Nutritional diversity and economic value of baobab (Adansonia digitata L) root tubers and leaf production

Keywords: baobab, economic value, leaf vegetables, nutritional value, root tubers

Abstract

Aim of study: Baobab (Adansonia digitata L) is a deciduous indigenous fruit tree that belongs to the family of Malvaceae. A study was conducted to investigate the nutritional value diversity and economic value for baobab root tubers and leaf production.

Area of study: The study was conducted in Mangochi district, located in the Southern Region of Malawi.

Material and methods: Seeds of baobab were pre-treated and planted in trial plots. The planting was subjected to three treatment factors (season, site, and type of soil). After harvesting, both fresh and dried baobab root tubers and leaves were subjected to nutritional analysis at the Malawi Bureau of Standards (MBS) laboratory in Blantyre, Malawi. Gross profit analysis (GPA) was performed to calculate the following profitability indicators: profit, return on investment (ROI), and net profit margin (NPM).

Main results: The results indicate that there were significant (p < 0.001) differences in nutritional values (energy, carbohydrates, protein, magnesium, and potassium) between fresh root tubers and fresh leaves. Fresh root tubers had higher nutritional content in energy and carbohydrates than fresh leaves, while fresh leaves had higher nutritional content in proteins, magnesium, and potassium. On the other hand, there were no significant (p > 0.05) differences in iron, lead, and cadmium between fresh root tubers and fresh leaves. The same trend was observed in dried root tubers and dried leaves. However, dried root tubers and dried leaves had higher nutritional values compared to their corresponding fresh nutrients. Furthermore, baobab root tubers and leaf production were viable with an estimated annual profit of about MK1 million (US$1.2 thousand), a positive rate of return on investment (38.5%), and a positive net profit margin (27.8%) per hectare.

Research highlights: The study recommends that baobab root tubers and leaves whether dried or fresh are safe to eat and they are nutritious. Additionally, baobab tubers and leaf vegetables have great potential to be introduced as cash crops among communities in Malawi and the surrounding region.

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References

Amos N, 2018. Value chain analysis of baobab products for improved marketing and sustainability of their trade in Malawi. MSc Thesis, Mzuzu University, Mzuzu, Malawi.

Asogwa IS, Ibrahimb AN, Agbakac JI, 2021. African baobab: Its role in enhancing nutrition, health, and the environment. Trees For People 3, 100043. https://doi.org/10.1016/j.tfp.2020.100043

Assogbadjo AE, Kakaï RG, Vodouhê FG, Djagoun CAMS, Codjia JTC, Sinsin B, 2012. Biodiversity and socioeconomic factors supporting farmers’ choice of wild edible trees in the agroforestry systems of Benin (West Africa). For Policy Econ. 14(1), 41-49.

Bamalli Z, Mohammed AS, Ghazali HM, Karim R, 2014. Baobab Tree (Adansonia digitata L.) Parts: Nutrition, Applications in Food and Uses in Ethno-medicine – A Review. Ann Nutr Disords Ther. 1(3), 1011.

Banerjee AV, 2020. Field Experiments and the Practice of Economics. Am. Econ. Rev. 110(7): 1937-51. https://doi.org/0.1257/aer.110.7.1937

Belice T, Yuksel A, Akcicek F, 2020. Importance of Dried Fruits and Vegetables in the Older Adults. Eur J Geriatr Gerontol 2(2), 28-35.

Bonneville J, Olivier A, Demers N, 2007. Nouer des liens entre recherche en agroforesterie et le développement au Sahel. Groupe interdisciplinaire de recherche en agroforesterie (GIRAF), Université Laval - World Agroforestry Centre (ICRAF – WCA). Acte du colloque régional - Bamako – Quebec. 14-15 Février 2007.

Boukari M, 2001. Factors associated with palmoplantar or plantar pompholyx: a case-control study. https://doi.org/10.3390/23123104

Buchmann C, Prehsler S, Hartl A, Vogl CR, 2010. The Importance of Baobab (Adansonia digitata L.) in Rural West African Subsistence—Suggestion of a Cautionary Approach to International Market Export of Baobab Fruits. Ecol. Food Nutr. 49(3), 145-172. https://doi.org/10.1080/03670241003766014

Chadare FJ, Linnemann AR, Hounhouigan JD, Nout MJR, Van Boekel MAJS, 2009. Baobab food products: a review on their composition and nutritional value. Crit. Rev. Food Sci. Nutr. 49(3), 254-274.

Daniel WW, Cross CL, 2013. Biostatistics: A foundation for analysis in the health sciences. 10th Edition. Wiley: New York.

Dhehibi IA, Aymen AH, 2016. Growth in Total Factor Productivity in the Egyptian Agriculture Sector: Growth Accounting and Econometric Assessments of Sources of Growth. 2016. https://doi.org/10.5539/sar.v5n1p38

Dindi H, 2018. Developing best agro-ecological practices for African baobab tree Adansonia digitata L. leaves production in smallholders farming systems in Benin. PhD Thesis, University of Abomey.

Diop AG, Sakho M, Dornier M, Cisse M, Reynes M, 2006. Le baobab africain (Adansonia digitata L.): principales caractéristiques et utilisations. Fruits 61, 55-69.

Florkowski WJ, Shewfelt RL, Brueckner B, Prussia SE, 2009. Postharvest handling: A systems approach. 2nd Ed. Academic Press.

Franzel S, Akinnifesi FK, Ham C, 2008. Setting priorities among indigenous fruit tree species in Africa: examples from southern, eastern and western Africa regions. Indigenous fruit trees in the tropics: domestication, utilization and commercialization. CAB International, Wallingford, UK, in association with the World Agroforestry Centre, Nairobi, Kenya, pp.1-27.

Government of Malawi, 2018. Census report, Malawi population, and housing census main report.

Hardcastle PD, 1978. A Preliminary Silvicultural Classification of Malawi. Forest Research Institute of Malawi, Zomba, Malawi.

Hordofa AT, Leta OT, Alamirew T, Chukalla AD, 2022. Spatiotemporal Trend Analysis of Temperature and Rainfall over Ziway Lake Basin, Ethiopia. Hydrology 9, 2. https://doi.org/10.3390/hydrology9010002

Hutton M, Kingdom U, 1987. Human health concerns of lead, mercury, cadmium, and arsenic. London: United Kingdom.

IFAD, 2011. Enabling poor rural people to overcome poverty in Kenya. International Fund for Agricultural Development, Rome, Italy.

Jagodziński AM, Dyderski M, Rawlik K, Kątna B, 2016. Seasonal variability of biomass, total leaf area and specific leaf area of forest understory herbs reflects their life strategies. For. Ecol. Manage. 374, 71-81.

Jamnadass RH, Dawson IK, Franzel S, Leakey RRB, Mithöfer D, Akinnifesi FK, Tchoundjeu Z, 2011. Improving livelihoods and nutrition in sub-Saharan Africa through the promotion of indigenous and exotic fruit production in smallholders’ agroforestry systems: a review. Int. For. Rev. 13(3), 338-354.

Jansen L, Darr D, Hansohm N, Gebauer J, Meinhold K, Munthali CRY, Wichern F, 2020. Variation in baobab (Adansonia digitata L.) root tuber development and leaf number among different growth conditions for five provenances in Malawi. J. Agric. Rural Dev. Trop. Subtrop. 121(2), 161-172.

Joyanes M, Lema L, 2006. Criteria for Optimizing Food Composition Tables in Relation to Studies of Habitual Food Intakes. Critical Reviews in Food Science and Nutrition, 46(4), 329-336. https://doi.org/10.1080/10408390600688156

Kaboré D, Sawadogo-Lingani H, Diawara B, Compaoré CS, Dicko MH, Jakobsen M, 2011. A review of baobab (Adansonia digitata) products: Effect of processing techniques, medicinal properties and uses. Afr. J. Food Sci. 5(16), 833-844. https://doi.org/10.5897/AJFSX11.004

Kalaba FK, Chirwa PW, Prozesky H, 2009. The contribution of indigenous fruit trees in sustaining rural livelihoods and conservation of natural resources. J. Hortic. For. 1, 1-6.

Kamanula M, Munthali CRY, Dziwapo A, Kamanula JF, 2018. Mineral and phytochemical composition of baobab (Adansonia digitata L) root tubers from selected natural populations of Malawi. Malawi Med. J. 30(4), 250-255. https://dx.doi.org/10.4314/mmj.v30i4.7

Kamatou GPP, Vermaak I, Viljoen AM, 2011. An updated review of Adansonia digitata: A commercially important African tree. S. Afr. J. Bot. 77, 908-919.

Kapoor S, Bhardwaj DR, Sharma P, Kumar D, Kumar NM, Singh AK, 2023. Agroforestry as an alternative to forest for diversified benefits and biodiversity conservation. ICFRE-Tropical Forest Research Institute, 10(8), 1-7.

Kiremire BT, 2010. Effects of vegetable drying techniques on nutrient content: a case study of south-western Uganda. Afr. J. Food Agric. Nutr. Dev. 10(5).

Komane BM, Vermaak I, Kamatou GPP, Summers B, Viljoen AM, 2017. Beauty in Baobab: a pilot study of the safety and efficacy of Adansonia digitata L. seed oil. Braz. J. Pharmacogn. 27, 1-8. http://dx.doi.org/10.1016/j.bjp.2016.07.001

Madzhi NK, Akhsan MAN, 2021. Control of Plant Growth by Monitoring Soil Moisture, Temperature and Humidity in Dry Climate. IOP Conf. Ser.: Mater. Sci. Eng. 1192(1): 012027

Mango N, Mapemba L, Tchale H, Makate C, Dunjana N, Lundy M, 2015. Comparative analysis of tomato value chain competitiveness in selected areas of Malawi and Mozambique. Cogent Econ. Financ. 3(1):1088429.

Martinez KA, Fridley JD, 2018. Acclimation of leaf traits in seasonal light environments: Are non-native species more plastic? J. Ecol. 106, 2019-2030.

Monteiro S, Reboredo FH, Lageiro MM, Lourenço VM, Dias J, Lidon F, Abreu M, Martins APL, Alvarenga N, 2022. Nutritional Properties of Baobab Pulp from Different Angolan Origins. Plants, 11, 2272. https://doi.org/10.3390/plants11172272

Moore DR, Volterman KA, Obeid J, Offord EA, Timmons BW, 2014. Postexercise protein ingestion increases whole body net protein balance in healthy children. J. Appl. Physiol. 117, 1493-1501.

Munthali CRY, Chirwa PW, Akinnifesi FK, 2012. Genetic variation among and within provenances of Adansonia digitata L. (Baobab) in seed germination and seedling growth from selected natural populations in Malawi. Agrofor. Syst. 86, 419-431.

Munyebvu F, 2011. Abundance, structure and uses of baobab (Adansonia digitata L) populations in Omusati region. PhD Thesis, University of Namibia, Namibia.

National Institute of Safety and Health, 2018. Monitoring health for sustainable development goals.

Nordeide MB, Hatloy A, Folling M, Lied E, Osbaug A, 2006. Nutrient composition and nutritional importance of green leaves and wild food resources in an agricultural district, Koutiala, in Southern Mali. Int. J. Food Sci. Nutr. 47, 455-468.

Nyalugwe EP, Malidadi C, Kabuli H, 2022. An assessment of tomato production practices among rural farmers in major tomato growing districts in Malawi. Afr. J. Agric. Res. 18(3), 194-206.

Ofori H, Addo A, Dzisi KA, Bart-Plange A, 2023. A review of baobab (Adansonia digitata) fruit processing as a catalyst for enhancing wealth and food security. J. Ghana Inst. Eng. 23:2. https://doi.org/10.56049/jghie.v23i2.66

Onyango C, Bley T, Jacob A, Henle T, Rohm H, 2006. Influence of incubation temperature and time on resistant starch type formation from autoclaved and acid-hydrolyzed cassava starch. Carbohypolym. 66, 494-499.

Orisakwe OE, Asomugha R, Obi E, Afonne OJ, Anisi CN, Dioka CE, 2013. Presence of lead and cadmium in baobab root, Nigeria. Arch. Environ. Health 59(1): 31-36.

Promthong S, Kanto U, Tirawattanawanich C, Tongyai S, 2005. Comparison of nutrients composition and carbohydrate fractional of coin, cassava chip; Proceeding of 43rd Kasetsart University annual conference. Pp.220. Thailand.

Rahaman MM, Hossain R, Herrera-Bravo J, Islam MT, Atolani O, Adeyemi OS, Owolodun OA, Kambizi L, Daştan SD, Calina D, Sharifi-Rad J, 2023. Natural antioxidants from some fruits, seeds, foods, natural products, and associated health benefits: An update. Food Sci. Nutr. 11, 1657-1670. https://doi.org/10.1002/fsn3.3217

Rahul J, Jain MK, Singh SP, Kamal RK, Anuradha Naz A, Gupta AK, Mrityunjay SK, 2015. Adansonia digitata L. (baobab): a review of traditional information and taxonomic description. Asian Pac J Trop Biomed. 5(1), 79-84.

Rashford J, 2019. The Use of Baobab Leaves (Adansonia digitata L.) for Food in Africa: A review. Econ. Bot. 72(4), 478-495. https://doi.org/10.1007/s1223-018-9438-y

Sadler MJ, Gibson S, Whelan K, Ha MA, Lovegrove J, Higgs J, 2019. Dried fruit and public health – what does the evidence tell us? Int. J. Food Sci. Nutr. 70(6), 675-687. https://doi.org/10.1080/09637486.2019.1568398

Sankila S, 2019. Quinoa Protein: Composition, Structure and Functional Properties. Food Chem. 299, 125161. https://doi.org/10.1016/j.foodchem.2019.125161

Silva ML, Rita K, Bernardo MA, Mesquita MFd, Pintão AM, Moncada M, 2023. Adansonia digitata L. (Baobab) Bioactive Compounds, Biological Activities, and the Potential Effect on Glycemia: A Narrative Review. Nutrients 15, 2170. https://doi.org/10.3390/nu15092170

Sithara Z, Anju T, Kumar A, 2024. Natural variation in the nutritional composition of African baobab (Adansonia digitata L) from two ecological sites in Northern Malabar, Kerala, India. Trees For. People 17, 100644.

Sharma P, Bhardwaj DR, Singh MK, Nigam R, Pala NA, Kumar A, Thakur P, 2022. Geospatial technology in agroforestry: Status, prospects, and constraints. Environ. Sci. Pollut. Res. 10, 1-29.

Spangl B, Kaiblinger N, Ruckdeschel P, Rasch D, 2021. Minimal Sample Size in balanced ANOVA models of crossed, nested, and mixed classifications. Commun. Stat. – Theory Methods 52(6), 1728-1743. https://doi.org/10.1080/03610926.2021.1938126

Published
2026-03-10
How to Cite
Mlaviwa, J., Kasulo, V., Mhango, J., & Missanjo, E. (2026). Nutritional diversity and economic value of baobab (Adansonia digitata L) root tubers and leaf production. Forest Systems, 34(2), 20945. https://doi.org/10.5424/fs/2025342-20945
Section
Research Articles