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Year 2020, Volume: 3 Issue: 4, 144 - 146, 31.12.2020

Abstract

References

  • [1] Güneş, E., 2019. In vivo use of watermelon seeds. International Journal of Ecosystems and Ecology Science, 9 (3), 417-422.
  • [2] Erhirhie, E.O., Ekene, N.E., 2014. Medicinal values on Citrullus lanatus (watermelon): pharmacological review. International Journal of Research in Pharmaceutical and Biomedical Sciences, 4(4), 1305-1312.
  • [3] USDA, 2002. USDA nutrient database for standard reference, release 15. [Internet] U.S. Department of Agriculture, Beltsville Human Nutrition Research Center, Beltsville Md, United States. http://www.nal.usda.gov/fnic/foodco mp.
  • [4] Gill, N.S., Bansal, R.K., Manju, G., Shailja, S., Arunachalam, M., Manoj, B., 2010. Evaluation of antioxidant, anti-inflammatory and analgesic potential of Citrullus lanatus seed extract in rodent model. Internet Journal of Nutrition and Wellness, 9(2).
  • [5] Madhavi, P., Vakati, K., Rahman, H., 2012. Evaluation of anti-inflammatory activity of Citrullus lanatus seed oil by in-vivo and in-vitro models. International Research Journal of Pharmaceutical and Applied Sciences, 2(4), 104-108.
  • [6] Tiamiyu, L.O., Okomoda, V.T., Agbese, V.E., 2015. Growth performance of Clarias gariepinus fingerlings fed Citrullus lanatus seed meal as a replacement for soybean meal. Journal of Aquaculture Engineering and Fisheries Research, 1(1), 49-56.
  • [7] Iheanacho, S.C., Ikwo, T.N., Igweze, N.O, Chukwuidha, C., Ogueji, E.O., Onyeneke, R., 2018. Effect of different dietary inclusion levels of melon seed (Citrullus lanatus) peel on growth, haematology and histology of Oroechromis niloticus juvenile. Turkish Journal of Fisheries and Aquatic Sciences, 18(3), 377-384.
  • [8] Tiamiyu, L.O., Ayuba, V.O., Okomoda, V.T., Umar, S., 2014. Effect of Various Levels of Raw Citrullus lanatus Seed Meal Diets on Growth Performance of Cyprinus carpio Fingerlings. Jordan Journal of Biological Sciences, 7(4).
  • [9] Jimoh, W.A., Ayeloja, A.A., Ajasin, F.O., Okemakin, F.Y., Abdusalami, S.A., Adekunle, O.F., 2015. Some haematological and biochemical profile of blood of Nile tilapia (Oreochromis niloticus) fed on diets containing watermelon (Citrullus lanatus) seedmeal. Bayero Journal of Pure and Applied Sciences, 8(1), 109-114.
  • [10] Milala, M.A., Luther, A., Burah, B., 2018. Nutritional comparison of processed and unprocessed Citrillus lanatus (watermelon) seeds for possible use in feed formulation. American Journal of Food and Nutrition, 6(2), 33-36.
  • [11] Bonjour, E.L., Fargo, W.S. ,1989. Host effects on the survival and development of Anasa tristis (Heteroptera: Coreidae). Environmental entomology, 18(6), 1083-1085.
  • [12] Lesch, C., Goto, A., Lindgren, M., Bidla, G., Dushay, MS., Theopold, U., 2007 A role for Hemolectin in coagulation and immunity in Drosophila melanogaster. Developmental and Comparative Immunology, 31, 1255-1263.
  • [13] Ames, B.N., Shigenaga, M.K., Hagen, T.M., 1993. Oxidants, antioxidants, and the degenerative diseases of aging. Proc Nat Acad Sci USA 90, 7915-7922.
  • [14] Altun, D., Ayar, A., Uysal, H., Kara, A.A., Ünal, E.L., 2010. Extended longevity of Drosophila melanogaster by water and ethanol extracts of Stachys lavandulifolia. Pharmaceutical Biology, 48(11), 1291-1296.

Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed

Year 2020, Volume: 3 Issue: 4, 144 - 146, 31.12.2020

Abstract

Citrullus lanatus (CL) have been used in many areas for centuries throughout the world. The study was investigated the effects of CL on the longevity of Drosophila melanogaster Meigen. The effects of different rates of CL (0.5-10% medium) were determined to female and male populations of insect for controls and CL groups. The findings demonstrated that the seed of CL as a source for natural waste product have potential uses for insect feeding.

References

  • [1] Güneş, E., 2019. In vivo use of watermelon seeds. International Journal of Ecosystems and Ecology Science, 9 (3), 417-422.
  • [2] Erhirhie, E.O., Ekene, N.E., 2014. Medicinal values on Citrullus lanatus (watermelon): pharmacological review. International Journal of Research in Pharmaceutical and Biomedical Sciences, 4(4), 1305-1312.
  • [3] USDA, 2002. USDA nutrient database for standard reference, release 15. [Internet] U.S. Department of Agriculture, Beltsville Human Nutrition Research Center, Beltsville Md, United States. http://www.nal.usda.gov/fnic/foodco mp.
  • [4] Gill, N.S., Bansal, R.K., Manju, G., Shailja, S., Arunachalam, M., Manoj, B., 2010. Evaluation of antioxidant, anti-inflammatory and analgesic potential of Citrullus lanatus seed extract in rodent model. Internet Journal of Nutrition and Wellness, 9(2).
  • [5] Madhavi, P., Vakati, K., Rahman, H., 2012. Evaluation of anti-inflammatory activity of Citrullus lanatus seed oil by in-vivo and in-vitro models. International Research Journal of Pharmaceutical and Applied Sciences, 2(4), 104-108.
  • [6] Tiamiyu, L.O., Okomoda, V.T., Agbese, V.E., 2015. Growth performance of Clarias gariepinus fingerlings fed Citrullus lanatus seed meal as a replacement for soybean meal. Journal of Aquaculture Engineering and Fisheries Research, 1(1), 49-56.
  • [7] Iheanacho, S.C., Ikwo, T.N., Igweze, N.O, Chukwuidha, C., Ogueji, E.O., Onyeneke, R., 2018. Effect of different dietary inclusion levels of melon seed (Citrullus lanatus) peel on growth, haematology and histology of Oroechromis niloticus juvenile. Turkish Journal of Fisheries and Aquatic Sciences, 18(3), 377-384.
  • [8] Tiamiyu, L.O., Ayuba, V.O., Okomoda, V.T., Umar, S., 2014. Effect of Various Levels of Raw Citrullus lanatus Seed Meal Diets on Growth Performance of Cyprinus carpio Fingerlings. Jordan Journal of Biological Sciences, 7(4).
  • [9] Jimoh, W.A., Ayeloja, A.A., Ajasin, F.O., Okemakin, F.Y., Abdusalami, S.A., Adekunle, O.F., 2015. Some haematological and biochemical profile of blood of Nile tilapia (Oreochromis niloticus) fed on diets containing watermelon (Citrullus lanatus) seedmeal. Bayero Journal of Pure and Applied Sciences, 8(1), 109-114.
  • [10] Milala, M.A., Luther, A., Burah, B., 2018. Nutritional comparison of processed and unprocessed Citrillus lanatus (watermelon) seeds for possible use in feed formulation. American Journal of Food and Nutrition, 6(2), 33-36.
  • [11] Bonjour, E.L., Fargo, W.S. ,1989. Host effects on the survival and development of Anasa tristis (Heteroptera: Coreidae). Environmental entomology, 18(6), 1083-1085.
  • [12] Lesch, C., Goto, A., Lindgren, M., Bidla, G., Dushay, MS., Theopold, U., 2007 A role for Hemolectin in coagulation and immunity in Drosophila melanogaster. Developmental and Comparative Immunology, 31, 1255-1263.
  • [13] Ames, B.N., Shigenaga, M.K., Hagen, T.M., 1993. Oxidants, antioxidants, and the degenerative diseases of aging. Proc Nat Acad Sci USA 90, 7915-7922.
  • [14] Altun, D., Ayar, A., Uysal, H., Kara, A.A., Ünal, E.L., 2010. Extended longevity of Drosophila melanogaster by water and ethanol extracts of Stachys lavandulifolia. Pharmaceutical Biology, 48(11), 1291-1296.
There are 14 citations in total.

Details

Primary Language English
Subjects Environmental Sciences
Journal Section Articles
Authors

Eda Güneş

Publication Date December 31, 2020
Submission Date November 24, 2020
Published in Issue Year 2020 Volume: 3 Issue: 4

Cite

APA Güneş, E. (2020). Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed. International Journal of Environmental Pollution and Environmental Modelling, 3(4), 144-146.
AMA Güneş E. Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed. Int. j. environ. pollut. environ. model. December 2020;3(4):144-146.
Chicago Güneş, Eda. “Extended Longevity of Drosophila Melanogaster by Natural Waste Citrullus Lanatus Seed”. International Journal of Environmental Pollution and Environmental Modelling 3, no. 4 (December 2020): 144-46.
EndNote Güneş E (December 1, 2020) Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed. International Journal of Environmental Pollution and Environmental Modelling 3 4 144–146.
IEEE E. Güneş, “Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed”, Int. j. environ. pollut. environ. model., vol. 3, no. 4, pp. 144–146, 2020.
ISNAD Güneş, Eda. “Extended Longevity of Drosophila Melanogaster by Natural Waste Citrullus Lanatus Seed”. International Journal of Environmental Pollution and Environmental Modelling 3/4 (December 2020), 144-146.
JAMA Güneş E. Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed. Int. j. environ. pollut. environ. model. 2020;3:144–146.
MLA Güneş, Eda. “Extended Longevity of Drosophila Melanogaster by Natural Waste Citrullus Lanatus Seed”. International Journal of Environmental Pollution and Environmental Modelling, vol. 3, no. 4, 2020, pp. 144-6.
Vancouver Güneş E. Extended Longevity of Drosophila melanogaster by Natural Waste Citrullus lanatus Seed. Int. j. environ. pollut. environ. model. 2020;3(4):144-6.
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