MOST DISTINCTIVELY SOUTH AFRICAN OF ALL UNGULATES
The grey rhebok (https://www.inaturalist.org/taxa/42336-Pelea-capreolus) is
- restricted to South Africa, and
- only distantly related to other bovids.
Citedpmc.ncbi.nlm.nih.gov
This peculiarity is connected to the floristically distinctive shrublands of South Africa, including
- fynbos,
- renosterveld, and
- karoo.
CitedWikipedia 1·Wikipedia 2·Wikipedia 3
The grey rhebok is the only ungulate in southern Africa that is specialised to eat dicotyledonous plants in low vegetation.
Citedjournals.co.za
EXTREME PARASITISM
The grey rhebok is so notorious for infestation by a warble fly, Strobiloestrus clarkii, that nobody hunts it for meat.
CitedWikipedia 1·Wikipedia 2·resjournals.onlinelibrary.wiley.com
The grey rhebok is the only large mammal that has spontaneously extended its habitat in response to farming. This has been possible because farmers have no interest in shooting it.
CitedRelated post
The grey rhebok was probably known to the first settlers at what is now Cape Town, by 1653.
CitedWikipedia·worldhistorycommons.org
However, the journals of the time ignore the species, and it took nearly one-and-a-quarter centuries for it to be named for Science. I suspect that this lapse was because the disgusting quality of the meat became immediately known.
CitedRelated post
EXTREME COMBINATION OF INCONSPICUOUSNESS AND CONSPICUOUSNESS
The grey rhebok is a classic example of ‘background-matching’ in adaptive colouration.
This allows it to hide in plain sight in fynbos, despite its gregariousness.
Also cited on iNaturalistobs. 257337401·obs. 300725895
Citedupload.wikimedia.org·instagram.com
However, when fleeing, the grey rhebok becomes extremely conspicuous, even at a distance of kilometers. This is by virtue of the raising and flaring of the tail to display the white pelage on its ventral side.
I know of no other bovid that shows this combination so extremely.
CitedRelated post
LARGE EYES
The size of the eyes of the grey rhebok has not been measured.
However, the orbits indicate extreme size, adaptive for extreme vigilance.
CitedAlamy·printables.com·Facebook
I hypothesise that
- the main predator of the grey rhebok before European arrival was Lycaon pictus (https://www.inaturalist.org/taxa/42093-Lycaon-pictus), and
- the main antipredator tactic, in this context, was to preclude pursuit by fleeing at a great distance.
This is somewhat analogous to the common eland (Taurotragus oryx oryx), which coexisted with the grey rhebok throughout the original habitat of the latter. This tragelaphin also combined extremely large eyes with extreme flightiness at distance.
WOOL
The grey rhebok is the only ungulate in subSaharan Africa that has wool throughout the year.
Also cited on iNaturalistobs. 336564982
This may be related to its being the most montane of all artiodactyls in southern Africa.
FOOTNOTE:
Chatgpt
MY QUESTION
Pelea capreolus is perhaps the prime example of a bovid subject to infestation by warble flies (Oestridae: Hypodermatinae). Redunca and other reduncins also suffer from these flesh-eating parasites, but only in the case of Pelea does a reputation for such infestation seem to have resulted in a general disgust, to the extent that nobody hunts the grey rhebok for meat. What is it about the ecology of P. capreolus that makes it subject to such egregious infestation, in addition to ticks and lice? Supply full references.
ANSWER FROM CHATGPT
The short answer is that nobody really knows. There is, to my knowledge, no published study that has specifically explained why Pelea capreolus appears unusually prone to warble-fly infestation compared with most other African bovids. Any explanation must therefore be inferential rather than directly demonstrated.
What is well documented is that grey rhebok have long had a reputation among hunters and naturalists for carrying large numbers of subcutaneous bot larvae (“warbles”), sometimes to a degree that makes carcasses aesthetically repellent. Older South African hunting literature repeatedly mentions “grubs” in rhebok carcasses, and this reputation has undoubtedly contributed to the species being less sought after for venison than many other antelopes.
Ecological factors that may favour heavy infestation
Several aspects of grey rhebok ecology are consistent with high exposure to Hypodermatinae larvae.
Cool upland habitat
Grey rhebok are primarily inhabitants of mountain grasslands and high plateaus, typically above 1,000 m.
Many hypodermatine flies elsewhere in the world are characteristic of cool-temperate or montane environments. The best-known hosts of warble flies are reindeer, roe deer, red deer, cattle on upland pastures, muskoxen and mountain goats.
Thus, unlike many African antelopes that inhabit hot savannas, Pelea occupies an environment more analogous to the habitats in which warble flies are especially successful in the Northern Hemisphere.
Long, dense, woolly pelage
Grey rhebok possess perhaps the woolliest coat of any African antelope. Their pelage is described as “woollier and curlier than that of all other antelopes.”
This may be important for three reasons:
- it provides a favourable microclimate for eggs and larvae;
- it makes grooming less effective;
- it may conceal developing warbles from conspecific grooming.
Many heavily parasitized mountain ungulates elsewhere in the world (e.g., reindeer, muskoxen, wild goats) also have dense insulating coats.
Limited mud-wallowing and rubbing
Unlike buffalo, warthogs, rhinoceroses, and many cattle, grey rhebok do not routinely wallow in mud. Consequently they lack one of the principal mechanical defenses against ectoparasites.
A mud coating can interfere with oviposition by flies and may physically remove attached parasites when subsequently rubbed off. The absence of such behaviour may leave Pelea unusually exposed.
Small stable social groups
Grey rhebok usually occur in small territorial groups consisting of one male and several females.
This social system may provide insufficient collective grooming to suppress ectoparasites. By contrast, some larger ungulates benefit from higher frequencies of social grooming and physical contact.
Longevity and site fidelity
Grey rhebok are relatively long-lived for a medium-sized antelope and often occupy the same mountain territories for years.
Warble flies frequently exploit host populations that are spatially predictable from year to year. A sedentary host can allow local parasite populations to persist and build up.
Why ticks, lice, and warbles together?
The same characteristics that may favour warble flies also favour other parasites:
- dense woolly coat;
- cool, moist mountain climate;
- relatively low grooming efficiency;
- predictable use of resting and bedding sites.
Consequently, it is plausible that grey rhebok are not uniquely susceptible to warble flies alone, but rather represent an ungulate with generally favourable conditions for ectoparasites and skin parasites.
A caution
It is worth distinguishing between:
- true biological susceptibility, and
- human perception.
A single large warble larva emerging from a carcass is far more conspicuous and disgusting to hunters than hundreds of ticks or lice. Therefore the grey rhebok’s poor culinary reputation may partly reflect the visibility of the parasite rather than an objectively greater parasite burden than in other antelopes.
Indeed, many other African bovids carry heavy tick loads, but hunters rarely encounter large subcutaneous larvae when butchering them. Warbles are visually dramatic and can create a lasting reputation out of proportion to their actual pathological significance.
References
- Dewey, S. 2002. Pelea capreolus (grey rhebok). Animal Diversity Web, University of Michigan.
- Hadwen, S. 1916. “Warble Flies. A Further Contribution on the Biology of Hypoderma lineatum and Hypoderma bovis.” Parasitology 9: 239–286.
- Bevan, W.J. & Edwards, E.E. 1951. “Studies on the Ox Warble Flies, Hypoderma lineatum and Hypoderma bovis.” Bulletin of Entomological Research 42: 419–476.
- Puccini, V. & Otranto, D. 2000. “Goat Warble Fly Infestation by Przhevalskiana silenus (Diptera, Oestridae).” In Recent Advances in Goat Diseases.
- Panadero, R. et al. 2017. “Hypoderma actaeon: an emerging myiasis in roe deer (Capreolus capreolus).” Medical and Veterinary Entomology 31: 94–96.
- Samuelsson, F. et al. 2016. “Warble infestations by Hypoderma tarandi recorded for the first time in West Greenland muskoxen.” International Journal for Parasitology: Parasites and Wildlife 5: 198–202.
END OF TRANSCRIPT FROM AI
Posted on June 8, 2026 07:18 PM by
milewski
The author added the following in comments beneath the original post.
Citedcrusadersafaris.com
Specimen with remarkably long horns:
CitedFacebook
Shift to back-of-foreleg
CitedShutterstock
Citedsketchfab.com
CitedResearchGate
Gemini
MY QUESTION
Does Pelea capreolus move altitudinally with the seasons? Supply full references.
ANSWER FROM GEMINI
The grey rhebok (Pelea capreolus) does not undergo true, macro-scale seasonal altitudinal migration. Instead, it is classified as a highly sedentary, non-migratory resident that exhibits fine-scale localized movements or home-range shifts driven by weather, moisture availability, and fire regimes rather than broad seasonal shifts in elevation.
High Site Fidelity and Territorial Stability
Pelea capreolus forms stable harem groups and solitary territorial males that maintain fixed annual home ranges (averaging approximately 0.62 km2, though variations from 0.29 to 1.03 km2 occur depending on topography). Because neighboring territories feature minimal overlap (typically less than 10%), wide-scale altitudinal relocation across seasons is socially restricted.
Rather than changing elevation entirely, the species alters the intensity and extent of its space use within a set geographic bounds. For example, in eastern South Africa, summer home ranges can shrink to roughly half the size of winter home ranges because abundant forage eliminates the need to wander widely.
Localized Microclimate Adjustments
Instead of an overarching seasonal pattern, P. capreolus alters its use of elevation and slopes on a short-term, opportunistic basis in response to immediate meteorological events:
Precipitation Regimes: Observations show individuals remaining on plateau heights or upper slopes during periods of rain but descending locally into lower valleys or drainage slopes during dry periods to track moisture and unburned vegetation.
Thermoregulation and Topography: While their dense, woolly pelage protects them against sub-freezing alpine winter temperatures, juveniles are highly susceptible to hypothermia during wet or snowy weather. Herd movements typically trace local slope exposure and steep terrain to seek thermal shelter and refuge from predators rather than systematic elevational abandonment.
Diet and Fire Dynamics
As specialized browsers that heavily favor dicotyledons (often comprising 80–90% of their diet), their local movements are strongly tied to the phenology of woody shrubs, forbs, and post-fire resprouting. In ecosystems like the coastal Renosterveld or the Drakensberg montane grasslands, they will move locally to recently burned patches to access highly nutritious post-fire flush, irrespective of altitude.
Full References
Beukes, P. C. (1987). Responses of grey rhebuck and bontebok to controlled fires in coastal renosterveld. South African Journal of Wildlife Research, 17(3), 103–108.
Groves, C., & Grubb, P. (2011). Ungulate Taxonomy. Johns Hopkins University Press. (Section detailing Pelea capreolus biology and evolutionary position).
Kingdon, J. (1997). The Kingdon Field Guide to African Mammals. Academic Press. (pp. 397–398 note specific micro-movements on heights during rain vs. lower slopes during dry periods).
Mills, G., & Hes, L. (1997). The Complete Book of Southern African Mammals. Struik Publishers. (p. 274 notes the dietary shifts and localized ecology).
Oliver, M. D. N., Short, N. R. M., & Hanks, J. (1978). Population ecology of Orca, Grey Rhebuck and Mountain Reedbuck in the Natal Drakensberg. South African Journal of Wildlife Research, 8(2), 95–105. (Provides foundational home-range stability data for the Drakensberg region).
Wilson, D. E., & Mittermeier, R. A. (Eds.). (2011). Handbook of the Mammals of the World – Volume 2: Hoofed Mammals. Lynx Edicions. (Treatments on Pelea capreolus social dynamics, home range constriction in summer, and micro-habitat selectiveness).
END OF TRANSCRIPT FROM AI
Chatgpt
MY QUESTION
Describe the texture of the pelage of Pelea capreolus. Supply full references.
ANSWER FROM CHATGPT
The pelage of the grey rhebok, Pelea capreolus, is distinctive among southern African antelopes in being soft, dense, and distinctly woolly rather than sleek.
Descriptions from zoological and wildlife literature are remarkably consistent:
The coat is generally described as short and dense, with a grey to ash-grey coloration.
Authors who discuss its adaptation to montane environments emphasize that the coat is woolly, functioning as insulation against the cold, windy conditions of the highlands where the species is most abundant.
Modern accounts characterize the fur as soft and dense, contrasting with the harsher, coarser hair of many open-country antelopes.
The woolly quality is sufficiently pronounced that field observers often compare the animal’s appearance to a small mountain goat rather than to the sleek-bodied reedbucks with which it was historically associated. This fluffy texture contributes to the somewhat rounded outline of the body and neck.
In tactile terms, one would expect the coat to feel more like the underwool of a sheep or mountain goat than the smooth, glossy hair of an impala or gazelle. The individual hairs are not especially long, but their density and fine texture produce a felted, insulating surface. This is an adaptation to the cool upland grasslands and fynbos-covered mountains inhabited by the species.
References
Estes, R. D. 2012. The Behavior Guide to African Mammals: Including Hoofed Mammals, Carnivores, Primates. University of California Press, Berkeley. (Describes the coat as short, dense, and grey.)
Furstenburg, D. 2011. “Focus on the Grey Rhebok (Pelea capreolus).” SA Hunter 09056: 54–57. (Notes the species’ woolly coat and adaptation to montane environments.)
Nowak, R. M. 1999. Walker’s Mammals of the World, 6th ed. Johns Hopkins University Press, Baltimore. (Cited in later summaries of the species’ morphology and ecology.)
Taylor, A. & Skinner, J. D. 2006. “A review of the social organisation of mountain reedbuck, Redunca fulvorufula, and grey rhebok, Pelea capreolus, in relation to their ecology.” Transactions of the Royal Society of South Africa 61(1): 8–10.
For a concise physical description, the most informative phrase is probably: “a dense woolly grey coat adapted to cold montane conditions.”
Gemini
MY QUESTION
Describe the texture of the pelage of Pelea capreolus. Supply full references.
ANSWER FROM GEMINI
The pelage (fur) of Pelea capreolus—commonly known as the grey rhebok or grey rhebuck—possesses a unique texture that sets it apart from most other African antelopes.
Texture and Physical Characteristics
The texture of the grey rhebok’s pelage is characteristically soft, dense, and woolly (Plazi TreatmentBank, 2024; Ultimate Ungulate, 2024). Unlike the sleek, coarse, or bristly hair common to many tropical African bovids, the coat of Pelea capreolus feels thick and crisp, resembling the woolly texture of a sheep or a llama (South African Tourism, n.d.; World Atlas, 2018).
Dorsal Coat: The body is covered in a short, thick layer of pale grey or brownish-grey insulating fur (Plazi TreatmentBank, 2024; World Atlas, 2018).
Underparts: The hair on the underparts, inguinal region, and inner thighs transitions to a slightly softer, distinctly white or whitish texture (Plazi TreatmentBank, 2024).
Tail: The tail is notably bushy and fluffy, featuring a striking white underside that the animal flashes when alarmed (Ultimate Ungulate, 2024).
Evolutionary Purpose
This specialized woolly pelage is a crucial physiological adaptation to the animal’s high-altitude environment. Pelea capreolus is endemic to the steep, montane grasslands of Southern Africa—such as the Drakensberg mountain range—living at elevations typically ranging from 1,400 to 3,300 meters (Plazi TreatmentBank, 2024). Because winter temperatures in these alpine zones frequently drop below freezing, the dense, woolly texture of their fur serves as highly efficient insulation against the biting cold, frost, and high winds (Plazi TreatmentBank, 2024; World Atlas, 2018).
References
Plazi TreatmentBank. (2024, November 29). Pelea capreolus.
Citedtreatment.plazi.org
South African Tourism. (n.d.). To view the grey rhebok, visit either Table Mountain or the Karoo National Parks in the Cape, the Ukhahlamba Drakensberg Park in KawZulu Natal or private park options such as Samara and Schanskraal.
Citedsouthafrica.net
Ultimate Ungulate. (2024, August 19). Rhebok (Pelea capreolus) – Quick facts.
Citedultimateungulate.com
World Atlas. (2018, April 16). Unique species of Africa: The grey rhebok.
Citedworldatlas.com
Shift to stotting
Citedgettyimages.com.au
Citedgettyimages.com.au
Citedgettyimages.com.au
Citedgettyimages.com.au
Shift to Gazella subgutturosa
Citedgettyimages.com.au
Citedgettyimages.com.au
Citedgettyimages.com.au
Citedgettyimages.com.au
Excellent illustration of adaptive colouration:
Citedgettyimages.com.au
Worth reading:
CitedResearchGate
Cockrill (1974), states:
on page 239:
“The warble fly is absent from most of the countries where buffaloes [Bubalus] are kept, but even where Hypoderma spp. abound, and where buffaloes are bred, there are few reports of larval infestation of the buffalo.”
on page 304:
“Scarring, caused presumably by thorns or by horning, is said to be common in cattle hides, while parasite damage, e.g., by warble larvae, is almost nonexistent.”
on page 531:
“Warble infestation, Hypoderma bovis, which is widespread in cattle in Turkey, has never been observed in buffaloes.”
The spp. referred to are:
Bubalus bubalis (not Bubalus kerabau) https://www.inaturalist.org/observations?place_id=7183&subview=map&taxon_id=81925
CitedWikipedia 1·Wikipedia 2
Citedsciencedirect.com
My thoughts are as follows.
Firstly, I agree with these indigenous people that the parasitic larvae are actually a delicacy. This is an example of the degree to which human appetites are shaped culturally, as opposed to instinctively.
Secondly, I wonder a) how common such infestations are in R. tarandus, both wild and domestic, and b) how R. tarandus compares to other ungulates of the boreal/Arctic realm.
Thirdly, I wonder if R. tarandus has a reputation in the hunting industry in Canada and Russia, for disgusting infestations.
Chatgpt
MY QUESTION
Is Rangifer tarandus subject to infestation by warble flies or botflies? Supply full references.
ANSWER FROM CHATGPT
Yes. Rangifer tarandus is one of the classic hosts of warble flies (family Oestridae). In fact, it is parasitized by two highly specialized oestrid flies that have been studied for well over a century:
Hypoderma tarandi (the reindeer warble fly)
Cephenemyia trompe (the reindeer nose bot fly)
These flies are among the most important parasites of wild and domestic reindeer throughout northern Eurasia and North America.
Hypoderma tarandi
The adult female lays eggs on the hairs of reindeer during summer. After hatching, the larvae penetrate the skin and migrate through connective tissues before settling beneath the skin of the back, where they produce the characteristic “warbles” (subcutaneous swellings). Mature larvae emerge through breathing holes in spring, fall to the ground, and pupate.
Heavy infestations can cause:
reduced weight gain
reduced milk production
damage to hides
stress and altered behaviour
reduced condition during winter
Reindeer may respond to attacking flies by running, bunching together, or seeking windy ridges or snow patches, reducing feeding time during the short Arctic summer.
Cephenemyia trompe
This species deposits living first-instar larvae directly into the nostrils rather than laying eggs. The larvae migrate into the nasal passages and pharyngeal pouches, where they develop over winter before being sneezed out in spring to pupate on the ground.
Heavy infections may produce:
nasal irritation
respiratory distress
reduced feeding
lowered body condition
Ecological importance
Warble flies are sufficiently important that they influence:
habitat selection during summer
migration routes
daily activity patterns
energy expenditure
productivity of domestic reindeer husbandry
Avoidance of insect harassment is considered a major driver of summer behaviour in reindeer.
Key references
Anders Rehbinder (1990). Management of warble fly and nose bot fly in reindeer. Rangifer, Special Issue 3: 67–73.
Anders Rehbinderitologist”] & Peter Nikander husbandry). Swedish University of Agricultural Sciences.
Mauri Nieminen* Special Issue 15. (Reviews behavioural responses to oestrid flies.)
Samuel William Atkinson (2008). CSIRO Publishing. Chapter on Oestridae discusses Hypoderma tarandi and Cephenemyia trompe.
Roy C. Anderson (2000). Nematode Parasites of Vertebrates: Their Development and Transmission. 2nd ed. CABI Publishing. Although focused on nematodes, it summarizes the importance of insect parasites, including oestrids, in northern cervids.
Parasitic Diseases of Wild Mammals. Edited by William M. Samuel, Murray J. Pybus & A. Alan Kocan (2001). Iowa State University Press. Chapters on oestrid flies provide detailed accounts of Hypoderma tarandi and Cephenemyia trompe in reindeer and caribou.
These works collectively establish that Rangifer tarandus is one of the principal natural hosts of botflies worldwide, with both subcutaneous warble flies and nasal bot flies having evolved specifically to exploit this host.
END OF TRANSCRIPT FROM AI
Chatgpt
MY QUESTION
Rangifer tarandus is commercially hunted in Russia, Canada, and Alaska. Does this species have a reputation for having its living venison spoiled by maggots? Ignore the viewpoints of Inuit and other cultures indigenous to the habitat of R. tarandus. Supply full references.
ANSWER FROM CHATGPT
The answer appears to be no. Although Rangifer tarandus is notorious for carrying large numbers of living larvae (“warbles”) of the reindeer warble fly, there is no widespread reputation among commercial hunters, game biologists, or the venison industry in Russia, Canada, or Alaska that reindeer/caribou venison is characteristically spoiled by maggots while the animal is alive.
The distinction is important:
The “maggots” are almost always the larvae of the reindeer warble fly, Hypoderma (Oedemagena) tarandi.
These larvae develop beneath the skin, especially over the back, not in the musculature that constitutes venison.
They mainly reduce the value of the hide, cause irritation, and reduce body condition under heavy infestations. They are not generally regarded as rendering the meat unfit for sale or consumption.
Indeed, parasitologists repeatedly note that infestation is extraordinarily common:
Solomakha (1990) reported that almost all reindeer are infested, with burdens ranging from a few dozen to several hundred larvae, domestic animals often carrying heavier infections than wild ones.
Folstad et al. (1991) found a prevalence of 99.9% in Norwegian slaughtered reindeer.
Yet despite this near-universal infestation, the literature discusses consequences such as:
reduced hide quality,
reduced weight gain,
energetic costs,
behavioural effects from fly harassment,
veterinary treatment with ivermectin,
rather than spoilage of venison.
The closest statement from the North American wildlife literature is that:
“Warble fly infestation… depreciate[s] the value of the hide.”
The same report distinguishes this from another parasite, Cysticercus tarandi, which can contaminate muscles and thereby make meat unattractive for human consumption. Thus, when commercial meat quality is discussed, concern is directed more toward tapeworm cysts than toward warble larvae.
This distinction is reflected in pathology studies. For example, examinations of emaciated reindeer found averages of over 100 warble larvae per animal, but these were located in the skin and subcutaneous tissues rather than throughout the edible musculature.
Consequently, in the commercial hunting and harvesting literature from Alaska, Canada, and northern Eurasia, reindeer/caribou do not appear to have a reputation comparable to that of species in which myiasis directly ruins edible flesh. The reputation of Rangifer tarandus is instead one of:
extremely common warble-fly infestation,
damaged hides,
reduced condition,
intense summer harassment by adult flies,
but generally usable venison after normal dressing, provided other diseases or parasites are absent.
References
Anderson, J. R., & Nilssen, A. C. 1998. Do reindeer aggregate to reduce harassment by parasitic flies or to thermoregulate? Rangifer Special Issue. (Discusses effects of oestrid flies on reindeer behaviour.)
Dieterich, R. A., & Craigmill, A. L. 1990. “Safety, efficacy, and tissue residues of ivermectin in reindeer.” Rangifer 10: 53–56.
Folstad, I., Nilssen, A. C., Halvorsen, O., & Andersen, J. 1991. “Parasite avoidance: The cause of post-calving migrations in Rangifer?” Canadian Journal of Zoology 69: 2423–2429.
Nilssen, A. C., & Haugerud, R. E. 1994. “The timing and departure rate of larvae of the warble fly Hypoderma (=Oedemagena) tarandi and the nose bot fly Cephenemyia trompe from reindeer.” Rangifer 14: 113–122.
Solomakha, A. I. 1990. “Parasite-host relationships of warble fly (Oedemagena tarandi L.) and reindeer (Rangifer tarandus L.).” Rangifer 10 (Special Issue 3): 391–394.
Stien, A., et al. 2013. “Infestation by Hypoderma tarandi in reindeer calves from northern Finland—Prevalence and risk factors.” Veterinary Parasitology 197: 368–373.
Thomas, D. C. 1969. The Barren-Ground Caribou in Canada. Canadian Wildlife Service Report. Notes that warble flies chiefly depreciate the hide, whereas Cysticercus tarandi affects the appearance of the meat.
END OF TRANSCRIPT FROM AI
From the above, I infer the following.
The presence of maggots in the fresh carcase is not, in itself, a deterrent to the consumption of venison by non-indigenous hunters.
What gives the grey rhebok a disgusting reputation is the corruption of the flesh itself, owing to the tunnelling by larvae through the muscles themselves.
What remains to be considered is the effects of this corruption of the muscles on the speed and stamina of the grey rhebok, by comparison with typical ‘plains game’.
I suspect that the swellings on this specimen of Redunca redunca wardi show subcutaneous larvae of a botfly.







