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At least 19 recordsLinked to original sources

Neurologic disease attributable to infection with Parelaphostrongylus tenuis in blackbuck antelope.

Substantial mortality attributable to infection with Parelaphostrongylus tenuis was reported in 2 herds of blackbuck antelope (Antelope cervicapra) in southwestern Louisiana. Both herds had outbreaks in which all affected antelope had neurologic disease and subsequently died. Affected antelope were anorectic and weak. They staggered, trembled, isolated themselves from the herd, became recumbent, and, possibly, were blind. In 1 herd, 6 of 27 antelope were affected, and in the second herd, 7 antelope were affected. Both herds were on farms that raised various native and imported ruminants, including white-tailed deer. None of the remaining ruminants was affected during these outbreaks, and subsequent outbreaks have not been reported. Four antelope and the brain of a fifth antelope were submitted for postmortem examination. Meningeal worms were identified grossly in only 1 antelope. Metastrongyloid nematodes were detected histologically in 3 antelope. The amount and extent of inflammation varied greatly among affected antelope.

Animals↗

Mitochondrial DNA population structure of roan and sable antelope: implications for the translocation and conservation of the species.

Mitochondrial DNA (mtDNA) control region sequences were analysed to determine the geographical genetic structure of Hippotragus niger (sable antelope) and H. equinus (roan antelope). Analyses by AMOVA, minimum evolution networks, parsimony, neighbour joining and maximum likelihood show that the roan antelope populations are geographically partitioned and that their phylogeography corresponds well with subspecific boundaries. In sharp contrast, however, our sequence data group all the sable antelope into two well-delineated maternal clades. One comprising specimens from the strictly east African H.n. roosevelti, and a second geographically diverse group which includes H.n. niger (South Africa, Zimbabwe), H.n. variani (Angola), and H.n. Kirkii (Zambia, Malawi). The differences in the genetic population structure suggest that distinct extrinsic and intrinsic factors have shaped the phylogeography of these two closely related antelope species. In the absence of obvious extrinsic barriers to gene flow, we suggest that behavioural differences may be responsible, at least in part, for the contrasting spatial patterns detected among geographical localities. Although our data reflect only the maternal phylogeny of these important game species, they nonetheless suggest that different management strategies should be applied. We recommend that roan antelope be translocated only within the currently defined subspecies boundaries, while in the case of sable antelope, conservation measures should focus on preserving the genetic integrity of the east African and southern African sable populations. Implicit in this is that translocations of animals between populations comprising these two distinct maternal genetic clades should be actively discouraged.

Africa↗

Seroepidemiology of Leptospira interrogans serovar hardjo in Colorado antelope and cattle.

A seroepidemiologic study was conducted to determine the prevalence of Leptospira interrogans serovar hardjo infection in Colorado cattle and antelope. Sera were tested by the microscopic agglutination test, using a standard battery of 12 antigens as well as 4 additional serovars of the Hebdomadis serogroup: hardjo, szwajizak, sejroe, and balcanica. Sera from 1,856 cattle and 544 antelope were tested. In both populations, the predominant serovar detected was hardjo; hardjo titers greater than or equal to 1:400 were found in 3.2% of the cattle and 3.6% of antelope. A positive correlation was found to exist between serologic evidence of infection in cattle and the presence of antelope. In counties with presumably infected antelope, 5.6% of cattle sera reacted to hardjo; in counties with uninfected antelope, 2.6% of cattle tested were seropositive for hardjo; where no antelope existed, titers of greater than or equal to 1:400 were not detected.

Animals↗

Basic haematological values in antelopes--II. The Hippotraginae and the Tragelaphinae.

Basic haematological values in 49 animals of five species of the subfamily Hippotraginae, namely the roan antelope Hippotragus equinus, sable antelope Hippotragus niger, adax antelope Addax nasomaculatus, gemsbok oryx Oryx gazella gazella and scimitar horned oryx Oryx damah and in 51 individuals of five species in the subfamily Tragelaphinae, including the bushbuck Tragelaphus scriptus, nyala Tragelaphus angasi, greater kudu Tragelaphus strepsiceros, cape eland Tautotragus oryx and bongo Bocercus euryceros are reported. The erythrocyte counts were in the range of 12.62 X 10(12)/l in the gemsbok oryx to 6.44 X 10(12)/l in the bongo, the haematocrit values varied from 0.488 in the nyala to 0.380 in the roan antelope and for the haemoglobin highest levels (164.0 g/l) were noted in the adax antelope, and the lowest (105.5 g/l) in the bongo. Leukocyte counts were found mostly in the normal human range and varied from 7.17 X 10(9)/l in the adax antelope to 4.05 X 10(9)/l in the nyala, only in the greater kudu decreased values of 3.02 X 10(9) were estimated. These results are compared with findings taken from the literature, and with the normal human range.

Animals↗

Digestive efficiency in two small, wild ruminants: the dik-dik and suni antelopes.

A comparative study, using six dik-dik and eight suni antelope, was undertaken to identify similarities and differences that may exist in the digestive process of these two small, East African ruminant browsers. The suni antelope was the more select feeder, preferring the native, Grewia sinilis leaves over that of lucerne hay. Daily forage consumption rate, per unity body weight, was greater in the dik-dik (40.4 g/kg) than for the suni (30.6 g/kg), while daily fluid intake was considerably less (i.e. dik-dik, 68 ml/kg versus suni, 106 ml/kg body weight). Rumen fermentation studies suggested that the suni antelope attained the more rapid rumen and caecal fermentation activities, when compared to the dik-dik antelope. The difference in ruminal and caecal digestive process of the two antelope is suggested to be partly the result of the dik-dik's arid-adaptation strategies of less fluid intake and a more diverse (less selective) browse consumption, relative to the suni antelope.

Animals↗

Effects of a carfentanil-xylazine combination on cardiopulmonary function and plasma catecholamine concentrations in female bongo antelopes.

OBJECTIVE: To determine the effects of an i.m. administered carfentanil-xylazine combination on cardiopulmonary variables and plasma catecholamine concentrations and to validate use of pulse oximetry in bongo antelopes. ANIMALS: 8 healthy adult females. PROCEDURE: Antelopes were immobilized with carfentanil citrate (8.3 micrograms/kg of body weight, i.m.) and xylazine hydrochloride (0.79 mg/kg, i.m.). Hematologic values and plasma biochemical and catecholamine concentrations were determined at the beginning and end of immobilization. Immediately after induction of immobilization and every 15 minutes thereafter, cardiopulmonary variables were determined. RESULTS: Induction time after carfentanil-xylazine administration was 6 +/- 2 minutes. At 15 and 45 minutes after immobilization and thereafter, significant decrease in heart and respiratory rates, respectively, were observed. After 15 minutes of immobilization, all antelopes had developed mild hypoxemia, which resolved after nasal insufflation with 100% oxygen. Pulse oximetry readings underestimated arterial blood gas values, but reliably indicated trends in arterial oxygen desaturation. Antelopes developed hypoxemia after oxygen administration was terminated at the end of the procedure, prior to reversal of immobilization. Norepinephrine concentrations increased significantly (P < 0.05), and 3,4-dihydroxyphenylacetic acid concentrations decreased significantly at the end of the anesthetic event. Immobilization of all antelopes was reversed, using antagonists naltrexone and yohimbine hydrochloride. Time to standing was 3 +/- 1 minutes, and renarcotization was not observed. CONCLUSIONS AND CLINICAL RELEVANCE: The carfentamil-xylazine combination at the dosage used induced hypoxemia, pronounced arterial hypertension, and significant increase in plasma norepinephrine and decrease in plasma 3,4-dihydroxyphenylacetic acid concentrations in bongo antelopes. Supplemental administration of oxygen is recommended. Pulse oximetry is a useful tool to monitor trends in arterial oxygen desaturation, but does not substitute for arterial blood gas analysis.

Analgesics, Opioid↗

Recovery of a herpesvirus from a roan antelope (Hippotragus equinus).

A herpesvirus was recovered in culture from the cells of a roan antelope (Hippotragus equinus) following cryopreservation in DMSO and it is thought that the DMSO may have been involved in reactivation. The virus was shown to be antigenically related to alcelaphine herpesvirus-1 (AHV-1) of wildebeest and ovine herpesvirus-2 (OHV-2) of domestic sheep (formerly designated the sheep-associated agent of malignant catarrhal fever (MCF]. Cloned DNA fragments of AHV-1 and OHV-2 cross hybridised with DNA prepared from cells infected with the roan antelope virus and the intensity of reaction suggested that this virus was more closely related to AHV-1 than is OHV-2. The virus represents the third gamma herpesvirus isolated from large African antelope and should be provisionally designated hippotragine herpesvirus-1. On inoculation into rabbits the virus induced malignant catarrhal fever indicating that roan antelope should be considered as a possible source of infection.

Animals↗

Blackbuck antelope (Antilope cervicapra), a new host for Psoroptes cuniculi (Acari: Psoroptidae).

Information was requested on the cause of extensive lesions and death of a blackbuck antelope (Antilope cervicapra). Psoroptes cuniculi, the ear mite of domestic rabbits, was identified as the cause of the lesions. Death of the antelope was attributed to a secondary bacterial infection. This is the first report of P. cuniculi on blackbuck antelope. The potential impact of these mites on blackbuck antelope and other exotics in Texas is unknown.

Animals↗

Serum biochemical and electrophoretic values from four deer species and from pronghorn antelope.

Serums from 4 species of deer and 1 species of antelope were analyzed for various components in order to define an animal disease model for sickle cell disease in people. Animal species included black-tailed deer (Odocoileus hemionus columbianus), mule deer (Odocoileus hemionus), sika deer (Cervus nippon nippon), fallow deer (Dama dama), and pronghorn antelope (Antilocapra americana). The mean serum values for total bilirubin, total protein, albumin, creatinine, urea nitrogen, and electrolytes were similar in all species and were in the normal range for human beings. Cholesterol and uric acid values for all animals were lower than those for people. Alkaline phosphatase values in the 4 cervid species were higher than in the pronghorn antelope. Values for glutamic oxalacetic transaminase were lower in the cervids than in the pronghorn antelope. Lactic dehydrogenase values were similar in the 5 species. High activities for glutamic oxalacetic transaminase and lactic dehydrogenase in the 5 species probably related to muscle mass and great muscular activity.

Alkaline Phosphatase↗

Scent marking in a territorial African antelope: I. The maintenance of borders between male oribi.

Scent marking is ubiquitous among the dwarf antelope and gazelles of Africa, but its function has been the subject of debate. This study examined preorbital gland scent marking in the oribi, Ourebia ourebi, a territorial African antelope. Several hypotheses for the function of scent marking by territorial antelope were tested with observational data. Of these, the hypotheses that scent marking is driven by intrasexual competition between neighbouring males, and that marks serve as an honest advertisement of a male's ability to defend his territory from rivals, were supported best. Thirty-three territorial male oribi on 23 territories marked most at borders shared with other territorial males, and territorial males marked more often at borders shared with multimale groups than at borders shared with a single male. This suggests that males perceived neighbouring male groups as a greater threat to territory ownership than neighbouring males that defended their territories without the aid of adult subordinates. Marking rate was unrelated to territory size or the number of females on adjacent territories, but males with many male neighbours marked at higher rates than those with fewer male neighbours. These results suggest that the presence of male neighbours has a greater effect on the scent marking behaviour of territorial antelope than has been considered previously. Copyright 1999 The Association for the Study of Animal Behaviour.

Journal Article↗

Distribution and morphology of luteinising hormone-releasing hormone neurones in a species of wild antelope, the springbok (Antidorcas marsupialis).

The distribution and morphology of luteinising hormone-releasing hormone (LHRH) neurones varies between species. The primary purpose of this study was to characterize the distribution and morphology of the LHRH system in a species of antelope, the springbok. This wild antelope has a well-defined social structure in which reproductive activity is confined to a few dominant, territorial rams. We also sought to determine whether social or reproductive status could be accounted for by differences in the distribution or morphology of hypothalamic LHRH neurones. Eleven anoestrous female, nine breeding territorial male (TM) and eight "bachelor" male (BM) springbok were obtained, and their reproductive and body conditions were assessed. By using standard immunocytochemical techniques, the LHRH system was visualised in the brains of four animals from each group. Immunoreactive neurones were located in a continuum from the septum to the arcuate nucleus, with the majority at the level of the organum vasculosum of the lamina terminalis. Neither the distribution nor the number of cells differed among the three groups. Furthermore, the area of LHRH perikarya was similar in both groups of males, suggesting that reproductive differences between TMs and BMs lie at another level of the neuroendocrine axis. The anoestrous females had significantly larger neurones than males (TM plus BM). This may reflect a sex difference in the LHRH system of this wild antelope. However, an alternative explanation is that the male/female difference is related to the comparatively inactive reproductive neuroendocrine state of the females.

Analysis of Variance↗

Experimental infection of eland (Taurotrages oryx), sable antelope (Ozanna grandicomis) and buffalo (Syncerus caffer) with foot-and-mouth disease virus.

The course of experimental infection of a type SAT 1 FMDV strain was studied in buffalo, sable antelope and eland following tongue inoculation and contact and has been compared with that in cattle. All species became infected, although disease was less severe in the game animals and larger amounts of virus were required to infect game animals than cattle. Neutralizing antibody titres were high and were maintained for an extended period in buffalo, sable antelope and eland. The carrier state was demonstrated in buffalo for the longest period. Cattle carried virus for up to 56 days. Virus persistence in sable antelope was transitory and did not occur in eland.

Animals↗

Alteration in vomeronasal system anatomy in alcelaphine antelopes: correlation with alteration in chemosensory investigation.

Ruminants typically have an incisive papilla and incisive ducts located on the hard palate just behind the dental pad which are involved in transferring fluid-borne stimulus material from the oral cavity to the vomeronasal organs (VNOs) during flehmen. This behavior in males is presumably involved in the detection of chemosensory cues in female urine which indicate sexual status. Two species of alcelaphine antelopes, topi and Coke's hartebeest, were found to lack the incisive papilla and incisive ducts constituting the oral connection to the VNOs. This distinctive anatomical feature is complemented in these species not only by lack of flehmen behavior, but also a de-emphasis on chemosensory interest in female urine during sexual encounters. The common wildebeest, which is also an alcelaphine antelope, lacks the incisive papilla, but has small incisive ducts. Wildebeest males do perform flehmen to urine from females. However, during flehmen in the wildebeest, intermittent nostril licking apparently delivers the stimulus material to the VNOs via the nasal route, possibly compensating for reduced oral access to the VNOs. These observations on alcelaphine antelopes would appear to represent a unique feature among the world's ruminants.

Animals↗

Running energetics in the pronghorn antelope.

The pronghorn antelope (Antilocapra americana) has an alleged top speed of 100 km h-1, second only to the cheetah (Acionyx jubatus) among land vertebrates, a possible response to predation in the exposed habitat of the North American prairie. Unlike cheetahs, however, pronghorn antelope are distance runners rather than sprinters, and can run 11 km in 10 min, an average speed of 65 km h-1. We measured maximum oxygen uptake in pronghorn antelope to distinguish between two potential explanations for this ability: either they have evolved a uniquely high muscular efficiency (low cost of transport) or they can supply oxygen to the muscles at unusually high levels. Because the cost of transport (energy per unit distance covered per unit body mass) varies as a predictable function of body mass among terrestrial vertebrates, we can calculate the predicted cost to maintain speeds of 65 and 100 km h-1 in an average 32-kg animal. The resulting range of predicted values, 3.2-5.1 ml O2 kg-1 s-1, far surpasses the predicted maximum aerobic capacity of a 32-kg mammal (1.5 ml O2 kg-1 s-1). We conclude that their performance is achieved by an extraordinary capacity to consume and process enough oxygen to support a predicted running speed greater than 20 ms-1 (70 km h-1), attained without unique respiratory-system structures.

Animals↗

The R- and G-banded karyotypes of the sable antelope (Hippotragus niger).

The karyotype of the sable antelope has been investigated by RBG- and GTG-banding techniques. Chromosome preparations were made from peripheral blood lymphocytes, and primary fibroblast cells were cultured from skin biopsies. The RBG-banded chromosomes were identified and classified according to the standard conventions used for cattle and goat. The diploid number of the sable antelope is 60. The autosomes are all acrocentric, the X is a large acrocentric, and the Y is a minute acrocentric. Comparison of banding patterns in sable antelope and cattle chromosomes reveals the existence of a high degree of homoeology except for at least one pair of autosomes and the X chromosome.

Animals↗

Ciliate protozoa in the rumen of sassaby antelope, Damaliscus lunatus lunatus, including the description of a new species and form.

Composition of rumen ciliate fauna in five Zambian, sassaby antelopes was determined. Six genera, 18 species, and four forms were identified. One new species and form, belonging to the subfamily Diplodiniinae, were found, then labeled Ostracodinium damaliscus n. sp. and Diplodinium bubalidis f. aspinosum n. f., respectively. Only ophryoscolecid species were present while isotrichids were absent. Twelve of 18 total species are commonly found in African antelopes. Three of those 12 species, Entodinium fyferi, Enoploplastron garstangi and Opisthotrichum janus, are only found in African antelopes. Percentage composition was low in the genera Enoploplastron, Eudiplodinium and Entodinium, and high in the genus Opisthotrichum. The average density of ciliates was 3.1 x 10(5)/ml of rumen fluid, and the average number of ciliate species per host was 17.2.

Animals↗

Studies on pronghorn antelope (Antilocapra americana) as reservoirs of anaplasmosis in Montana.

Twenty-six pronghorn antelope (Antilocapra americana) were collected in an area of eastern Montana where bovine anaplasmosis is enzootic. Their sera were examined for evidence of anaplasmosis by the complement-fixation test. Strong false positive reactions (3+ and 4+ reactors) occurred for 19 of the sera tested; 6 sera were anticomplementary. Inoculation of antelope blood into anaplasmosis, and anaplasma bodies were not found in stained blood smears of antelope or recipient calves.

Anaplasmosis↗

Parelaphostrongylus tenuis in captive reindeer and sable antelope.

Parelaphostrongylus tenuis caused neurologic disease in 6 reindeer (Rangifer tarandus tarandus) and 2 sable antelope (Hippotragus niger) that were housed at the National Zoological Park Conservation and Research Center in Front Royal, Va. Progressive hindlimb ataxia and weakness were seen in all affected animals. The parasite was recovered from the subdural space of one reindeer and was seen histologically within the neuropil of another reindeer and a sable antelope. In the other reindeer and sable antelope, diagnoses of parelaphostrongylosis were based on clinicoepidemiologic findings and microscopic lesions. Because parelaphostrongylosis is a density-dependent disease and because the number of white-tailed deer probably will increase, the incidence of P tenuis infections in domestic and nondomestic animals probably will increase as well. Zoos and wildlife parks especially should be cautious when introducing exotic hoofstock to areas with Parelaphostrongylus tenuis-infected white-tailed deer.

Animals↗