Applied Ecology and Environmental Sciences
ISSN (Print): 2328-3912 ISSN (Online): 2328-3920 Website: https://www.sciepub.com/journal/aees Editor-in-chief: Alejandro González Medina
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Applied Ecology and Environmental Sciences. 2023, 11(3), 104-112
DOI: 10.12691/aees-11-3-5
Open AccessArticle

Assessment of the Population Status of Three Primate Species in Jaibui Island, Pujehun District, Southern Sierra Leone

Prince T. Mabey1, , Ambrose Bockarie Kanneh2, 3, Rosa M. Garriga2, Inza Koné4, 5 and Abu J. Sundufu6

1Institute of Environmental Management and Quality Control, School of Environmental Science, Njala University

2Department of Conservation Research, Tacugama Chimpanzee Sanctuary, Freetown Sierra Leone

3Université Félix Houphouët-Boigny – WABES/SPIBES -African Center of Excellence, Pôle Scientifique d'Innovation (22 BP 463, Abidjan 22 Côte d'Ivoire

4Centre Suisse de Recherches Scientifiques en Côte d’Ivoire 01 BP 1303 Abidjan 01, Côte d’Ivoire

5Université Félix Houphouët-Boigny – WABES/SPIBES -African Center of Excellence, Pôle Scientifique d'Innovation (22 BP 463, Abidjan 22 Côte d'Ivoire.

6Department of Crop Protection, School of Agriculture, Njala University

Pub. Date: November 06, 2023

Cite this paper:
Prince T. Mabey, Ambrose Bockarie Kanneh, Rosa M. Garriga, Inza Koné and Abu J. Sundufu. Assessment of the Population Status of Three Primate Species in Jaibui Island, Pujehun District, Southern Sierra Leone. Applied Ecology and Environmental Sciences. 2023; 11(3):104-112. doi: 10.12691/aees-11-3-5

Abstract

Primates’ conservation had faced enormous challenge due to human activities altering ecosystems, combined with inadequate data and existing knowledge gap on their site-specific population size, distribution and trends, threats, climate change impact, human-primate interactions, detailed population recovery plans and strategic monitoring programs. This study examines the species population status (i.e., density, abundance, and geographic distribution) of Pan troglodytes verus (Western chimpanzee), Cercopithecus diana (Diana Monkey) and Colobus polykomos (Black and White Colobus) in a 12.5km2 Forested Island in Pujehun District, Southern, Sierra Leone. The Standing Crop Nest Count (SCNC) method was adopted for the chimpanzee nest count along systematically placed linear line transects for estimation of chimpanzee population. Direct encounter-based technique was carried out along the same transects to account for the population of Diana Monkey and Black and White Colobus. The monkey groups were detected from their vocalization, direct sighting, and the shaking of tree branches during their movement, feeding and other activities. A Compass and Geographical Positioning System (GPS) were used for navigation and a binocular was used to aid in the proper identification of monkey species. Data were entered into Excel tables and encounter rates and other findings were derived. Data from the transect survey were analyzed using QGIS 3.22.0, Excel, and the Distance 7.3 software. A total of 40 chimpanzee nests were detected on 12 transects and the species density of chimpanzee in was 0.25chimpanzee/km2. The species density of Western Black-and-white Colobus within the study area was 57.75/km2 and with an encounter rate of 0.51/km, and 0.89 (signs/km). The encounter rate for the Diana Monkey was 0.37/km2. There were more wildlife direct sightings and signs in areas where less human activities and disturbances were recorded. It is recommended that less human activities be maintained coupled with regular monitoring programs be implemented for adaptive management and conservation of primates in Sierra Leone

Keywords:
primates human activities habitat ecosystem Jaibui Island

Creative CommonsThis work is licensed under a Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/

References:

[1]  Handl, G., Deutsch, E., & Law, I. (2012). Historical Archives-Introductory Note-Declaration of the United Nations Conference on the Human Environment (Stockholm Declaration), 1972 and the Rio Declaration on Environment and Development, 1992-English, 1–11. United Nations Audiovisual Library of International Law.
 
[2]  Sih, A. (2013). Understanding variation in behavioural responses to human-induced rapid environmental change: a conceptual overview. Animal Behaviour, 85(5), 1077-1088.
 
[3]  Díaz, S., Settele, J., Brondízio, E. S., Ngo, H. T., Agard, J., Arneth, A., ... & Zayas, C. N. (2019). Pervasive human-driven decline of life on Earth points to the need for transformative change. Science, 366(6471), eaax3100.
 
[4]  Dirzo, R., Young, H. S., Galetti, M., Ceballos, G., Isaac, N. J., & Collen, B. (2014). Defaunation in the Anthropocene. science, 345(6195), 401-406.
 
[5]  Bersacola, E., Hill, C. M., & Hockings, K. J. (2021). Chimpanzees balance resources and risk in an anthropogenic landscape of fear. Scientific Reports, 11(1), 4569.
 
[6]  Plumptre, A. J., Baisero, D., Belote, R. T., Vázquez-Domínguez, E., Faurby, S., Jȩdrzejewski, W., ... & Boyd, C. (2021). Where might we find ecologically intact communities?. Frontiers in Forests and Global Change, 4, 26.
 
[7]  Halpern, B. S., Walbridge, S., Selkoe, K. A., Kappel, C. V., Micheli, F., d'Agrosa, C., ... & Watson, R. (2008). A global map of human impact on marine ecosystems. science, 319(5865), 948-952.
 
[8]  Parmesan, C., & Yohe, G. (2003). A globally coherent fingerprint of climate change impacts across natural systems. nature, 421(6918), 37-42.
 
[9]  Boyle, S. A., & Smith, A. T. (2010). Can landscape and species characteristics predict primate presence in forest fragments in the Brazilian Amazon?. Biological Conservation, 143(5), 1134-1143.
 
[10]  Estrada, A., Garber, P. A., Rylands, A. B., Roos, C., Fernandez-Duque, E., Di Fiore, A., ... & Li, B. (2017). Impending extinction crisis of the world’s primates: Why primates matter. Science advances, 3(1), e1600946.
 
[11]  Marsh, L. K., Chapman, C. A., & Arroyo-Rodríguez, V. (2013). Primates in fragments. Primates in fragments: Ecology and conservation, 6-7.
 
[12]  Spaan, K. M., van Noordenburg, C., Plassmann, M. M., Schultes, L., Shaw, S., Berger, M., ... & Benskin, J. P. (2020). Fluorine mass balance and suspect screening in marine mammals from the Northern Hemisphere. Environmental Science & Technology, 54(7), 4046-4058.
 
[13]  IPBES, 2019. Summary for policymakers of the global assessment report on biodiversity and ecosystem services of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services. IPBES secretariat, Bonn, Germany. 56 pp.
 
[14]  Tordoff, A. W., Baltzer, M. C., Fellowes, J. R., Pilgrim, J. D., & Langhammer, P. F. (2012). Key biodiversity areas in the Indo-Burma hotspot: process, progress and future directions. Journal of Threatened Taxa, 2779-2787.
 
[15]  Tran, D.V. and Tien Vu, T., 2020. Combining species distribution modeling and distance sampling to assess wildlife population size: A case study with the northern yellow‐cheeked gibbon (Nomascus annamensis). American Journal of Primatology 2020; e23169.
 
[16]  Supriatna, J., Shekelle, M., Fuad, H. A., Winarni, N. L., Dwiyahreni, A. A., Farid, M. ... & Zakaria, Z. (2020). Deforestation on the Indonesian island of Sulawesi and the loss of primate habitat. Global Ecology and Conservation, 24, e01205.
 
[17]  Humle, T., Maisels, F., Oates, J. F., Plumptre, A., & Williamson, E. A. (2016). Pan troglodytes (errata version published in 2018).
 
[18]  Korstjens, A. H., & Hillyer, A. P. (2016). Primates and climate change: A review of current knowledge. An introduction to primate conservation, 175-192.
 
[19]  Koné, I., McGraw, S., Gonedelé Bi, S., and Oates, J.F., 2019. Cercopithecus diana. The IUCN Red List of Threatened Species, 1-11pp.
 
[20]  Gonedelé Bi, S., Koné, I., Matsuda Goodwin, R., Alonso, C., Hernansaiz, A., & Oates, J. F. (2020). Colobus polykomos. The IUCN red list of threatened species 2020: e. T5144A17944855.
 
[21]  Crooks, K. R., Burdett, C. L., Theobald, D. M., King, S. R., Di Marco, M., Rondinini, C., & Boitani, L. (2017). Quantification of habitat fragmentation reveals extinction risk in terrestrial mammals. Proceedings of the national Academy of Sciences, 114(29), 7635-7640.
 
[22]  Gibson, L., Lynam, A. J., Bradshaw, C. J., He, F., Bickford, D. P., Woodruff, D. S. ... & Laurance, W. F. (2013). Near-complete extinction of native small mammal fauna 25 years after forest fragmentation. Science, 341(6153), 1508-1510.
 
[23]  Chapman, C. A., Bonnell, T. R., Gogarten, J. F., Lambert, J. E., Omeja, P. A., Twinomugisha, D., ... & Rothman, J. M. (2013). Are primates ecosystem engineers?. International Journal of Primatology, 34, 1-14.
 
[24]  IUCN, 2020. Regional action plan for the conservation of western chimpanzees (Pan troglodytes verus) 2020–2030. SSC Primate Specialist Group, Gland, Switzerland: IUCN.
 
[25]  McLennan, M. R., Spagnoletti, N., & Hockings, K. J. (2017). The implications of primate behavioral flexibility for sustainable human–primate coexistence in anthropogenic habitats. International Journal of Primatology, 38, 105-121.
 
[26]  Brncic, T.M., Amarasekaran, B., and McKenna, A., 2010. Final report of the Sierra Leone National Chimpanzee Census Project, Tacugama Chimpanzee Sanctuary, Freetown, Sierra Leone, 118pp.
 
[27]  Kühl, H. S., Sop, T., Williamson, E. A., Mundry, R., Brugière, D., Campbell, G. ... & Boesch, C. (2017). The Critically Endangered western chimpanzee declines by 80%. American Journal of Primatology, 79(9), e22681.
 
[28]  Inter-états de Lutte, C. P. contre la Sécheresse dans le Sahel (CILSS). Landscapes of West Africa—a window on a changing world. Ouagadougou, Burkina Faso: CILSS; 2016.
 
[29]  Garriga, R. M., Marco, I., Casas-Díaz, E., Acevedo, P., Amarasekaran, B., Cuadrado, L., and Humle, T., 2019. Factors influencing wild chimpanzee (Pan troglodytes verus) relative abundance in an agriculture-swamp matrix outside protected areas. PloS one, 14(5), e0215545.
 
[30]  Wich, S. A., & Marshall, A. J. (Eds.). (2016). An introduction to primate conservation. Oxford University Press.
 
[31]  Klop, E., Lindsell, J. A. and Siaka, A. 2008. Biodiversity of Gola Forest, Sierra Leone. Royal Society for the Protection of Birds, Conservation Society of Sierra Leone, Government of Sierra Leone.
 
[32]  Thomas, L., Buckland, S. T., Rexstad, E. A., Laake, J. L., Strindberg, S., Hedley, S. L., & Burnham, K. P. (2010). Distance software: design and analysis of distance sampling surveys for estimating population size. Journal of Applied Ecology, 47(1), 5-14.
 
[33]  Buckland, S. T., Rexstad, E. A., Marques, T. A., & Oedekoven, C. S. (2015). Distance sampling: methods and applications (Vol. 431). New York: Springer.
 
[34]  Kouakou, C. Y., Boesch, C., & Kuehl, H. (2009). Estimating chimpanzee population size with nest counts: validating methods in Taï National Park. American Journal of Primatology: Official Journal of the American Society of Primatologists, 71(6), 447-457.
 
[35]  Tutin, C. E., & Fernandez, M. (1984). Nationwide census of gorilla (Gorilla g. gorilla) and chimpanzee (Pan t. troglodytes) populations in Gabon. American journal of Primatology, 6(4), 313-336.
 
[36]  Blom, A., Van Zalinge, R., Heitkönig, I. M., & Prins, H. H. (2005). Factors influencing the distribution of large mammals within a protected central African forest. Oryx, 39(4), 381-388.
 
[37]  Araldi, A., Barelli, C., Hodges, K., & Rovero, F. (2014). Density estimation of the endangered Udzungwa red colobus (Procolobus gordonorum) and other arboreal primates in the Udzungwa Mountains using systematic distance sampling. International Journal of Primatology, 35, 941-956.
 
[38]  Fragoso, J. M., Levi, T., Oliveira, L. F., Luzar, J. B., Overman, H., Read, J. M., & Silvius, K. M. (2016). Line transect surveys underdetect terrestrial mammals: implications for the sustainability of subsistence hunting. PloS one, 11(4), e0152659.
 
[39]  Whitesides, G. H., Oates, J. F., Green, S. M., & Kluberdanz, R. P. (1988). Estimating primate densities from transects in a West African rain forest: a comparison of techniques. The Journal of Animal Ecology, 345-367.
 
[40]  Refisch, J., & Koné, I. (2005). Impact of commercial hunting on monkey populations in the Taï region, Côte d'Ivoire 1. Biotropica: The Journal of Biology and Conservation, 37(1), 136-144.
 
[41]  Plumptre, A. J., & Cox, D. (2006). Counting primates for conservation: primate surveys in Uganda. Primates, 47(1), 65-73.
 
[42]  Garriga, R. M. (2012). Camera Trap Survey in the Western Area Peninsular Forest Reserve, Sierra Leone.
 
[43]  Molina‐Vacas, G., Muñoz‐Mas, R., Amarasekaran, B., & Garriga, R. M. (2023). Reaffirming the Loma Mountains National Park in Sierra Leone as a critical site for the conservation of West African chimpanzee (Pan troglodytes verus). American Journal of Primatology, 85(4), e23469.
 
[44]  Carvalho, J. S., Stewart, F. A., Marques, T. A., Bonnin, N., Pintea, L., Chitayat, A... & Piel, A. K. (2022). Spatio‐temporal changes in chimpanzee density and abundance in the Greater Mahale Ecosystem, Tanzania. Ecological Applications, 32(8), e2715.
 
[45]  Kifle, Z., & Bekele, A. (2022). Dietary ecology of the southern gelada (Theropithecus gelada obscurus) living in an afroalpine ecosystem of the borena sayint national Park, Wollo, Ethiopia. Global Ecology and Conservation, 34, e02018.
 
[46]  Yazezew, D., Bekele, A., Fashing, P. J., Nguyen, N., Moges, A., Ibrahim, H., ... & Mekonnen, A. (2022). Population size and habitat preference of the Omo River guereza (Colobus guereza guereza) in a multi-habitat matrix in the central highlands of Ethiopia. Primates, 63(2), 151-160.
 
[47]  Thomas, S.C. (1991). Population densities and patterns of habitat use among anthropoid primates of the Ituri Forest, Zaire. Biotropica 23: 68-83.
 
[48]  Plumptre, A. J., & Reynolds, V. (1994). The effect of selective logging on the primate populations in the Budongo Forest Reserve, Uganda. Journal of Applied Ecology, 631-641.
 
[49]  Garriga, C. (2019). Optimal fiscal policy in overlapping generations models. Public Finance Review, 47(1), 3-31.
 
[50]  Plumptre, A. J., Sterling, E. J., & Buckland, S. T. (2013). Primate census and survey techniques. Primate ecology and conservation: A handbook of techniques, 10-26.
 
[51]  Klop, E., Lindsell, J. A., & Siaka, A. (2008). Biodiversity of Gola Forest, Sierra Leone. Royal Society for the Protection of Birds, Conservation Society of Sierra Leone, Government of Sierra Leone.
 
[52]  Form, G. A., & America, S. Black-and-white colobus monkey (Colobus vellerosus).
 
[53]  Cavada, N., Barelli, C., Ciolli, M., & Rovero, F. (2016). Primates in human-modified and fragmented landscapes: the conservation relevance of modelling habitat and disturbance factors in density estimation. PLoS One, 11(2), e0148289.
 
[54]  Linder, J. M., Cronin, D. T., Ting, N., Abwe, E. E., Davenport, T. R., Detwiler, K., & Struhsaker, T.T. (2021). Red colobus (Piliocolobus) conservation action plan 2021–2026. IUCN: Gland, Switzerland.
 
[55]  Refisch, J., & Koné, I. (2005). Impact of commercial hunting on monkey populations in the Taï region, Côte d'Ivoire 1. Biotropica: The Journal of Biology and Conservation, 37(1), 136-144.
 
[56]  Korstjens, A. H., & Hillyer, A. P. (2016). Primates and climate change: A review of current knowledge. An introduction to primate conservation, 175-192.
 
[57]  Estrada, A., Garber, P. A., & Chaudhary, A. (2020). Current and future trends in socio-economic, demographic and governance factors affecting global primate conservation. PeerJ, 8, e9816.
 
[58]  Moraes, B., Razgour, O., Souza-Alves, J. P., Boubli, J. P., & Bezerra, B. (2020). Habitat suitability for primate conservation in north-east Brazil. Oryx, 54(6), 803-813.
 
[59]  Strindberg, S., Maisels, F., Williamson, E. A., Blake, S., Stokes, E. J., Aba’a, R., & Wilkie, D. S. (2018). Guns, germs, and trees determine density and distribution of gorillas and chimpanzees in Western Equatorial Africa. Science advances, 4(4), eaar2964.