coinfection experiments we find that any exposure to the co-invasive parasite resulted in decreased survivorship and increased development time of the host A. triseriatus, with or without coinfection by the native parasite. Exposure to both co-invasive and native parasites yielded reduced native parasite infection intensity in the host larva and reduced native parasite propagule production in the resulting male adults. Together, these results indicate not only the potential for the co-invasive parasite to alter the native host-parasite relationship, but to impact native host population dynamics.
Journal Article