Observation of an Atypical Hairless Free-Ranging Individual of Grivet Monkey (Chlorocebus aethiops), at Wondo Genet Patch of Forest, Southern Ethiopiaorocebus aethiops) at Wondo Genet forest in Ethiopia, East Africa.

Authors

  • Yosef Mamo
  • Yitayal Alemu
  • Addisu Asefa

DOI:

https://doi.org/10.20372/9a8smn94

Keywords:

Alopecia; Ethiopia; feeding; monkey; primate; Wondo Genet.

Abstract

This study documents the observation of a highly unusual hairless female grivet monkey (Chloro- cebus aethiops) at Wondo Genet College of Forestry and Natural Resources Campus, Ethiopia,

a phenomenon not previously documented in free-ranging populations in the region. Follow- ing an initial report from local community members of a “strange looking” monkey, systematic field observations were conducted over a six-month period at two-week intervals to assess the individual’s morphology, behavior, and interactions with conspecifics. The monkey displayed almost complete hairlessness, except for a small tuft on the tail, and weighed approximately

1.5 kg, substantively less than typical adults. Additionally, irregular white patches of depig- mentation were present on the upper left flank, with no signs of dermal irritation or lesions. Behavioral observations revealed distinctly atypical foraging and social patterns. Unlike other troop members, the individual primarily foraged near office and training areas, avoided res- idential zones, and rarely engaged in grooming or close social interactions. Other monkeys initially avoided it, though selective tolerance from one adult male was occasionally noted. The hairless individual exhibited thermoregulatory behaviors, such as lying on sun-warmed rooftops during cooler mornings, presumably to mitigate cold stress due to the absence of fur. The findings suggest that common causes of hair loss, including infection, nutrition, stress, or over-grooming, are implausible explanations. Instead, hairlessness likely stems from an under- lying genetic mutation or immunological dysfunction. This case underscores the importance of detailed documentation of rare morphological anomalies in wild primates; as these condi- tions may influence individual survival, social integration, and adaptive behaviors within both natural and human-modified environments.

References

Beisner, A. A., & Isbell, L. A. (2009). Factors influencing hair loss among female captive rhesus macaques (macaca mulatta). Applied Animal Behaviour Science, 119(1–2), 91–100.

Beisner, B. A., & Isbell, L. A. (2008). Ground substrate affects activ- ity budgets and hair loss in outdoor captive groups of rhe- sus macaques macaca mulatta. American Journal of Pri- matology, 70, 1160–1168.

Butynski, T. M., & De Jong, Y. A. (2022). Primates of northeast africa: Pocket identification guide.

Butynski, T. M., & De Jong, Y. A. (2025). Chlorocebus aethiops (tech. rep.) (e.T253498283A258769289). The IUCN Red List of

Threatened Species. https://dx.doi.org/10.2305/IUCN. UK.2025-1.RLTS.T253498283A258769289.en

Butynski, T. M., Mekonnen, A., & De Jong, Y. A. (2022). Chlorocebus djamdjamensis ssp. harennaensis (tech. rep.) (e.T205910110A205910458). The IUCN Red List of

Threatened Species.

De Jong, Y. A., Mekonnen, A., & Butynski, T. M. (2022). Chlorocebus djamdjamensis ssp. djamdjamensis (tech. rep.) (e.T205910256A205910259). The IUCN Red List of

Threatened Species.

Diani, A. R., Shull, K. L., Zaya, M. J., & Brunden, M. N. (1995). The penetration enhancer SEPA augments stimulation of scalp hair growth by topical minoxidil in the balding stumptail macaques. Skin Pharmacology, 8, 221–228.

Fashing, P. J., Nguyen, N., Burke, R., Mekonnen, A., & Gippoliti,

S. (2019). Theropithecus gelada ssp. gelada (tech. rep.) (e.T136849A17982784). The IUCN Red List of Threat- ened Species.

Girma, Z., Mamo, Y., & Ersado, M. (2012). Species composition, distribution and relative abundance of large mammals in and around Wondo Genet patch of forest, southern ethiopia. Asian Journal of Applied Sciences, 5(8), 538–551.

Institute, P. R. (2002). Guide for the care and use of laboratory pri- mates. Kyoto University.

IUCN. (2025). The IUCN red list of threatened species: Chlorocebus aethiops – published in 2025. https://dx.doi.org/10.2305/ IUCN.UK.2025-1.RLTS.T253498283A258769289.en2

Jenkins, A. (2015). Meet Umlalazi nature reserves’s hairless vervet monkey. Zululand Observer.

Kawai, M., & Ohsawa, H. (1983). Ecology of japanese monkeys. In

S. C. of Japan (Ed.), Recent progress of nature science in japan (pp. 95–108). Science Council of Japan.

Lutz, C. K. (2021). Effect of pregnancy and age on alopecia in adult female baboons (papio hamadryas spp). Journal of the American Association for Laboratory Animal Science, 60(4), 484–488.

Martin, E. S., & Elewski, B. E. (2003). Tinea capitis in adult women masquerading as bacterial pyoderma. Journal of the Amer- ican Academy of Dermatology, 49, 177–179.

Novak, M. A., & Meyer, J. S. (2009). Alopecia: Possible causes and treatments, particularly in captive nonhuman primates. Comparative Medicine, 59(1), 18–26.

Otberg, N., Finner, A. M., & Shapiro, J. (2007). Androgenetic alope- cia. Endocrinology and Metabolism Clinics of North Amer- ica, 36, 379–398.

Ovadia, S., Wilson, S. R., & Zeiss, C. J. (2005). Successful cy- closporine treatment for atopic dermatitis in a rhesus monkey macaca mulatta. Comparative Medicine, 55, 192– 196.

Reinhardt, V., Reinhardt, A., & Houser, D. (1986). Hair pulling and eating in captive rhesus monkey troops. Folia Primatolog- ica, 47, 158–164.

Rushton, D. H. (2002). Nutritional factors and hair loss. Clinical and Experimental Dermatology, 27, 396–404.

Thom, E. (2016). Stress and the hair growth cycle: Cortisol-induced hair growth disruption. Journal of Drugs in Dermatology, 15(8), 1001–1004.

Wallis, J. (2023). Conservation status of african primates: Updates to the IUCN red list for 2020-2023. African Primates, 17, 1–49.

Wiedemeyer, K., Schill, W. B., & Loser, C. (2004). Diseases on hair follicles leading to hair loss, part I: Nonscaring alopecias. Skinmed, 3, 209–214.

Zhang, P. (2011). A non-invasive study of alopecia in japanese macaques macaca fuscata. Current Zoology, 57(1), 26–35.

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Published

2025-12-31

How to Cite

Mamo, Y., Alemu, Y. ., & Asefa, A. . (2025). Observation of an Atypical Hairless Free-Ranging Individual of Grivet Monkey (Chlorocebus aethiops), at Wondo Genet Patch of Forest, Southern Ethiopiaorocebus aethiops) at Wondo Genet forest in Ethiopia, East Africa. Journal of Forestry and Natural Resources, 4(2), 53-60. https://doi.org/10.20372/9a8smn94

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