DISINFESTATION OF MANGOES HADEN IN-FESTED BY Anastrepha fraterculus (WIED., 1830) (DIPTERA, TEPHRITIDAE), WITH GAMMA RADIATION

Authors

  • Valter Arthur Centro de Energia Nuclear na Agricultura -USP

DOI:

https://doi.org/10.15392/bjrs.v9i1A.1444

Keywords:

gamma radiation, fruit flies, mango

Abstract

The objective of experiment was determinate the radiation dose for disinfestation to mango Mangifera indica cv. Haden, infested by Anastrepha fraterculus larvae. For realization of the experiment, were collected fruits in the field, which were taking to Entomology laboratory where there was a infestation by the flies in cages during 72 hours period. Waited for the development of the larvae and before 5 – 8 days to infestation, the mangos were irradiated in a Cobalt-60 source with doses of: 0(control), 50, 100, 200, 300, 400, 500, 600, 700, 800, 900, 1000, 1.100, 1.200 and 1.300 Gy. After the irradiation, the fruits were placed in climate chamber with 25 ±5°C of temperature and 70±5% of relative humidity, posteriorly waited the larvae exit to out of the fruit until the transformation in pupae and posteriorly in adult stage. By the results obtained our can concluded that the lethal dose to larvae in mangoes infested with 5-8 days after infestation were 600 Gy and 1.000 Gy (0.6 and 1 kGy) respectively. The dose of 50 Gy prevented the total adult emergence for both treatments.

 

Downloads

Download data is not yet available.

Author Biography

  • Valter Arthur, Centro de Energia Nuclear na Agricultura -USP
    Departamento de Radiobiologia e Ambiente

References

C. R. M. Pimentel, R. E. Alves, H. A.C. Figueiras. Mercado internacional de manga: Situação atual e Perspectiva. In: C. R. M. Pimentel (Eds.), Frutas do Brasil: Manga Pós colheita. Embra-pa Agroindústria Tropical, Fortaleza. 2000.

D. Pimentel, S. McNair, J. Janecka, J. Wigthtman, C. Simmonds, C. O’Connell, E. Wong, L. Russel, J. Zern, T. Aquino, T. Tsomondo. Economic and environmental threats of alien plant, animal, and microbe invasions. Agric. Ecosys. Environ. 84, 1–20, 2001.

A. M. Liebhold, P. C. Tobin. Population ecology of insect invasions and their management. Annual Review Entomology. 53, 387–408, 2008.

A. L. Norrobom, C. A. Koryticowski. New species of and taxonomic notes on Anastrepha (Diptera: Tephritidae). Zootaxa, New Zealand, v. 2740, p. 1-23, jan. 2011.

P. Thomas, J. H. Moy. Radiation preservation of foods of plant origin. III. Tropical fruits: Ba-nanas, mangoes, and papayas .C R C Critical Reviews in Food Science and Nutrition.v. 23, 2, 1986

Jr. A. K. Burditt. International Atomic Energy Agency, Vienna (Austria); Food and Agriculture Organization of the United Nations, Rome (Italy); 143 p; Sep 1982; p. 57-87; Seminar on food irradiation for developing countries in Asia and the Pacific; Tokyo (Japan); 9 - 13 Nov 1981; IAEA-TECDOC—271.

J. H. Moy. Radurization and Radicitacion: Fruits and Vegetables. In “Preservation of Food by Ionizing Radiation”. Ed E.S. Josephson, M.S. Peterson. v.3, p. 83. CRC Press, Boca Raton, FL. 1983.

N. W.; Harther, G. J. Hallman. Pest management and phytosanitary trade barriers. CABI, Wallingford, United Kingdom. 2008.

J. W. Balock, J. D. Christenson, G. O. Bur. Effect of gamma rays from cobalt 60 on immature stages of the oriental fruit fly (Dacus dorsalis Hendel) and possible application to commodity treatment problems. In: ANNUAL MEETING HAWAIIAN ACADEMIC SCIENCE, 31. Hon-olulu, 1956. Proceedings. Hawalian Academic Science. 1956. p18.

D. Gallo. Radioisótopos no controle de pragas. O Solo. Piracicaba, 1:30-1,1960.

J. W. Balock, Jr. A. K. Burditt, L. D. Christenson. Effects of gamma radiation on various stages of three fruit fly species. Journal of Economic Entomology.College Park, 56(1):42-6, 1963.

A. K. Burditt, S. T. Seo. Dose requirement for quarantine treatment of fruit flies with gamma irradiation In: INTERNATIONAL ATOMIC ENERGY AGENCY. Desinfestation of fruits by irradiation. Vienna, 1971. p.33-41. (Pane) Proceedings series.

A. C. Thomas, M. Beyers. Gamma irradiation of subtropical fruits. 11. A comparison of the chemica1 changes occurring during normal ripening of mangoes and papayas with changes pro-duced by gamma irradiation. Journal of Agricultural and Food Chemistry Easton, 2(1):157-63, 1979.

A. K. Jr. Burditt, H. G. Hoshonas, T. T. Hatton, D.H. Spalding, D. L. Von Windeguth, P. E. Shaw. Low-dose• irradiation as a treatment for grape fruit and mangoes infested with Caribbean Fruit fly larvae. Washington, USDA/Agriculture Research Service, 1981. 9p. (Agriculture Re-search Results, 10).

I. Fesues, L. Kadas, B. Kalman. Protection of oranges by gamma radiation against Ceratitis capitata (Wied.). Acta Alimentaria, 10(4): 293-9, 1981.

D. H. Spalding, D. F. Davis. Potential for gamma radiation as a quarantine treatment for Carib-bean fruit fly in citrus. In: J. H. Moy: Radiation desinfestation of food and agricultural products. Hono1ulu, University of Hawaii Press, p.160-5, 1985.

V. Arthur, R. E. Domarco, F. M.Wiendl, A. C. Silva. Influência da radiação gama do Cobalto-60 em larvas e pupas de Anastrepha obliqua (Mac., 1835) (Dip., Tephritidae). In: Reunião A-nual da Sociedade Brasileira Para o Progresso da Ciência, 40., São Paulo,1988. Resumos. Ciên-cia e Cultura São Paulo, 40 (7, sup1.):21,jul., 1988.

V. Arthur, Determinação da dose letal para larvas de Anastrepha obliqua no interior de frutos de Spondia purpurea. In: Congresso brasileiro de Entomologia, 12, Belo Horizonte, 1989. Resu-mos. Belo horizonte, Sociedade Entomológica do Brasil, 1989. p.501.

V. Arthur, R. E. Domarco, F. M. Wiendl, A. C. Silva, M. H. A. Leme. Desinfestação de Euge-nia uvaia infestadas por Anastrepha fraterculus (Wied., 1830) (Dip., Tephritidae), através da ra-diação gama. In: Reunião Anual da Sociedade Brasileira Para o Progresso da Ciência, 41, Forta-leza, 1989. Resumos. Ciência e Cultura, São Paulo, 41(7, sup1.):11, jul., 1989.

A. C. Silva, V. Arthur, E. B. Silva, R. E. Domarco. Influência da radiação gama do Cobalto-60 em pupas de Anastrepha obliqua. (Dip., Tephritidae). In: Congresso Brasileiro de Entomologia, 12, Belo Horizonte, 1989. Horizonte, Sociedade Entomológica Brasileira, p.519, 1989.

V. Arthur, F. M. Wiendl. Desinfestação de Averrhoa carambola infestada por Anastrepha obli-qua (Macquart, 1835) (Diptera:Tephritidae) através de radiação gama. Scientia Agricola. 51(2): 216-221, 1994.

V. Arthur, F. M. Wiendl. Desinfestação de maçãs atacadas por Anastrepha fraterculus (Wied.) (Diptera: Tephritidae) através das radiações gama do cobalto-60. Anais da Sociedade Entomo-logia do Brasil, 25 (1996), p. 157–159.

A. Allinghi, C. Gramajo, E. Willink, J. Vilardi. Induction of sterility in Anastrepha fraterculus (Diptera: Tephritidae) by gamma radiation. Florida Entomologist, 90 (1): 96-102, 2007.

A. C. Kamiya. Criação massal em dieta líquida e radioesterilização da mosca-sul-americana Anastrepha fraterculus (Wied., 1830) (Diptera: Tephritidae). Dissertação. Centro de Energia Nuclear na Agricultura, Universidade de São Paulo. 71 p. 2010.

G. J. Hallman. Rationale for a generic phytosanitary irradiation dose of 70 Gy for the genus Anastrepha (Diptera: Tephritidae). Florida Entomologist, 96(3):989-990.2013.

K. Y. Kaneshiro, A. T. Ohta, J. S. Kurthara, K. M. Kanegawa, L. R. Nagamine. Gamma radia-tion treatment for desinfestation of the medfly in thirty-five varieties of California -Grown Fruit In: J.H. Moy. Radiation desinfestation on food and agricultural products. Honolulu, University of Hawaii at Manoa, p.28-109, 1985.

Downloads

Published

2021-04-30

Issue

Section

The Meeting on Nuclear Applications (ENAN) 2019

How to Cite

DISINFESTATION OF MANGOES HADEN IN-FESTED BY Anastrepha fraterculus (WIED., 1830) (DIPTERA, TEPHRITIDAE), WITH GAMMA RADIATION. Brazilian Journal of Radiation Sciences, Rio de Janeiro, Brazil, v. 9, n. 1A, 2021. DOI: 10.15392/bjrs.v9i1A.1444. Disponível em: https://bjrs.org.br/revista/index.php/REVISTA/article/view/1444.. Acesso em: 20 may. 2024.

Similar Articles

1-10 of 430

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)

1 2 > >>