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result(s) for
"Nosema bombi"
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Test of the invasive pathogen hypothesis of bumble bee decline in North America
by
Duennes, Michelle A.
,
Cameron, Sydney A.
,
Lozier, Jeffrey D.
in
Animal populations
,
Animals
,
Asia
2016
Emergent fungal diseases are critical factors in global biodiversity declines. The fungal pathogen Nosema bombi was recently found to be widespread in declining species of North American bumble bees (Bombus), with circumstantial evidence suggesting an exotic introduction from Europe. This interpretation has been hampered by a lack of knowledge of global genetic variation, geographic origin, and changing prevalence patterns of N. bombi in declining North American populations. Thus, the temporal and spatial emergence of N. bombi and its potential role in bumble bee decline remain speculative. We analyze Nosema prevalence and genetic variation in the United States and Europe from 1980, before an alleged introduction in the early 1990s, to 2011, extracting Nosema DNA from Bombus natural history collection specimens from across this time period. Nosema bombi prevalence increased significantly from low detectable frequency in the 1980s to significantly higher frequency in the mid- to late-1990s, corresponding to a period of reported massive infectious outbreak of N. bombi in commercial bumble bee rearing stocks in North America. Despite the increased frequency, we find no conclusive evidence of an exotic N. bombi origin based on genetic analysis of global Nosema populations; the widespread Nosema strain found currently in declining United States bumble bees was present in the United States before commercial colony trade. Notably, the US N. bombi is not detectably different from that found predominantly throughout Western Europe, with both regions characterized by low genetic diversity compared with high levels of diversity found in Asia, where commercial bee breeding activities are low or nonexistent.
Journal Article
Patterns of widespread decline in North American bumble bees
2011
Bumble bees (Bombus) are vitally important pollinators of wild plants and agricultural crops worldwide. Fragmentary observations, however, have suggested population declines in several North American species. Despite rising concern over these observations in the United States, highlighted in a recent National Academy of Sciences report, a national assessment of the geographic scope and possible causal factors of bumble bee decline is lacking. Here, we report results of a 3-y interdisciplinary study of changing distributions, population genetic structure, and levels of pathogen infection in bumble bee populations across the United States. We compare current and historical distributions of eight species, compiling a database of >73,000 museum records for comparison with data from intensive nationwide surveys of >16,000 specimens. We show that the relative abundances of four species have declined by up to 96% and that their surveyed geographic ranges have contracted by 23–87%, some within the last 20 y. We also show that declining populations have significantly higher infection levels of the microsporidian pathogen Nosema bombi and lower genetic diversity compared with co-occurring populations of the stable (nondeclining) species. Higher pathogen prevalence and reduced genetic diversity are, thus, realistic predictors of these alarming patterns of decline in North America, although cause and effect remain uncertain.
Journal Article
Pollination services enhanced with urbanization despite increasing pollinator parasitism
by
Radzevičiūtė, Rita
,
Theodorou, Panagiotis
,
Paxton, Robert J.
in
Animals
,
Bees - parasitology
,
Bees - physiology
2016
Animal-mediated pollination is required for the reproduction of the majority of angiosperms, and pollinators are therefore essential for ecosystem functioning and the economy. Two major threats to insect pollinators are anthropogenic land-use change and the spread of pathogens, whose effects may interact to impact pollination. Here, we investigated the relative effects on the ecosystem service of pollination of (i) land-use change brought on by agriculture and urbanization as well as (ii) the prevalence of pollinator parasites, using experimental insect pollinator-dependent plant species in natural pollinator communities. We found that pollinator habitat (i.e. availability of nesting resources for ground-nesting bees and local flower richness) was strongly related to flower visitation rates at the local scale and indirectly influenced plant pollination success. At the landscape scale, pollination was positively related to urbanization, both directly and indirectly via elevated visitation rates. Bumblebees were the most abundant pollinator group visiting experimental flowers. Prevalence of trypanosomatids, such as the common bumblebee parasite Crithidia bombi, was higher in urban compared with agricultural areas, a relationship which was mediated through higher Bombus abundance. Yet, we did not find any top-down, negative effects of bumblebee parasitism on pollination. We conclude that urban areas can be places of high transmission of both pollen and pathogens.
Journal Article
Landscape predictors of pathogen prevalence and range contractions in US bumblebees
by
Adler, Lynn S.
,
Irwin, Rebecca E.
,
Urbanowicz, Christine
in
Agriculture - methods
,
Animal Distribution
,
Animals
2017
Several species of bumblebees have recently experienced range contractions and possible extinctions. While threats to bees are numerous, few analyses have attempted to understand the relative importance of multiple stressors. Such analyses are critical for prioritizing conservation strategies. Here, we describe a landscape analysis of factors predicted to cause bumblebee declines in the USA. We quantified 24 habitat, land-use and pesticide usage variables across 284 sampling locations, assessing which variables predicted pathogen prevalence and range contractions via machine learning model selection techniques. We found that greater usage of the fungicide chlorothalonil was the best predictor of pathogen (Nosema bombi) prevalence in four declining species of bumblebees. Nosema bombi has previously been found in greater prevalence in some declining US bumblebee species compared to stable species. Greater usage of total fungicides was the strongest predictor of range contractions in declining species, with bumblebees in the northern USA experiencing greater likelihood of loss from previously occupied areas. These results extend several recent laboratory and semi-field studies that have found surprising links between fungicide exposure and bee health. Specifically, our data suggest landscape-scale connections between fungicide usage, pathogen prevalence and declines of threatened and endangered bumblebees.
Journal Article
Testing the multiple stressor hypothesis
2021
Numerous threats are putting pollinator health and essential ecosystem pollination services in jeopardy. Although individual threats are widely studied, their co-occurrence may exacerbate negative effects, as posited by the multiple stressor hypothesis. A prominent branch of this hypothesis concerns pesticide–pathogen co-exposure. A landscape analysis demonstrated a positive association between local chlorothalonil fungicide use and microsporidian pathogen (Nosema bombi) prevalence in declining bumblebee species (Bombus spp.), suggesting an interaction deserving further investigation. We tested the multiple stressor hypothesis with field-realistic chlorothalonil and N. bombi exposures in worker-produced B. impatiens microcolonies. Chlorothalonil was not avoided in preference assays, setting the stage for pesticide–pathogen co-exposure. However, contrary to the multiple stressor hypothesis, co-exposure did not affect survival. Bees showed surprising tolerance to Nosema infection, which was also unaffected by chlorothalonil exposure. However, previously fungicide-exposed infected bees carried more transmission-ready spores. Our use of a non-declining bumblebee and potential higher chlorothalonil exposures under some scenarios could mean stronger individual or interactive effects in certain field settings. Yet, our results alone suggest consequences of pesticide co-exposure for pathogen dynamics in host communities. This underlies the importance of considering both within- and between-host processes when addressing the multiple stressor hypothesis in relation to pathogens.
Journal Article
Bumble bees in landscapes with abundant floral resources have lower pathogen loads
by
Grozinger, Christina M.
,
Kammerer, Melanie
,
Heimann, Ashley C.
in
704/158/1144
,
704/158/1745
,
704/158/670
2020
The pollination services provided by bees are essential for supporting natural and agricultural ecosystems. However, bee population declines have been documented across the world. Many of the factors known to undermine bee health (e.g., poor nutrition) can decrease immunocompetence and, thereby, increase bees’ susceptibility to diseases. Given the myriad of stressors that can exacerbate disease in wild bee populations, assessments of the relative impact of landscape habitat conditions on bee pathogen prevalence are needed to effectively conserve pollinator populations. Herein, we assess how landscape-level conditions, including various metrics of floral/nesting resources, insecticides, weather, and honey bee (
Apis mellifera
) abundance, drive variation in wild bumble bee (
Bombus impatiens
) pathogen loads. Specifically, we screened 890 bumble bee workers from varied habitats in Pennsylvania, USA for three pathogens (deformed wing virus, black queen cell virus, and
Vairimorpha
(=
Nosema
)
bombi
),
Defensin
expression, and body size. Bumble bees collected within low-quality landscapes exhibited the highest pathogen loads, with spring floral resources and nesting habitat availability serving as the main drivers. We also found higher loads of pathogens where honey bee apiaries are more abundant, a positive relationship between
Vairimorpha
loads and rainfall, and differences in pathogens by geographic region. Collectively, our results highlight the need to support high-quality landscapes (i.e., those with abundant floral/nesting resources) to maintain healthy wild bee populations.
Journal Article
Effects of Invasive Parasites on Bumble Bee Declines
by
BROWN, MARK J. F.
,
SMAGGHE, GUY
,
MEEUS, IVAN
in
Animal, plant and microbial ecology
,
Animals
,
Apis mellifera
2011
Bumble bees are a group of pollinators that are both ecologically and economically important and declining worldwide. Numerous mechanisms could be behind this decline, and the spread of parasites from commercial colonies into wild populations has been implicated recently in North America. Commercial breeding may lead to declines because commercial colonies may have high parasite loads, which can lead to colonization of native bumble bee populations; commercial rearing may allow higher parasite virulence to evolve; and global movement of commercial colonies may disrupt spatial patterns in local adaptation between hosts and parasites. We assessed parasite virulence, transmission mode, and infectivity. Microparasites and so-called honey bee viruses may pose the greatest threat to native bumble bee populations because certain risk factors are present; for example, the probability of horizontal transmission of the trypanosome parasite Crithidia bombi is high. The microsporidian parasite Nosema bombi may play a role in declines of bumble bees in the United States. Preliminary indications that C. bombi and the neogregarine Apicystis bombi may not be native in parts of South America. We suggest that the development of molecular screening protocols, thorough sanitation efforts, and cooperation among nongovernmental organizations, governments, and commercial breeders might immediately mitigate these threats. Los abejorros son un grupo de polinizadores que son importantes tanto ecológica como económicamente y están declinando en todo el mundo. Hay numerosos mecanismos que pudieran estar detrás de esta declinación, y en Norte América recientemente se ha involucrado a la extensión de parásitos de colonias comerciales hacia poblaciones silvestres. La crianza comercial puede causar declinaciones porque las colonias comerciales pueden tener cargas altas de parásitos, lo que puede llevar a la colonización de poblaciones de abejorros nativos; la crianza comercial puede permitir que evolucione una mayor virulencia de parásitos; y el movimiento global de colonias comerciales puede alterar patrones espaciales en la adaptación local entre huéspedes y parásitos. Evaluamos la virulencia de parásitos, el modo de transmisión y la infectividad. Los microparásitos y los llamados virus de abejas pueden ser la mayor amenaza para las poblaciones de abejorros nativos debido a la presencia de ciertos factores de riesgo; por ejemplo, la probabilidad de transmisión horizontal del tripanosoma parásito Crithidia bombi es alta. El microesporido parásito Nosema bombi puede jugar un papel en las declinaciones de abejorros en los Estados Unidos. Indicaciones preliminares de que C. bombi y el neogregarino Apicystis bombi posiblemente no son nativos en partes de América del Sur. Sugerimos que el desarrollo de protocolos de análisis molecular, esfuerzos de sanidad minuciosos y la cooperación entre organizaciones no gubernamentales, gobiernos y criadores comerciales puede mitigar estas amenazas inmediatamente.
Journal Article
Consequences of microsporidian prior exposure for virus infection outcomes and bumble bee host health
by
Cohen, Olivia R
,
McCormick, Elyse C
,
Dolezal, Adam G
in
Bees
,
Bombus impatiens
,
Disease outbreaks
2023
Host–parasite interactions do not occur in a vacuum, but in connected multi-parasite networks that can result in co-exposures and coinfections of individual hosts. These can affect host health and disease ecology, including disease outbreaks. However, many host–parasite studies examine pairwise interactions, meaning we still lack a general understanding of the influence of co-exposures and coinfections. Using the bumble bee Bombus impatiens, we study the effects of larval exposure to a microsporidian Nosema bombi, implicated in bumble bee declines, and adult exposure to Israeli Acute Paralysis Virus (IAPV), an emerging infectious disease from honey bee parasite spillover. We hypothesize that infection outcomes will be modified by co-exposure or coinfection. Nosema bombi is a potentially severe, larval-infecting parasite, and we predict that prior exposure will result in decreased host resistance to adult IAPV infection. We predict double parasite exposure will also reduce host tolerance of infection, as measured by host survival. Although our larval Nosema exposure mostly did not result in viable infections, it partially reduced resistance to adult IAPV infection. Nosema exposure also negatively affected survival, potentially due to a cost of immunity in resisting the exposure. There was a significant negative effect of IAPV exposure on survivorship, but prior Nosema exposure did not alter this survival outcome, suggesting increased tolerance given the higher IAPV infections in the bees previously exposed to Nosema. These results again demonstrate that infection outcomes can be non-independent when multiple parasites are present, even when exposure to one parasite does not result in a substantial infection.
Journal Article
The gut microbiome of solitary bees is mainly affected by pathogen assemblage and partially by land use
by
Porrini, Leonardo Pablo
,
Eguaras, Martìn Javier
,
Brasesco, Constanza
in
Agriculture
,
Animal Genetics and Genomics
,
Argentina
2023
Pollinators, including solitary bees, are drastically declining worldwide. Among the factors contributing to this decline, bee pathogens and different land uses are of relevance. The link between the gut microbiome composition and host health has been recently studied for social pollinators (e.g. honeybees), whereas the information related to solitary bees is sparse. This work aimed at the characterization of the gut microbiome of the solitary bees
Xylocopa augusti
,
Eucera fervens
and
Lasioglossum
and attempted to correlate the gut microbial composition with the presence and load of different pathogens and land uses. Solitary bees were sampled in different sites (i.e. a farm, a natural reserve, and an urban plant nursery) showing different land uses. DNA was extracted from the gut, 16S rRNA gene amplified and sequenced. Eight pathogens, known for spillover from managed bees to wild ones, were quantified with qPCR. The results showed that the core microbiome profile of the three solitary bees significantly varied in the different species.
Pseudomonas
was found as the major core taxa in all solitary bees analyzed, whereas
Lactobacillus
,
Spiroplasma
and
Sodalis
were the second most abundant taxa in
X. augusti, E. fervens
and
Lasioglossum,
respectively. The main pathogens detected with qPCR were
Nosema ceranae
,
Nosema bombi
and
Crithidia bombi
, although differently abundant in the different bee species and sampling sites. Most microbial taxa did not show any correlation with the land use, apart from
Snodgrassella
and
Nocardioides,
showing higher abundances on less anthropized sites. Conversely, the pathogens species and load strongly affected the gut microbial composition, with
Bifidobacterium
,
Apibacter
,
Serratia
,
Snodgrassella
and
Sodalis
abundance that positively or negatively correlated with the detected pathogens load. Therefore, pathogens presence and load appear to be the main factor shaping the gut microbiome of solitary bees in Argentina.
Journal Article
PCR-Based Screening of Pathogens in Bombus terrestris Populations of Turkey
by
Kayaboynu, Ümit
,
Umur, Şinasi
,
Akpınar, Rahşan
in
Animal Systematics/Taxonomy/Biogeography
,
Animals
,
Apicystis bombi
2024
Purpose
Bumblebees are an important group of insects in the pollination of various vegetables, fruits, oilseeds, legumes, and the fodder crops. Compared to honeybees, they have a wider choice of hosts and a longer flight period. These bees are used especially for the pollination of plants in greenhouses and are commercially produced for this purpose. Recently, serious decreases have been occurring in bumblebee populations due to various reasons such as pathogens, and some of species are even threatened with extinction. Due to the worldwide decline in pollinator insects, determining the distribution and prevalence of bumblebee pathogens is of great importance. Therefore, this study was conducted to determine the incidence and prevalence of pathogens in Turkish bumblebee populations and how much of each pathogen was in bumblebee samples.
Methods
A total of 172
Bombus terrestris
(Linnaeus,1758) samples (21 samples from commercial enterprises, 79 samples from greenhouses and 72 samples from nature) were randomly collected from 3 provinces (Antalya, Mersin and İzmir) where greenhouse cultivation is intensively carried out in Turkey. Eighty-nine of these samples were collected in the spring and eighty-three in the autumn. The presence of four pathogens (
Nosema bombi
,
Crithidia bombi
,
Apicystis bombi
, and
Locustacarus buchneri
) was investigated by PCR using universal primers.
Results
The overall prevalence of
Nosema bombi
,
Crithidia bombi
,
Apicystis bombi
, and
Locustacarus buchneri
was determined as 7.55%, 9.3%, 11.62%, and 4.65%, respectively. Co-infections (5.81%) were only detected in wild-caught (nature) samples.
C. bombi
and
A. bombi
infections were detected at higher rates in the spring samples than in the autumn samples (
p
< 0.05). There was no significant difference between the spring and autumn samples with respect to the presence of
N. bombi
and
L. buchneri
(
p
> 0.05).
Conclusion
The results obtained could be important in determining the prevalence and spread rates of the bumblebee diseases in Turkey and to determine appropriate protection measures. The information gathered should increase our knowledge about the presence of these pathogens in Turkey and could contribute to improve apiarist’s practice. More studies are needed to determine the transmission pathways of these pathogens between the populations. Also, complex pathogen interactions in bumblebee populations should be considered in the future to improve bumblebee health.
Journal Article