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Diatomaceous earth in the prevention of worm infestation in purebred pigeons. The aim of the study was to determine the effectiveness of diatomaceous earth in the prevention of worm infestation in purebred pigeons and forms of its application. Diatomaceous earth (diatomite) was given to pigeons in the province of Mazovia. The following pigeon breeds were used in the experiment: Warsaw butterfly, Berlin white tail, starling and Polish owl. An addition of the natural mineral at 2% of the daily dose of feed was given for three weeks in nine dovecotes. The pigeons were divided into two groups. The Group I comprised 150 birds in five dovecotes. These birds were given grain (feed mix for pigeons, made by Kampol) plus diatomite mixed with a mineral additive (mineral complementary feed, made by Biowet). Group II comprised 150 birds in the other five dovecotes. These birds were given grain (feed mix for pigeons, made by Kampol) mixed with diatomite. The experiment found that the number of parasite eggs in the group I was reduced after a week following the application of diatomite, whereas the number of Capillaria nematode eggs and the proportion of Eimeria coccidia oocysts decreased considerably in group II.
The study aimed at identifying the polymorphism of domestic pigeon αA-globin gene which can be a potential homing marker in selection of racing pigeons. A total of 329 domestic pigeons were genotyped using the polymerase chain reaction-restriction fragment length polymorphism (PCRRFLP)method. The PCR products were digested with 17 restriction endonucleases. One RFLP – detected with HphI – was found in intron 1 and represented a C/T mutation. The second RFLP – detected with BseLI – was a point mutation in the 3’UTR region of the gene (C/T mutation). The polymorphism in the 3’UTR region of the pigeon αA-globin gene can potentially affect the stability of mRNA and modify the gene expression. The mechanisms of haemoglobin function reflecting variants of the αA-globin gene remain unknown.
5´-Nucleotidase specific towards dCMP and AMP was isolated from avian breast muscle and characterized. It was found to be similar to a type-I form (cN-I) identified earlier as the AMP-selective 5´-nucleotidase responsible for adenosine formation during ATP breakdown in transfected COS-7 cells. Expression pattern of the cN-I gene in pigeon tissues indicated breast muscle as a rich source of the transcript. We purified the enzyme from this source using two-step chromatography and obtained an active homogenous preparation, free of ecto-5´-nucleotidase activity. The tissue content of the activity was calculated at 0.09 U/g wet weight. The specific activity of the enzyme preparation was 4.33 U/mg protein and it preferred dCMP and AMP to dAMP and IMP as a substrate. Its kinetic properties were very similar to those of the enzyme purified earlier from heart tissue. It was strongly activated by ADP. Inhibition by inorganic phosphate was more pronounced than in heart-isolated cN-I. Despite this difference, a similar physiological function is suggested for cN-I in both types of muscle.
This study was conducted to determine the quality of anesthesia by evaluating the clinical effects of midazolam-propofol and metamizole-propofol on domestic pigeons (Columba livia). The aim of the study was to choose an appropriate injectable anesthetic protocol by utilizing midazolam and metamizole as pre-anesthetic drugs in order to reduce the dose of propofol and decrease side effects. Eighteen male pigeons weighing 304.2 ± 32.3 g (mean ± SD) were randomly allocated to three groups of six pigeons each. Midazolam (6 mg/kg/IM) and metamizole (500 mg/kg/IM) were used five minutes prior to administration of propofol (8 mg/kg/IV) in groups I and II, respectively, while the birds in group III (control group) received metamizole (500 mg/kg/IM). Five minutes after the last injection, clinical parameters of various systems were evaluated. Nervous system parameters declined in groups I and II, while reflexes could still be elicited in group III (P < 0.05). There were no significant changes in the heart rate, dysrhythmia, or gastrointestinal parameters in the three groups (P > 0.05). The birds in group II showed reduced jaw and limb muscle tone (P < 0.05). Corneal and palpebral reflexes were absent in groups I and II (P < 0.05). Both respiratory depth and pattern were irregular in group I, while all the parameters were normal in group II (P < 0.05). The respiratory rate decreased in all groups after injection, although this reduction was significant only in group I (P < 0.05). In conclusion, the combination of metamizole-propofol is safer and more compatible with the physiology of pigeons and can be used for short operations, especially when inhalation agents are contraindicated.
Aim of the study: In view of the frequent occurrence of immunosuppression in pigeons, which is a consequence of viral infections, studies with the use of a synthetic immunomodulator (methisoprinol) were undertaken to evaluate its impact on the course of an experimental infection with PPMV-1. The aim of the study was to determine the usefulness of methisoprinol for the treatment or prophylaxis of viral infections in pigeons. Materials and Methods: Three groups of 5-week-old pigeons, with 15 birds in each, were used in the experiment. Before the experiment, the birds were tested for the presence of antibodies specific to paramyxovirus, and their sensitivity to PPMV-1 infection was evaluated. The virus had been cultured earlier on SPF chicken embryos of 9-12 days. The pigeons from all three groups were infected intravenously with aparamyxovirus suspension (strain APMV-1/ pigeon/Poland/AR3/95 obtained from the Veterinary Institute in Puławy) at a concentration of LD50 10-7 in 0.1 ml at a dose of 0.1 ml/pigeon. The birds in the experimental groups (B1 and B2) were immunomodulated with methisoprinol administered at a dose of 200 mg/1 kg of body weight. The immunomodulator was administered by intramuscular injection for 3 successive days before (group B1) or three successive days after (group B2) the experimental infection. Pigeons in group K (used as a control) were given water by intramuscular injection for 3 days before and 3 days after infection. On days 4, 8, and 12 after infection, 5 birds from each group were euthanized, and sections of internal organs (lung, kidney, brain), as well as cloacal swabs, were collected to detect viral RNA by the RT-PCR method. Results and discussion: Symptoms were recorded from the first day after infection. Neurological symptoms occurred in birds from all groups: in 100% of pigeons from groups B1 and K, and in 80% of pigeons from group B2. Deaths of birds occurred from day 5 after infection in group B1. In the other groups, deaths were observed from day 6 after infection. The total mortality of the infected birds ranged from 70% (group B2) to 100% (groups B1 and K). The resolution of symptoms was observed from day 6 after infection in pigeons from group B2. During molecular examination, it was noted that the highest number of positive samples (presence of PPMV-1) on each day of the investigation was obtained from brain samples and cloacal swabs. The highest number of positive results in kidney samples was obtained from groups B1 and K on day 4 after infection. On the successive days of the investigation the percentage of positive samples increased to 100 in birds from all groups except group B2. Based On the basis of the results of the present study, it can be concluded that methisoprinol, used at a dose of 200 mg/kg of body weight after infection, has antiviral activity, manifested by a slower development of paramyxovirosis in pigeons infected intravenously with PPMV-1. Therefore, the administration of methisoprinol to naturally infected and diseased birds may be useful in the treatment of viral diseases.
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In this study, a pigeon paramyxovirus type 1 (PPMV-1) isolated from a flock of ornamental pigeons in Poland in 2010 is described. The PPMV-1/Poland/H2/10 isolate showed the amino acid sequence at the cleavage site of F2/F1 ¹¹²KRQKRF¹¹⁷ i.e. typical of virulent strains. Despite having the monoclonal antibody binding pattern typical of pigeon variants PPMV-1 (antigenic group “P”), the Polish isolate clustered into genetic sublineage 4a, which is usually associated with PMV-1 isolated from poultry.
This study demonstrated the presence of Cryptosporidium hominis in pigeons for the first time. Previously, C. hominis had been cited only in another bird species, Branta canadiensis. The present findings suggest that pigeons may act as mechanical vectors for this protozoan.
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