Toxoplasmosis is a globally spread disease, affecting humans and many animal species, including birds. Antibodies to Toxoplasma gondii were detected in ostriches from South and North America, Africa and Asia. Except for one study from Spain, there is a lack of information about T. gondii seroprevalence in ostriches from Europe. For this reason, the aim of the study was to detect antibodies to T. gondii in farm-reared ostriches from the Czech Republic. Serum samples of 409 ostriches (Struthio camelus), collected at 9 farms were tested by Latex agglutination test. Antibodies to T. gondii were detected in 149 (36%) birds with a statistical difference for individual farms (8%-71%, p = 0.0121), and regions (8%-65%, p = 0.002). Seropositivity did not statistically differ (p > 0.05) in size of farms (50% and 35% on small and large farms, respectively), sex of birds (38% and 35% in males and females, respectively), season and year of collection. Tissue samples (brain, heart, and pectoral muscle) of 105 birds were also tested by PCR to detect T. gondii DNA. The parasite T. gondii was detected in the brain and heart of one seronegative ostrich (1%) from a small farm. Based on our results, we can assume that ostriches may present high risk of toxoplasmosis for humans through consumption of raw or undercooked ostrich meat and even seronegative individuals could harbor T. gondii in their tissues. To our knowledge, this is the first serological detection of T. gondii in ostriches in the Czech Republic, and the first PCR detection in Europe.
- MeSH
- farmy MeSH
- lidé MeSH
- protilátky protozoální krev MeSH
- protozoální DNA analýza MeSH
- rizikové faktory MeSH
- Struthioniformes * krev parazitologie MeSH
- Toxoplasma * genetika imunologie MeSH
- toxoplazmóza zvířat * krev diagnóza epidemiologie MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- mužské pohlaví MeSH
- ženské pohlaví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- Geografické názvy
- Česká republika MeSH
BACKGROUND: Avian cryptosporidiosis is a common parasitic disease that is caused by five species, which are well characterised at the molecular and biological level, and more than 18 genotypes for which we have limited information. In this study, we determined the occurrence and molecular characteristics of Cryptosporidium spp. in farmed ostriches in the Czech Republic. METHODS: The occurrence and genetic identity of Cryptosporidium spp. were analysed by microscopy and PCR/sequencing of the small subunit rRNA, actin, HSP70 and gp60 genes. Cryptosporidium avian genotype II was examined from naturally and experimentally infected hosts and measured using differential interference contrast. The localisation of the life-cycle stages was studied by electron microscopy and histologically. Infectivity of Cryptosporidium avian genotype II for cockatiels (Nymphicus hollandicus (Kerr)), chickens (Gallus gallus f. domestica (L.)), geese (Anser anser f. domestica (L.)), SCID and BALB/c mice (Mus musculus L.) was verified. RESULTS: A total of 204 individual faecal samples were examined for Cryptosporidium spp. using differential staining and PCR/sequencing. Phylogenetic analysis of small subunit rRNA, actin, HSP70 and gp60 gene sequences showed the presence of Cryptosporidium avian genotype II (n = 7) and C. ubiquitum Fayer, Santín & Macarisin, 2010 IXa (n = 5). Only ostriches infected with Cryptosporidium avian genotype II shed oocysts that were detectable by microscopy. Oocysts were purified from a pooled sample of four birds, characterised morphometrically and used in experimental infections to determine biological characteristics. Oocysts of Cryptosporidium avian genotype II measure on average 6.13 × 5.15 μm, and are indistinguishable by size from C. baileyi Current, Upton & Haynes, 1986 and C. avium Holubová, Sak, Horčičková, Hlásková, Květoňová, Menchaca, McEvoy & Kváč, 2016. Cryptosporidium avian genotype II was experimentally infectious for geese, chickens and cockatiels, with a prepatent period of four, seven and eight days post-infection, respectively. The infection intensity ranged from 1000 to 16,000 oocysts per gram. None of the naturally or experimentally infected birds developed clinical signs in the present study. CONCLUSIONS: The molecular and biological characteristics of Cryptosporidium avian genotype II, described here, support the establishment of a new species, Cryptosporidium ornithophilus n. sp.
- MeSH
- Cryptosporidium klasifikace genetika ultrastruktura MeSH
- fylogeneze MeSH
- hospodářská zvířata parazitologie MeSH
- hostitelská specificita MeSH
- klasifikace MeSH
- kryptosporidióza parazitologie MeSH
- nemoci ptáků parazitologie MeSH
- protozoální geny genetika MeSH
- ptáci parazitologie MeSH
- stadia vývoje MeSH
- Struthioniformes parazitologie MeSH
- taxonomické DNA čárové kódování veterinární MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
Enterococci are widespread bacteria forming the third largest genus among lactic acid bacteria. Some possess probiotic properties or they can produce beneficial proteinaceous antimicrobial substances called enterocins. On the other hand, some enterococci produce biogenic amines (BAs), so this study is focused on the sensitivity to enterocins of biogenic amine-producing faecal enterococci from ostriches and pheasants. Altogether, 60 enterococci isolated from faeces of ostriches and pheasants were tested for production of BAs. This target of the identified enterococci involved 46 strains selected from 140 ostriches and 17 from 60 pheasants involving the species Enterococcus hirae, E. faecium, E. faecalis, and E. mundtii. Although BAs histamine, cadaverine, putrescine, and tryptamine were not detected in the enterococci tested, in general high BA production by the tested enterococci was noted. The species E. hirae formed the majority of the enterococcal strains from ostrichs faeces (34 strains). High production of tyramine (TYM) was measured with an average amount of 958.16 ± 28.18 mg/ml. Among the enterococci from pheasants, the highest was production of TYM compared to phenylethylamine, spermidine, and spermine. Enterococci featured high BA production; however, they were sensitive to seven enterocins with inhibition activity ranging from 100 up to 25,600 AU/ml.
- MeSH
- biogenní aminy biosyntéza MeSH
- Enterococcus klasifikace izolace a purifikace MeSH
- feces chemie mikrobiologie MeSH
- fenethylaminy metabolismus MeSH
- Galliformes mikrobiologie MeSH
- přemostěné cyklické sloučeniny metabolismus MeSH
- spermidin biosyntéza MeSH
- spermin biosyntéza MeSH
- Struthioniformes mikrobiologie MeSH
- tyramin biosyntéza MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
In ostriches and pheasants, there is still limited information relating to staphylococci and their properties. Biogenic amines (BAs) are nitrogenous low-molecular-weight substances with biological functions in animals, plants and microorganisms. In this study, we focused on BA production by targeted faecal staphylococci from ostriches and pheasants and their sensitivity to lantibiotic bacteriocin gallidermin. Gallidermin belongs in a group of polycyclic proteinaceous antimicrobial substances. Thirty-six faecal staphylococci (24 strains from 140 ostriches, 12 from 60 pheasants) comprising different species were tested. Staphylococci from ostriches and pheasants did not produce tryptamine-TRYP, putrescine-PUT, cadaverine-CAD or histamine-HIS. Production of tyramine-TYM, phenylethylamine-PEA was high or very high (100-1000 mg/L). Production of spermine-SPM and spermidine-SPD by staphylococci was very low or low although in the case of staphylococci from pheasants medium production of SPM was found. Because of the risk posed by BAs for consumers, the control of BA-producing bacteria is important from the points of view not only of safety assessment of food-producing animals but also of human health safety. The sensitivity to gallidermin in biogenic amine-producing staphylococci from ostriches and pheasants detected here is the most promising indication for further application of gallidermin for veterinary purposes. The novelty of our study lies in testing the ability of faecal staphylococci from ostriches and pheasants to produce BAs and in their treatment with gallidermin which has so far not been tested in this way.
- MeSH
- antibakteriální látky farmakologie MeSH
- bakteriociny farmakologie MeSH
- biogenní aminy metabolismus MeSH
- feces mikrobiologie MeSH
- Galliformes mikrobiologie MeSH
- lidé MeSH
- mikrobiální testy citlivosti MeSH
- peptidy farmakologie MeSH
- Staphylococcus účinky léků izolace a purifikace metabolismus MeSH
- Struthioniformes mikrobiologie MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
The present study focuses on the detection of enterococci in ostrich faeces. Forty-six bacterial colonies from 140 ostriches were identified at the species level using the MALDI-TOF MS identification system. According to the score value evaluation, they were allotted to the species Enterococcus hirae, Enterococcus faecium and Enterococcus mundtii confirmed also by phenotypic testing. Dominated species E. hirae (34 strains) were submitted to more detailed testing. Those strains E. hirae produced either no or only slight amount of the enzymes related to disorders (N-acetyl-β-glucosaminidase, β-glucuronidase, α-chymotrypsin, trypsin). Most of the strains were not hemolytic. They did not harbour the hiracin-producing gene. Five E. hirae strains harboured virulence factor gene gelE; however, they were phenotypically gelatinase negative. They also harboured other virulence factor genes such as esp, efaAfm and ccf. E. hirae strains were mostly sensitive to antibiotics and those resistant at least to one antibiotic were sensitive to enterocins (200-25,600 AU/mL). This study represents original and novel results concerning the enterococcal microflora in ostriches; enterococci in ostriches have not been described in detail up to now; sensitivity to enterocins of E. hirae strains harbouring virulence factor genes to enterocins is also new.
- MeSH
- antibakteriální látky farmakologie MeSH
- Enterococcus klasifikace účinky léků genetika izolace a purifikace MeSH
- faktory virulence analýza genetika MeSH
- feces mikrobiologie MeSH
- hospodářská zvířata MeSH
- mikrobiální testy citlivosti MeSH
- přemostěné cyklické sloučeniny metabolismus MeSH
- spektrometrie hmotnostní - ionizace laserem za účasti matrice MeSH
- Struthioniformes mikrobiologie MeSH
- techniky typizace bakterií MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
As animals vocalize, their vocal organ transforms motor commands into vocalizations for social communication. In birds, the physical mechanisms by which vocalizations are produced and controlled remain unresolved because of the extreme difficulty in obtaining in vivo measurements. Here, we introduce an ex vivo preparation of the avian vocal organ that allows simultaneous high-speed imaging, muscle stimulation and kinematic and acoustic analyses to reveal the mechanisms of vocal production in birds across a wide range of taxa. Remarkably, we show that all species tested employ the myoelastic-aerodynamic (MEAD) mechanism, the same mechanism used to produce human speech. Furthermore, we show substantial redundancy in the control of key vocal parameters ex vivo, suggesting that in vivo vocalizations may also not be specified by unique motor commands. We propose that such motor redundancy can aid vocal learning and is common to MEAD sound production across birds and mammals, including humans.
- MeSH
- akustika * MeSH
- Columbidae MeSH
- hlasové řasy fyziologie MeSH
- kakaduové MeSH
- pěnkavovití MeSH
- ptáci fyziologie MeSH
- Struthioniformes MeSH
- vokalizace zvířat fyziologie MeSH
- zvířata MeSH
- Check Tag
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Research Support, N.I.H., Extramural MeSH
The typically repetitive nature of the sex-limited chromosome means that it is often excluded from or poorly covered in genome assemblies, hindering studies of evolutionary and population genomic processes in non-recombining chromosomes. Here, we present a draft assembly of the non-recombining region of the collared flycatcher W chromosome, containing 46 genes without evidence of female-specific functional differentiation. Survival of genes during W chromosome degeneration has been highly non-random and expression data suggest that this can be attributed to selection for maintaining gene dose and ancestral expression levels of essential genes. Re-sequencing of large population samples revealed dramatically reduced levels of within-species diversity and elevated rates of between-species differentiation (lineage sorting), consistent with low effective population size. Concordance between W chromosome and mitochondrial DNA phylogenetic trees demonstrates evolutionary stable matrilineal inheritance of this nuclear-cytonuclear pair of chromosomes. Our results show both commonalities and differences between W chromosome and Y chromosome evolution.
- MeSH
- fylogeneze MeSH
- ještěři genetika MeSH
- kur domácí genetika MeSH
- mitochondriální DNA genetika MeSH
- molekulární evoluce * MeSH
- pěnkavovití genetika MeSH
- plazi genetika MeSH
- pohlavní chromozomy genetika MeSH
- ptáci genetika MeSH
- Struthioniformes genetika MeSH
- želvy genetika MeSH
- zpěvní ptáci genetika MeSH
- zvířata MeSH
- Check Tag
- ženské pohlaví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH