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1.
Sci Rep ; 14(1): 5151, 2024 03 02.
Artículo en Inglés | MEDLINE | ID: mdl-38431740

RESUMEN

Chytridiomycosis caused by the fungal pathogen Batrachochytrium dendrobatidis (Bd) is pushing amphibians towards extinction. Whilst mitigation methods were suggested a decade ago, we lack field trials testing their efficacy. We used the agrochemical fungicide, tebuconazole, to treat Bd infected breeding waterbodies of an endangered species that is highly susceptible to the fungus. Just two applications of tebuconazole led to a significant reduction in infection loads in the vast majority of sites, and at six sites the disinfection remained one/two-years post-application. Tebuconazole values drastically decreased in the waterbodies within a week after application, with no significant effects on their hydrochemical and hydrobiological characteristics. Although the use of chemicals in natural populations is undesirable, the growing existential threat to amphibians all over the world indicates that effective interventions in selected populations of endangered species are urgently needed.


Asunto(s)
Quitridiomicetos , Micosis , Animales , Desinfección , Fitomejoramiento , Anfibios/microbiología , Micosis/veterinaria , Micosis/microbiología , Especies en Peligro de Extinción , Batrachochytrium
3.
Conserv Biol ; : e14196, 2023 Oct 09.
Artículo en Inglés | MEDLINE | ID: mdl-37811718

RESUMEN

Because host species tend to harbor multiple parasitic species, coinfection in a host is common. The chytrid fungus Batrachochytrium dendrobatidis (Bd) and the viruses in the genus Ranavirus (Rv) are responsible for the decline of amphibians worldwide. Despite wide geographical co-occurrence and the serious conservation problem that coinfection with these pathogens could represent, little is known about their possible synergistic interactions and effects in a host community. We investigated the occurrence and associations between these two pathogens in an amphibian community after Rv-driven disease outbreaks were detected in four populations of the Iberian ribbed newt (Pleurodeles waltl) in northwestern Spain. We collected tissue samples from amphibians and fish and estimated Bd and Rv infection loads by qPCR. A few months after the most recent mass mortality event, Rv infection parameters at the affected sites decreased significantly or were lower than such registered at the sites where no outbreaks were recorded. Both pathogens were simultaneously present in almost all sites, but coinfection in a single host was rare. Our findings suggest that the co-occurrence of Bd and Rv does not predict adverse outcomes (e.g., enhanced susceptibility of hosts to one pathogen due to the presence or infection intensity of the other) following an outbreak. Other variables (such as species identity or site) were more important than infection with a pathogen in predicting the infection status and severity of infection with the other pathogen. Our results highlight the importance of host-specific and environmental characteristics in the dynamics of infections, coinfection patterns, and their impacts.


Relaciones entre dos patógenos en una comunidad anfibia que experimentó mortalidad masiva Resumen La coinfección es común en especies hospederas ya que estas especies tienden a albergar muchas especies parasíticas. El hongo quitridio Batrachochytrium dendrobatidis (Bd) y los virus del género Ranavirus (Rv) son responsables de la declinación mundial de anfibios. A pesar de la amplia co-ocurrencia geográfica y el problema serio de conservación que podría representar la coinfección con estos patógenos, se conoce muy poco sobre sus posibles interacciones sinérgicas y sus efectos en una comunidad hospedera. Investigamos la incidencia y las asociaciones entre estos dos patógenos en una comunidad anfibia después de que se detectaron brotes de enfermedades causados por Rv en cuatro poblaciones del tritón estriado ibérico (Pleurodeles waltl) en el noroeste de España. Recolectamos muestras de tejido de anfibios y peces y estimamos la carga infecciosa de Bd y Rv con una qPCR. Unos meses después del evento de mortalidad masiva más reciente, los parámetros de infección de Rv en los sitios afectados disminuyeron significativamente o fueron más bajos que los registrados en sitios sin brotes. Ambos patógenos estuvieron presentes de forma simultánea en casi todos los sitios, pero fue raro encontrar la coinfección en un solo hospedero. Nuestros descubrimientos sugieren que la coocurrencia de Bd y Rv no pronostica resultados adversos (aumento en la susceptibilidad de los hospederos a un patógeno debido a la presencia o intensidad de infección del otro patógeno) después de un brote. Otras variables, como la identidad de la especie o el sitio, fueron más importantes que la infección con un patógeno en la predicción del estado de infección y la severidad de la infección con otro patógeno. Nuestros resultados resaltan la importancia de las características ambientales y aquellas específicas del hospedero en las dinámicas de infección, los patrones de coinfección y sus impactos.

4.
Oecologia ; 202(1): 165-174, 2023 May.
Artículo en Inglés | MEDLINE | ID: mdl-37147397

RESUMEN

Chytridiomycosis is affecting hundreds of amphibian species worldwide, but while in tropical areas, adult individuals have been the focus of most investigations, the exact role played by infection intensity of breeding adults is not well understood in temperate areas. We conducted mark-recapture-capture surveys during spiny common toad breeding seasons from 2006 to 2018 at the site of the first recorded outbreak of chytridiomycosis in Europe, the Peñalara Massif (Sierra de Guadarrama National Park, central Spain), and collected infection samples and several variables related to the reproductive effort of male individuals. We used general linear mixed models to evaluate the contribution of study variables on the infection loads of adult male toads exhibited at their capturing date. We also analysed the differences on several male characteristics between the pond with the largest breeding population against the rest of the ponds. We found that the duration of time spent in the waterbody and the condition of the host predicted infection loads. Animals of good physical condition, that spent longer in water, have higher infection levels than individuals with the opposite set of traits. The pond supporting the largest breeding population housed smaller male toads and in poorer condition. Our results are consistent with a shift in reproductive strategy in response to infection and potentially a strategy of tolerance, rather than resistance to infection. These findings have applications for disease mitigation and theoretical implications related to the trade-offs made and the evolution of traits in response to the disease.


Asunto(s)
Quitridiomicetos , Micosis , Masculino , Animales , Batrachochytrium , Quitridiomicetos/fisiología , Fitomejoramiento , Bufonidae , Micosis/epidemiología , Micosis/veterinaria
5.
J Wildl Dis ; 58(3): 658-663, 2022 07 01.
Artículo en Inglés | MEDLINE | ID: mdl-35666851

RESUMEN

Chytridiomycosis, caused by Batrachochytrium dendrobatidis (Bd) and Batrachochytrium salamandrivorans (Bsal), has had an unprecedented impact on amphibian biodiversity. Although Bd is globally widespread, Bsal is currently spreading, increasing the probability that these pathogens will co-occur in individual amphibians. Interactions among coinfecting parasites can have significant outcomes on disease dynamics and impact and, therefore, may have important consequences for amphibian conservation. We analyzed the patterns of Bd-Bsal coinfections in two species of free-ranging urodeles during an outbreak of chytridiomycosis in Spain. Our goals were to assess 1) the probability of co-occurrence of both chytrid species and 2) the correlation of pathogen loads in coinfected hosts. We detected coinfections in 81.58% of Triturus marmoratus (n=38) and in 18.75% of Ichthyosaura alpestris (n=16). Histopathologic lesions of chytridiomycosis were observed only in T. marmoratus. Our results demonstrate a positive relationship between Bd and Bsal loads in T. marmoratus, whereas the co-occurrence analysis showed a random association among pathogens in both urodele species. Overall, we show that Bd-Bsal coinfections intensify pathogen load in T. marmoratus and could, therefore, increase disease severity and have important consequences for the conservation of some amphibian species.


Asunto(s)
Quitridiomicetos , Coinfección , Micosis , Anfibios/microbiología , Animales , Batrachochytrium , Coinfección/epidemiología , Coinfección/veterinaria , Brotes de Enfermedades/veterinaria , Micosis/epidemiología , Micosis/microbiología , Micosis/veterinaria , España/epidemiología
6.
iScience ; 25(12): 105541, 2022 Dec 22.
Artículo en Inglés | MEDLINE | ID: mdl-36590463

RESUMEN

The number of epizootics in amphibian populations caused by viruses of the genus Ranavirus is increasing worldwide. Yet, causes for pathogen emergence are poorly understood. Here, we confirmed that the Common midwife toad virus (CMTV) and Frog virus 3 (FV3) are responsible for mass mortalities in Iberia since the late 1980s. Our results illustrate the Iberian Peninsula as a diversity hotspot for the highly virulent CMTV. Although this pattern of diversity in Europe is consistent with spread by natural dispersal, the exact origin of the emergence of CMTV remains uncertain. Nevertheless, our data allow hypothesizing that the Iberian Peninsula might harbor the ancestral population of CMTVs that could have spread into the rest of Europe. In addition, we found that climate warming could be triggering the CMTV outbreaks, supporting its endemic status in the Iberian Peninsula.

7.
Sci Rep ; 11(1): 22438, 2021 11 17.
Artículo en Inglés | MEDLINE | ID: mdl-34789869

RESUMEN

Microplastics (MPs), a new class of pollutants that pose a threat to aquatic biodiversity, are of increasing global concern. In tandem, the amphibian chytrid fungus Batrachochytrium dendrobatidis (Bd) causing the disease chytridiomycosis is emerging worldwide as a major stressor to amphibians. We here assess whether synergies exist between this infectious disease and MP pollution by mimicking natural contact of a highly susceptible species (midwife toads, Alytes obstetricans) with a Bd-infected reservoir species (fire salamanders, Salamandra salamandra) in the presence and absence of MPs. We found that MP ingestion increases the burden of infection by Bd in a dose-dependent manner. However, MPs accumulated to a greater extent in amphibians that were not exposed to Bd, likely due to Bd-damaged tadpole mouthparts interfering with MP ingestion. Our experimental approach showed compelling interactions between two emergent processes, chytridiomycosis and MP pollution, necessitating further research into potential synergies between these biotic and abiotic threats to amphibians.


Asunto(s)
Batrachochytrium , Larva/microbiología , Microplásticos/efectos adversos , Contaminantes del Agua/efectos adversos , Animales , Anuros , Biodiversidad , Susceptibilidad a Enfermedades/etiología , Salamandra , España
8.
Dis Aquat Organ ; 147: 1-12, 2021 Nov 04.
Artículo en Inglés | MEDLINE | ID: mdl-34734569

RESUMEN

Emerging infectious diseases are a threat to biodiversity and have taken a large toll on amphibian populations worldwide. The chytrid fungi Batrachochytrium dendrobatidis (Bd) and B. salamandrivorans (Bsal), and the iridovirus Ranavirus (Rv), are of concern as all have contributed to amphibian declines. In central and eastern Europe, their geographical and host distributions and main environmental drivers determining prevalence are poorly known. We screened over 1000 amphibians from natural and captive populations in Poland for the presence of Bd, Bsal and Rv. In wild amphibian populations, we found that Bd is widespread, present in 46 out of 115 sampled localities as well as 2 captive colonies, and relatively common with overall prevalence at 14.4% in 9 species. We found lower prevalence of Rv at 2.4%, present in 11 out of 92 sampling sites, with a taxonomic breadth of 8 different amphibian species. Bsal infection was not detected in any individuals. In natural populations, Pelophylax esculentus and Bombina variegata accounted for 75% of all Bd infections, suggesting a major role for these 2 species as pathogen reservoirs in Central European freshwater habitats. General linear models showed that climatic as well as landscape features are associated with Bd infection in Poland. We found that higher average annual temperature constrains Bd infection, while landscapes with numerous water bodies or artificial elements (a surrogate for urbanization) increase the chances of infection. Our results show that a combination of climatic and landscape variables may drive regional and local pathogen emergence.


Asunto(s)
Quitridiomicetos , Enfermedades Transmisibles Emergentes , Micosis , Anfibios , Animales , Anuros , Enfermedades Transmisibles Emergentes/epidemiología , Enfermedades Transmisibles Emergentes/veterinaria , Micosis/epidemiología , Micosis/veterinaria , Polonia/epidemiología
9.
J Fungi (Basel) ; 7(8)2021 Aug 07.
Artículo en Inglés | MEDLINE | ID: mdl-34436183

RESUMEN

The recent introduction of the chytrid fungus Batrachochytrium salamandrivorans into northeastern Spain threatens salamander diversity on the Iberian Peninsula. We assessed the current epidemiological situation with extensive field sampling of urodele populations. We then sought to delineate priority regions and identify conservation units for the Iberian Peninsula by estimating the susceptibility of Iberian urodeles using laboratory experiments, evidence from mortality events in nature and captivity and inference from phylogeny. None of the 1395 field samples, collected between 2015 and 2021 were positive for Bsal and no Bsal-associated mortality events were recorded, in contrast to the confirmed occurrence of Bsal outbreak previously described in 2018. We classified five of eleven Iberian urodele species as highly susceptible, predicting elevated mortality and population declines following potential Bsal emergence in the wild, five species as intermediately susceptible with variable disease outcomes and one species as resistant to disease and mortality. We identified the six conservation units (i.e., species or lineages within species) at highest risk and propose priority areas for active disease surveillance and field biosecurity measures. The magnitude of the disease threat identified here emphasizes the need for region-tailored disease abatement plans that couple active disease surveillance to rapid and drastic actions.

10.
Front Vet Sci ; 8: 645491, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34235196

RESUMEN

Amphibians are the most highly threatened vertebrates, and emerging pathogens are a serious threat to their conservation. Amphibian chytrid fungi and the viruses of the Ranavirus genus are causing disease outbreaks worldwide, including in protected areas such as National Parks. However, we lack information about their effect over amphibian populations in the long-term, and sometimes these mortality episodes are considered as transient events without serious consequences over longer time-spans. Here, we relate the occurrence of both pathogens with the population trends of 24 amphibian populations at 15 sites across a national Park in northern Spain over a 14-year period. Just one out 24 populations presents a positive population trend being free of both pathogens, while seven populations exposed to one or two pathogens experienced strong declines during the study period. The rest of the study populations (16) remain stable, and these tend to be of species that are not susceptible to the pathogen present or are free of pathogens. Our study is consistent with infectious diseases playing an important role in dictating amphibian population trends and emphasizes the need to adopt measures to control these pathogens in nature. We highlight that sites housing species carrying Ranavirus seems to have experienced more severe population-level effects compared to those with the amphibian chytrid fungus, and that ranaviruses could be just as, or more important, other more high-profile amphibian emerging pathogens.

11.
Sci Total Environ ; 753: 141896, 2021 Jan 20.
Artículo en Inglés | MEDLINE | ID: mdl-32889314

RESUMEN

Coping with anthropogenic environmental change is among the greatest challenges faced by wildlife, and endocrine flexibility is a potentially crucial coping mechanism. Animals may adapt to anthropogenic environments by dampening their glucocorticoid stress response, but empirical tests of this hypothesis have provided mixed evidence. An alternative hypothesis is that a non-attenuated stress response and efficient negative feedback are favored in anthropogenic habitats. To test this idea, we non-invasively sampled corticosterone release rates of common toad (Bufo bufo) tadpoles in agricultural, urban, and natural habitats, and quantified their stress response and negative feedback by a standardized stress-and-recovery protocol. We repeated the same sampling with tadpoles raised from eggs from the same ponds in a common-garden experiment to infer if the differences observed between populations in different habitats were due to individual phenotypic plasticity rather than microevolution or transgenerational effects. We found that, compared to tadpoles in natural ponds, urban tadpoles had higher baseline and stressed corticosterone release rates, and tadpoles in agricultural ponds had similar corticosterone release rates but greater stress-induced change, indicating stronger stress responses in both types of anthropogenic habitats. As predicted, tadpoles in both agricultural and urban ponds showed more efficient negative feedback than did tadpoles in natural ponds. Water pollution levels, as indicated by the concentrations of carbamazepine and corticoid-disrupting compounds in pond water, contributed to elevating the stress response regardless of land use. Infection by neither Batrachochytrium dendrobatidis nor Ranavirus was detected in free-living tadpoles. No habitat-related glucocorticoid differences persisted in the common-garden experiment. These results suggest that toad tadpoles in anthropogenic habitats increased their glucocorticoid flexibility via phenotypic plasticity. The coupling of stronger stress response and stronger negative feedback in these habitats supports the importance of rapidly "turning on and off" the stress response as a mechanism for coping with anthropogenic environmental change.


Asunto(s)
Quitridiomicetos , Glucocorticoides , Adaptación Fisiológica , Animales , Ecosistema , Larva
12.
Emerg Infect Dis ; 25(7): 1416-1418, 2019 07.
Artículo en Inglés | MEDLINE | ID: mdl-31211934

RESUMEN

The distribution of the chytrid fungus Batrachochytrium salamandrivorans continues to expand in Europe. During 2014-2018, we collected 1,135 samples from salamanders and newts in 6 countries in Europe. We identified 5 cases of B. salamandrivorans in a wild population in Spain but none in central Europe or the Balkan Peninsula.


Asunto(s)
Enfermedades de los Animales/microbiología , Quitridiomicetos , Micosis/veterinaria , Urodelos/microbiología , Enfermedades de los Animales/diagnóstico , Animales , Quitridiomicetos/clasificación , Quitridiomicetos/genética , Quitridiomicetos/aislamiento & purificación , Reacción en Cadena de la Polimerasa
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