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Nutraceutical Studies of Solanum torvum Swartz.


Affiliations
1 University of Patanjali, Haridwar 249 405, India
2 Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
 

The present study deals with the taxonomic details, geographical distribution and nutritional aspects of Solanum torvum Swartz. used as a vegetable in the states of North East India as well as in several South Indian states. It is also widely distributed in Uttarakhand, though its edible uses have not been reported from this small state in North India. We conducted a study on the nutritional potential of S. torvum berries by evaluating fat, carbohydrates, proteins, energy, total ash and water content using standard methods. HPLC profiling, as well as HPTLC were performed using an in-house protocol developed at Patanjali Research Foundation, Haridwar, Uttarakhand. The presence of triterpenoids, glycosides, alkaloids, flavonoids, phenols, saponins and tannins indicates the nutritional and medicinal importance of S. torvum. Biochemical compounds like carbohydrates (15.5% w/w), proteins (0.31%), fats (1.09% w/w), total ash (1.03% w/w) and water content (82.41%) represent its appreciable nutritional value, especially as a low-fat diet and also its contribution to fighting against nutrient deficiencies.

Keywords

Biochemical Composition, Geographical Distribution, Nutritional Value, Solanum torvum, Taxonomic Study.
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  • Ilodibia, C. V., Akachukwu, E. E., Chukwuma, M. U., Igboabuchi, N. A., Adimonyemma, R. N. and Okeke, N. F., Proximate, phyto-chemical and antimicrobial studies on Solanumm acrocarpon L. J. Adv. Biol. Biotechnol., 2016, 9(2), 1–7.
  • Famuwagun, A. A., Taiwo, K. A., Gbadamosi, S. O., Oyedele, D. J., Aluko, R. E. and Adebooye, O. C., Extraction optimization and antioxidant properties of African eggplant (Solanum macrocarpon) leaf polyphenols. J. Food Qual., 2017, 1–14; http://doi.org/10.1155/2017/2159183.
  • Namani, S., Paripelli, S., Chinni, S. V., Kasi, M., Subramaniam, S. and Rathinam, X., In vitro anti-oxidant assay, HPLC profiling of polyphenolic compounds, AAS and FTIR spectrum of Malaysian origin Solanum torvum fruit. Indian J. Pharm. Educ. Res., 2016, 50(2), S11–S20.
  • Eletta, O. A. A., Orimolade, B. O., Oluwaniyi, O. O. and Dosumu, O. O., Evaluation of proximate and antioxidant activities of Ethiopian eggplant (Solanum aethiopicum L.) and Gboma eggplant (Solanumm acrocarpon L.). J. Appl. Sci. Environ. Manage., 2017, 21(5), 967–972.
  • Khatoon, U., Sharma, L. and Dubey, R. K., Assessment of bioactive compounds, antioxidative activity and quantification of phenols through HPLC in Solanum species. Ethno. Med., 2018, 12(2), 87–95.
  • Akoto, O., Borquaye, L. S., Howard, A. S. and Konwuruk, N., Nutritional and mineral composition of the fruits of Solanum torvum from Ghana. Int. J. Chem. Biomol. Sci., 2015, 1(4), 222–226.
  • Darkwah, W. K., Koomson, D. A., Miwornunyuie, N., Nkoom, M., and Puplampu, J. B., Phytochemistry and medicinal properties of Solanum torvum fruits. All Life, 2020, 13(1), 498–506.
  • Koffuor, G. A., Amoateng, P. and Andey, T. A., Immunomodulatory and erythropoietic effects of aqueous extract of the fruits of Solanum torvum Swartz. (Solanaceae). Pharmacogn. Res., 2011, 3(2), 130–134.
  • https://www.liquisearch.com/solanum_torvum/cuisine
  • Regina, A., Millicent, A. and Eric, M., Production of tea from turkey berry. Open Access Libr. J., 2018, 5(7), 1–9. e4316; http://doi.org/10.4236/oalib.1104316.
  • Asiedu-Darko, E., A survey of indigenous knowledge about food and medicinal properties of Solanum torvum in East Akim district of Eastern Region of Ghana. Ghana J. Agric. Sci., 2010, 43(5), 61–64.
  • Jena, A. K., Deuri, R., Sharma, P. and Singh, S. P., Underutilized vegetable crops and their importance. J. Pharmacogn. Phytochem., 2018, 7(5), 402–407.
  • Payum, T., Das, A. K. and Shankar, R., Nutraceutical folk food plants used among indigenous people of East Siang district of Arunachal Pradesh, India. Am. J. Pharmtech. Res., 2014, 4(4), 697–704.
  • Shankar, R. and Rawat, M. S., Medicinal Plants of Arunachal Pradesh, International Book Distributors, Dehradun, 2012, pp. 126–135.
  • Koomson, D. A., Kwakye, B. D., Darkwah, W. K., Odum, B., Asante, M. and Aidoo, G., Phytochemical constituents, total saponins, alkaloids, flavonoids and vitamin C contents of ethanol extracts of five Solanum torvum fruits. Pharmacogn. J., 2018, 10(5), 946–950; http://doi:10.5530/pj.2018.5.160.
  • Loganayaki, N., Siddhuraju, P. and Manian, S., Antioxidant activity of two traditional Indian vegetables: Solanum nigrum L. and Solanum torvum L. Food Sci. Biotechnol., 2010, 19(1), 121–127.
  • Yuan, B., Lyu, W., Dinssa, F., Hoffman, D., Simon, J. E. and Wu, Q., African nightshades: recent advances on the phytochemistry, nutrition, and toxicity. In African Natural Plant Products, Volume III: Discoveries and Innovations in Chemistry, Bioactivity, and Applications, ACS Publications, Washington DC, 2020, pp. 103–137.
  • Jain, S. K. and Rao, R. R., A Handbook of Field and Herbarium Methods, Today and Tomorrow Printers and Publishers, New Delhi, 1977, pp. 1–150.
  • Nguta, J. M., Appiah-Opong, R., Nyarko, A. K., Yeboah-Manu, D., Addo, P. G., Otchere, I. and Kissi-Twum, A., Antimycobacterial and cytotoxic activity of selected medicinal plant extracts. J. Ethnopharmacol., 2016, 182, 10–15.
  • Yadav, R. N. S. and Agarwala, M., Phytochemical analysis of some medicinal plants. J. Phytol., 2011, 3(12), 10–14.
  • Obouayeba, A. P., Diarrassouba, M., Soumahin, E. F. and Kouakou, T. H., Phytochemical analysis, purification and identification of Hibiscus anthocyanins. J. Pharm. Chem. Biol. Sci., 2015, 3(2), 156–166.
  • Gul, R., Jan, S. U., Faridullah, S., Sherani, S. and Jahan, N., Preliminary phytochemical screening, quantitative analysis of alkaloids, and antioxidant activity of crude plant extracts from Ephedra intermedia indigenous to Balochistan. Sci. World J., 2017, 1–7; http://doi.org/10.1155/2017/5873648.
  • Akoto, O., Borquaye, L. S., Howard, A. S. and Konwuruk, N., Nutritional and mineral composition of the fruits of Solanum torvum from Ghana. Int. J. Chem. Biomol. Sci., 2015, 1(4), 222–226.
  • Otu, P. N. Y., Sarpong, F., Gidah, J. E., Labanan, A. M. and Anim, D., Characterization of turkey berry (Solanum torvum) – fresh, dry and powder. Afr. J. Food Integ. Agric., 2017, 9–14.
  • Nadeeshani, H., Samarasinghe, G., Wimalasiri, S., Silva, R., Hunter, D. and Madhujith, T., Comparative analysis of the nutritional profiles of selected Solanum species grown in Sri Lanka. J. Food Compos. Anal., 2021, 99, 103847; http://doi.org/10.1016/j.jfca.2021.103847.
  • Mahapatra, A. K., Mishra, S., Basak, U. C. and Panda, P. C., Nutrient analysis of some selected wild edible fruits of deciduous forests of India: an explorative study towards non-conventional bio-nutrition. Adv. J. Food Sci. Technol., 2012, 4(1), 15–21.
  • Bhagyashree, M., Jogen, K., Sharma, K. and Babul, S., Proximate nutritive values and mineral components of Solanum torvum (berries). Nov. Sci. Int. J. Pharm. Sci., 2012, 1, 449–451.
  • Melila, M., Etse, D. K., Firmain, S. I. K. A., Awili, T., Kanabiya, E., Amegah, L. A. and Bakoma, B., Preliminary phytochemical screening and antimicrobial activity of the hydroethanolic extract of the fruits of Solanum torvum (Swartz.) (Solanaceae) used as vegetable in Togo. J. Drug Deliv. Ther., 2021, 11(2-S), 31–35.

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  • Nutraceutical Studies of Solanum torvum Swartz.

Abstract Views: 200  |  PDF Views: 83

Authors

Acharya Balkrishna
University of Patanjali, Haridwar 249 405, India
Rama Shankar
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
Rashmi A. Joshi
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
Monali Joshi
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
Uday Bhan Prajapati
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
Anupam Srivastava
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India
Vedpriya Arya
Patanjali Herbal Research Department, Patanjali Research Foundation, Haridwar 249 405, India

Abstract


The present study deals with the taxonomic details, geographical distribution and nutritional aspects of Solanum torvum Swartz. used as a vegetable in the states of North East India as well as in several South Indian states. It is also widely distributed in Uttarakhand, though its edible uses have not been reported from this small state in North India. We conducted a study on the nutritional potential of S. torvum berries by evaluating fat, carbohydrates, proteins, energy, total ash and water content using standard methods. HPLC profiling, as well as HPTLC were performed using an in-house protocol developed at Patanjali Research Foundation, Haridwar, Uttarakhand. The presence of triterpenoids, glycosides, alkaloids, flavonoids, phenols, saponins and tannins indicates the nutritional and medicinal importance of S. torvum. Biochemical compounds like carbohydrates (15.5% w/w), proteins (0.31%), fats (1.09% w/w), total ash (1.03% w/w) and water content (82.41%) represent its appreciable nutritional value, especially as a low-fat diet and also its contribution to fighting against nutrient deficiencies.

Keywords


Biochemical Composition, Geographical Distribution, Nutritional Value, Solanum torvum, Taxonomic Study.

References





DOI: https://doi.org/10.18520/cs%2Fv125%2Fi7%2F784-788