Essential Mineral Elements and Potentially Toxic Elements in Orange-Fleshed Sweet Potato Cultivated in Northern Ethiopia

Author:

Lamaro Gloria Peace1ORCID,Tsehaye Yemane2,Girma Atkilt13,Vannini Andrea4ORCID,Fedeli Riccardo4ORCID,Loppi Stefano45ORCID

Affiliation:

1. Institute of Climate and Society, Mekelle University, Mekelle P.O. Box 231, Ethiopia

2. Department of Dryland Crops and Horticultural Sciences, College of Dryland Agriculture and Natural Resources, Mekelle University, Mekelle P.O. Box 231, Ethiopia

3. Department of Land Resources Management and Environmental Protection (LaRMEP), College of Dryland Agriculture and Natural Resources, Mekelle University, Mekelle P.O. Box 231, Ethiopia

4. Department of Life Sciences, University of Siena, 53100 Siena, Italy

5. BAT Center—Interuniversity Center for Studies on Bioinspired Agro-Environmental Technology, University of Naples Federico II, 80138 Napoli, Italy

Abstract

This study investigated the influence of the agro-climatic environment of Northern Ethiopia on the content of essential mineral elements of selected orange-fleshed sweetpotato genotypes, the potential contribution of each genotype’s essential mineral elements to the recommended dietary allowance, and the potential risk to human health from the accumulation of potentially toxic elements in the tuberous roots of the studied genotypes. The results showed consistent interspecific variations in the content of essential mineral elements among the studied orange-fleshed sweetpotato genotypes, as well as important intraspecific differences, which could depend on the variations in soil mineral and organic matter content, rainfall, temperature, as well as interactions between genotype and environment. The investigated genotypes, especially Kulfo, Ininda, Gloria, and Amelia, can provide an amount of several essential mineral elements high enough to meet 100% of the recommended dietary allowance for all age groups ≤8 years. The mean content of potentially toxic elements in tuberous roots and their daily intake values were within the recommended permissible levels; likewise, no health risk was associated with the consumption of these genotypes for Cr, As, and Pb. However, Al, Cd, Cu, Fe, Mn, and Ni is > 1, consumption imposes health risks based on daily accumulation.

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference45 articles.

1. FAOSTAT (2020). World Food and Agriculture-Statistical Year Book 2020.

2. Kapinga, R.S., Tumwegamire, S., Ndunguru, J., Andrade, M.I., Agili, S., and Mwanga, R.O.M. (2010). Catalogue of Orange-Fleshed Sweetpotato Varieties for Sub-Saharan Africa.

3. ‘NASPOT 7’, ‘NASPOT 8’, ‘NASPOT 9 O’, ‘NASPOT 10 O’, and ‘Dimbuka-Bukulula’ sweetpotato;Mwanga;HortScience,2009

4. Sources and Deficiency Diseases of Mineral Nutrients in Human Health and Nutrition: A Review;Gupta;Pedosphere,2014

5. Comparative Risk Assessment Collaborating Group. Selected major risk factors and global and regional burden of disease;Ezzati;Lancet,2002

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