Comparative Studies on the Phytochemicals, Nutrients and Antinutrients Content of Cassava Varieties
Abstract
The aim of this research was to investigate and compare the nutritional, antinutritional, and phytochemical composition of two varieties (TME 9 (olekan–aga) and TME 7 (oko–iyawo)) of Manihot esculenta (cassava) tubers at different ages (6 months and 12months). The result of proximate analyses showed that 12-month-old samples of both varieties had higher moisture contents (44.3±0.24, 44.7±0.47) compared to the 6-month-old samples (34.8±0.62, 37.5±0.71). A 12-month-old sample of TME 7 had the lowest ash and protein contents of 1.33±0.24 and 2.28±0.21 respectively with highest carbohydrate contents of 90.38±0.7 among the four samples analyzed. The result of mineral analysis revealed that the predominant mineral is Ca (1,209.5, 1,273.3, 1,276.8 and 1,178.5 mg/kg) for the 6-month-old TME 9, 12-month-old TME 9, 6-month-old TME 7 and 12-month-old TME 7 respectively), followed by Na, Fe, and Mg in that order. Quantitative phytochemical analysis showed that the 12-month-old samples have the largest quantity of alkaloids and saponins (16.03±1.70, 21.44±0.56 mg/100 g and 4.41±0.31, 3.54±0.25 mg/100 g respectively) for both varieties compared with 11.69±0.43, 12.49±0.53 mg/100 g and 2.39±0.23, 1.84±0.12 mg/100 g recorded for the 6-month-old samples of both varieties. Flavonoids and tannin contents are lower in the 12-month-old samples (2.1±0.64, 2.07±0.34 mg/100 g and 0.14±0.03 and 0.13±0.04 mg/100 g) compared with the 6-month-old samples with 3.5±0.57, 3.73±0.19 mg/100 g and 0.22±0.05, 0.21±0.02 mg/100 g respectively. Antinutrient contents - oxalates, cyanogenic glycosides and phytates are high for both species at 12 months while the 6-month-old samples recorded the lowest content. The results suggest that the 6-month-old samples are more desirable in terms of higher nutrient contents (especially carbohydrate and energy) as well as lower antinutrient contents.
Keywords
References
- 1. Fauquet C, Fargette D. African Cassava Mosaic Virus: Etiology, Epidemiology, and Control. Plant Disease 1990. 74 (6): 404–11. DOI:10.1094/pd-74-0404
- 2. Gbadegesin MA, Olaiya CO, Beeching JR. Africa cassava: Biotechnology and molecular breeding to the resue. Br Biotechnol J. 2013. 3(3):305-317. DOI:10.9734/BBJ/2013/3449.
- 3. IFAD/FAO. Proceedings of the validation forum on the global cassava development strategy: A review of cassava in Africa with country case studies on Nigeria, Ghana, the United Republic of Tanzania, Uganda and Benin. 2013. 2:1-66. ftp://ftp.fao.org/docrep/fao/009/a0154e/A0154E00.pdf
- 4. Chiwona-Karltun L, Tylleskar T, Mkumbira J, Gebre- Medhin M, Rosling H. Low dietary cyanogen exposure from frequent consumption of potentially toxic cassava in Malawi. Int. J. Food Sci. Nutr. 2002. 51:33-43. http://dx.doi.org/10.1080/096374800100886
- 5. AOAC, Official methods of analysis (14th Edn.) Arlington, VA: Association of Official Analytical Chemists. 1984
- 6. Oluwaniyi OO, Dosumu OO, Awolola GV. Effect of cooking method on the proximate, Amino acid, and Fatty acid Compositions of clarias gariepinus and Oreochromis niloticus. J Turkish Chem Soc Section A: Chemistry (JOTCSA). 2017. 4(1): 115 - 132. DOI:10.18596/jotcsa.53143
- 7. Osborne, DR, Voogt P, The analysis of nutrients in foods. London. Academic press. 1978. 251 p. ISBN 0125291507
- 8. Sahrawat KL, Kuaar GR, Rao JK. Evaluation of triacid and dry ashing procedures for detecting potassium, calcium, magnesium, iron, zinc, manganese and copper in plant materials. Communication of Soil Sciences and Plant Analysis, 2002. 33(1): 95 – 102. http://dx.doi.org/10.1081/CSS-120002380
Details
Primary Language
English
Subjects
Engineering, Chemical Engineering
Journal Section
Research Article
Authors
Omolara Oluwaniyi
University of Ilorin, Ilorin, Nigeria
Nigeria
John Oladipo
This is me
University of Ilorin, Ilorin, Nigeria
Nigeria
Publication Date
June 16, 2017
Submission Date
April 15, 2017
Acceptance Date
June 9, 2017
Published in Issue
Year 2017 Volume: 4 Number: 3
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