Search Results Heading

MBRLSearchResults

mbrl.module.common.modules.added.book.to.shelf
Title added to your shelf!
View what I already have on My Shelf.
Oops! Something went wrong.
Oops! Something went wrong.
While trying to add the title to your shelf something went wrong :( Kindly try again later!
Are you sure you want to remove the book from the shelf?
Oops! Something went wrong.
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
    Done
    Filters
    Reset
  • Discipline
      Discipline
      Clear All
      Discipline
  • Is Peer Reviewed
      Is Peer Reviewed
      Clear All
      Is Peer Reviewed
  • Item Type
      Item Type
      Clear All
      Item Type
  • Subject
      Subject
      Clear All
      Subject
  • Year
      Year
      Clear All
      From:
      -
      To:
  • More Filters
      More Filters
      Clear All
      More Filters
      Source
    • Language
9,730 result(s) for "Meles meles"
Sort by:
Effect of culling on individual badger Meles meles behaviour
Culling wildlife as a form of disease management can have unexpected and sometimes counterproductive outcomes. In the UK, badgers Meles meles are culled in efforts to reduce badger‐to‐cattle transmission of Mycobacterium bovis, the causative agent of bovine tuberculosis (TB). However, culling has previously been associated with both increased and decreased incidence of M. bovis infection in cattle. The adverse effects of culling have been linked to cull‐induced changes in badger ranging, but such changes are not well‐documented at the individual level. Using GPS‐collars, we characterized individual badger behaviour within an area subjected to widespread industry‐led culling, comparing it with the same area before culling and with three unculled areas. Culling was associated with a 61% increase (95% CI 27%–103%) in monthly home range size, a 39% increase (95% CI 28%–51%) in nightly maximum distance from the sett, and a 17% increase (95% CI 11%–24%) in displacement between successive GPS‐collar locations recorded at 20‐min intervals. Despite travelling further, we found a 91.2 min (95% CI 67.1–115.3 min) reduction in the nightly activity time of individual badgers associated with culling. These changes became apparent while culls were ongoing and persisted after culling ended. Expanded ranging in culled areas was associated with individual badgers visiting 45% (95% CI 15%–80%) more fields each month, suggesting that surviving individuals had the opportunity to contact more cattle. Moreover, surviving badgers showed a 19.9‐fold increase (95% CI 10.8–36.4‐fold increase) in the odds of trespassing into neighbouring group territories, increasing opportunities for intergroup contact. Synthesis and applications. Badger culling was associated with behavioural changes among surviving badgers which potentially increased opportunities for both badger‐to‐badger and badger‐to‐cattle transmission of Mycobacterium bovis. Furthermore, by reducing the time badgers spent active, culling may have reduced badgers' accessibility to shooters, potentially undermining subsequent population control efforts. Our results specifically illustrate the challenges posed by badger behaviour to cull‐based TB control strategies and furthermore, they highlight the negative impacts culling can have on integrated disease control strategies. Badger culling was associated with behavioural changes among surviving badgers which potentially increased opportunities for both badger‐to‐badger and badger‐to‐cattle transmission of Mycobacterium bovis. Furthermore, by reducing the time badgers spent active, culling may have reduced badgers' accessibility to shooters, potentially undermining subsequent population control efforts. Our results specifically illustrate the challenges posed by badger behaviour to cull‐based TB control strategies and furthermore, they highlight the negative impacts culling can have on integrated disease control strategies. Editor's Choice
Diverse amdoparvoviruses infection of farmed Asian badgers (Meles meles)
Amdoparvoviruses infect various carnivores, including mustelids, canids, skunks, and felids. Aleutian mink disease virus (AMDV) belongs to the prototypical species Amdoparvovirus carnivoran1. Here, we identified a novel amdoparvovirus in farmed Asian badgers (Meles meles), and we named this virus \"Meles meles amdoparvovirus\" (MMADV). A total of 146 clinical samples were collected from 134 individual badgers, and 30.6% (41/134) of the sampled badgers tested positive for amdoparvovirus by PCR. Viral DNA was detected in feces, blood, spleen, liver, lung, and adipose tissue from these animals. Viral sequences from eight samples were determined, five of which represented nearly full-length genome sequences (4,237-4,265 nt). Six serum samples tested positive by PCR, CIEP, and IAT, four of which had high antibody titers (> 512) against AMDV-G. Twenty-six of the 41 amdoparvovirus-positive badgers showed signs of illness, and necropsy revealed lesions in their organs. Sequence comparisons and phylogenetic analysis of the viral NS1 and VP2 genes of these badger amdoparvoviruses showed that their NS1 proteins shared 62.6%-88.8% sequence identity with known amdoparvoviruses, and they clustered phylogenetically into two related clades. The VP2 proteins shared 76.6%-97.2% identity and clustered into two clades, one of which included raccoon dog and arctic fox amdoparvovirus (RFAV), and the other of which did not include other known amdoparvoviruses. According to the NS1-protein-based criterion for parvovirus species demarcation, the MMADV isolate from farm YS should be classified as a member of a new species of the genus Amdoparvovirus. In summary, we have discovered a novel MMADV and other badger amdoparvoviruses that naturally infect Asian badgers and are possibly pathogenic in badgers.
Habitat suitability vs landscape connectivity determining roadkill risk at a regional scale: a case study on European badger (Meles meles)
Collisions between wildlife and vehicles represent the main conflict between infrastructures and ecosystems. Road mortality is the largest single cause of death for many vertebrates, representing a growing phenomenon of remarkable dimension. Most studies in road ecology investigated spatial roadkill patterns, showing that roadkill probability is often higher near optimal habitat for a large amount of species. Landscape connectivity has been less often considered in roadkill research, and only few studies considered habitat suitability and landscape connectivity at the same time. The purpose of the present study was to evaluate the relative importance of habitat suitability and landscape connectivity in determining roadkill risk for a habitat-generalist carnivore, namely, the Eurasian badger in the Abruzzo region (Central Italy). We collected occurrence data of living individuals from camera trapping and roadkill data of through a Citizen Science initiative. We used the occurrence data to produce a habitat suitability model (HSM) and a landscape connectivity model (LCM). Both HSM and LCM were then used as predictors in combination with road characteristics to fit a roadkill risk model. We found that landscape connectivity was more important than habitat suitability in determining roadkill risk for the Eurasian badger. Overall, the density of regional roads was the most important variable. Our finding highlighted how important is to consider landscape connectivity in planning mitigation measures aimed to preserve habitat-generalist species.
Assessing the impact of a test and vaccinate or remove badger intervention project on bovine tuberculosis levels in cattle herds
Bovine tuberculosis (bTB) is a chronic, zoonotic infection of domestic and wild animals caused mainly by Mycobacterium bovis. The Test and Vaccinate or Remove (TVR) project was a 5-year intervention (2014–2018) applied to Eurasian badgers (Meles meles) in a 100 km2 area of County Down, Northern Ireland. This observational study used routine bTB surveillance data of cattle to determine if the TVR intervention had any effect in reducing the infection at a herd level. The study design included the TVR treatment area (Banbridge) compared to the three adjacent 100 km2 areas (Dromore, Ballynahinch, and Castlewellan) which did not receive any badger intervention. Results showed that there were statistically lower bTB herd incidence rate ratios in the Banbridge TVR area compared to two of the other three comparison areas, but with bTB herd history and number of bTB infected cattle being the main explanatory variables along with Year. This finding is consistent with other study results conducted as part of the TVR project that suggested that the main transmission route for bTB in the area was cattle-to-cattle spread. This potentially makes any wildlife intervention in the TVR area of less relevance to bTB levels in cattle. It must also be noted that the scientific power of the TVR study (76%) was below the recommended 80%, meaning that results must be interpreted with caution. Even though statistical significance was achieved in two cattle-related risk factors, other potential risk factors may have also demonstrated significance in a larger study.
Cranial variation and taxonomic status of Far-Eastern badgers, with remarks on Pleistocene paleogeography of Meles (Carnivora: Mustelidae)
Abstract Four species of Eurasian badgers ( Meles ) are widely distributed across Eurasia. Small-sized and dark-coloured Far Eastern M. leucurus amurensis is the most distinctive form among all Asian badgers, M. leucurus . Traditionally, Far Eastern badgers are treated as a subspecies of the M. leucurus . This study aims to revise the geographical variability of the M. leucurus sensu lato from the entire species range (324 adult skulls) and assess the position of the Far Eastern badgers. In addition, 551 adult skulls of the European badger, M. meles , the Southwest Asian badger, M. canescens , and the Japanese badger, M. anakuma , were used for comparison with Asian badgers. Meles leucurus amurensis from the Far East resembles the Japanese M. anakuma in many respects, but is very different from the M. l. leucurus of southern Siberia and Middle Asia. Analysis of palaeontological data suggests that the Far Eastern badgers could have descended from the ancestral “ leucurus -like” badger chronospecies known from China since the mid-Early Pleistocene. It then probably dispersed westwards into southern Siberia no later than the MIS9 stage (~ 0.32 Ma), where it evolved into M. leucurus . Previous molecular data suggest that the Japanese badgers are unique, whereas the Far Eastern badgers are closer to Asian badgers from the Urals, Siberia and Tibet. We propose that the Far Eastern badger retains some craniometrics features of the ancestral form of M. leucurus sensu stricto and M. anakuma and should therefore be considered a separate species, M. amurensis Schrenck, 1859 stat. rev. The presumed range of this species is in the Far East, east of the Great Khingan Range to Russian Primorye, Manchuria and the Korean Peninsula and possibly eastern China.
A histopathological study in road-killed European badgers (Meles meles) from the English midlands with isolation of novel non-tuberculous atypical mycobacteria
European badgers (Meles meles) play an important role in the epidemiology of bovine tuberculosis (caused by Mycobacterium bovis) in England, but little is known about the prevalence of atypical mycobacteriosis. Badgers are also known to be infected by other infectious agents, and the relationship between mycobacteriosis and concomitant infections needs further investigation. Overall, 88 badger carcasses from the Midlands of England collected between July 2016-August 2017 were selected for histopathological examination based on the degree of autolysis (mild), mycobacterial culture results and a balanced sex ratio. Mycobacteria were cultured from 44 badgers, of which 31 were mycobacteria belonging to the M. tuberculosis complex (MTBC) (based on IS6110 PCR and Hsp64 and/or rRNA PCR and sequencing) and 13 were non-tuberculous atypical mycobacteria (NTM). Mycobacteria were not cultured from the remaining 44 animals. Histologically, the most common findings were silica-laden macrophages (85%), granulomas (53%), sarcocystosis (47%), nephritis (31%), portal/periportal hepatitis (26%), ulcerative dermatitis (18%). Culturable mycobacteriosis was associated with higher prevalence of granulomas (p < 0.001) and lower prevalence of hepatitis (p = 0.003). NTM (M. nonchromogenicum, M. avium complex, M. hassiacum, M. malmoense, M. vaccae.) infections were associated with granulomatous pneumonia, and M. malmoense was associated with pyogranulomatous and ulcerative dermatitis. In conclusion, this study describes, for the first time, histological lesions associated with NTM in badgers, the histomorphology of which was similar to those caused by MTBC. In addition, the negative relationship between mycobacteriosis and periportal hepatitis may indicate a complex relationship between mycobacteriosis and other diseases, as previously observed with tuberculosis.
Retrospective analysis of possible associations between Pneumocystis spp. and five immunosuppressive viral pathogens in three wild carnivore species
Pneumocystis spp. proliferate under immunosuppressive conditions in mammalian lungs, and several pathogens have been discussed as potential contributors to fungal proliferation. This study aimed to investigate the possible associations between Pneumocystis spp. and immunosuppressive viruses in Serbian wild mammals. A total of 108 wild carnivores – including golden jackals ( Canis aureus ), Eurasian badgers ( Meles meles ), and red foxes ( Vulpes vulpes ) – were collected from Veliko Gradište, Stara Pazova, and Ugrinovci during the 2022/2023 hunting season. The presence of Pneumocystis spp., canine parvovirus 2 (CPV-2), pseudorabies virus (PRV), canine distemper virus, canine coronavirus, and canine herpesvirus was assessed using conventional PCR and real-time PCR. Pneumocystis spp. were detected in 40.7% of all sampled animals (20/60 golden jackals, 4/9 Eurasian badgers, and 20/39 red foxes). CPV-2 was detected in three golden jackals (5.0% of tested golden jackals, 2.8% of all sampled animals), while PRV was found in two golden jackals (3.3% of tested golden jackals) and three red foxes (7.7% of tested red foxes; overall 4.6%). Co-infections of Pneumocystis spp. and PRV were identified in one golden jackal and two red foxes, while Pneumocystis spp. were absent in CPV-2-positive animals. All samples tested negative for other viral pathogens. No significant differences in the pathogens’ presence were observed between age groups, sexes, or sampling locations. The mean threshold cycle (Ct) values were 33.6 for Pneumocystis spp., 24.0 for CPV-2, and 31.3 for PRV. While the CPV-2 and PRV viral loads were high in co-infected samples, Pneumocystis spp. loads were associated only with subclinical infections. These findings suggest that the examined viral pathogens were unlikely to play a significant role in the development of clinically apparent Pneumocystis pneumonia, despite their potential to modulate or impair immune function. However, given the low viral prevalence and the lack of histopathological evaluation, a potential contribution of viral immunomodulation cannot be completely excluded.
Ecomorphology of the Early Pleistocene Badger Meles dimitrius from Greece
Τhe functional morphology of the skull of the fossil badger Meles dimitrius from the Early Pleistocene of Greece is studied by means of comparative myological and osteological analyses with the extant representatives of the genus Meles from Europe and Asia. The myological analysis of the masticatory system allowed the reconstruction of a ‘muscle map’ of the significant muscles for feeding and prey capture for the extant Meles meles and, by analogy, for the extinct Meles dimitrius . The quantitative osteological analysis computed several functional cranial, mandibular, and dental measurements and indices, as well as endocranial volume, bite force, and body mass, in order to identify characters that could be attributed to different ecomorphs. Two main ecomorphological groups were recognized within extant Meles . One includes the mainland forms ( M. meles, M. leucurus ) and the other the insular populations ( M. canescens from Crete and M. anakuma from Japan). Apart from its size, Meles dimitrius appears closer to the insular group, which is characterized by a relatively more developed masticatory system, a well-developed temporalis muscle, increased bite forces, increased endocranial volume and possibly a better adaptation to processing meat. The similarity of M. dimitrius with the insular group could be related to the retention of a primitive active predatory and meat-consuming behavior. Alternatively, M. dimitrius could have represented a relatively isolated population having evolved features convergently found in the insular extant badgers.
Quaternary Eurasian badgers: Intraspecific variability and species validity
Fossil badgers of the genus Meles are known in Eurasia since the Late Pliocene but their record is utterly scarce, often represented by isolated remains. This led to taxonomic confusion and hindered phylogenetic reconstruction of the genus. Here we describe in detail all the material attributed to M. thorali from the Early Pleistocene locality of Saint-Vallier, including several new complete crania. The results of comparative morphological and morphometric analyses allow reaffirming the distinction of M. thorali from M. meles and reassessing the status of other fossil species. All the analyzed European specimens between ca 2.8 and 1.5 Ma can be reasonably accommodated in a single species, M. thorali , while in Asia the diversity is higher, with up to four taxa described. Our analyses support previous interpretations of a close relationship between M. teilhardi with M. thorali . The European Meles meles appeared around 1.5 Ma and became the only badger present in European sites. We can therefore assume that the radiation of the genus Meles occurred during the general climatic changes that took place during the latest Pliocene and the beginning of Pleistocene and resulting environmental shifts across Eurasia.
Ultrasound measurements of superficial and deep masticatory muscles in various postures: reliability and influencers
Masticatory muscle thickness provides objective measurements of the oral motor function, which may change in patients with oral myofascial pain. In this study, we aimed to establish a reliable ultrasound (US) protocol for imaging the superficial and deep masticatory muscles and to identify the potential influencers of the measurements. Forty-eight healthy participants without orofacial pain were enrolled. The intra-and inter-rater reliabilities of US measurements for masseter, temporalis, and lateral pterygoid muscles were assessed. Intraclass correlation coefficients for all muscles were greater than 0.6. The generalised estimating equation was used to analyse the impact of age, gender, laterality, and body mass index on the measurements, whereby age and body mass index were likely to be associated with an increase in masticatory muscle thickness. The thickness tended to be lesser in females. Laterality seemed to exert minimal influence on masticatory muscle thickness. Our study shows acceptable reliability of US in the evaluation of superficial and deep masticatory muscle thickness. Future studies are warranted to validate the usefulness of US imaging in patients with oral myofascial pain syndrome.