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Biological control of Chilo spp. in sugar-cane

Published online by Cambridge University Press:  19 September 2011

H. David
Affiliation:
Sugarcane Breeding Institute, Coimbatore-641 007, India
S. Easwaramoorthy
Affiliation:
Sugarcane Breeding Institute, Coimbatore-641 007, India
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Abstract

Several species of Chilo occur on sugar-cane, out of which five have major pest status. Infestation by these pests causes losses in cane yield and sugar recovery. There are constraints involved in the use of cultural, mechanical and chemical control measures on a large scale, but the nature of the crop facilitates adoption of biological control. Many species of natural enemies occur in the sugar-cane agro-ecosystem, which is relatively less disturbed. They play a significant role in maintaining the pest populations at reasonably low level.

In biological control, the egg parasite, Trichogramma spp., has been widely used with varying results. Among the larval parasites, Apanteles flavipes (Cameron) and Sturmiopsis inferens Townsend have been used on a limited scale and need further testing in other countries. The exotic tachinids introduced, failed to establish against Chilo spp. Not much work has been done on the predators, though the native predators play a significant role in reducing the pest densities. Among the entomopathogens, granulosis virus infecting Chilo infuscatellus Snellen has shown promise in the control of this pest and needs further evaluation in other agro-climatic regions. Future thrust for biological control of Chilo spp., in sugar-cane has also been indicated.

Résumé

Plusieurs species de Chilo de canne à sucre nous avon ung 5 avec grand d'insect nuisibles. Infeste contribute a cause d'insect nuisibles des perdu dans canne produce et sucre recouvert. Ils sont difficiele dans la utilisation mechanique at chemique controlé measure sur un grande maniere, nous la naturel de crop facile adopté de lutte biologique. Plusieurs species d'enemis naturels presente dans la canne agroecosysteme' qui sont pas derange. Ils jouent un significant role dous maintenance de insect nuisibles avec resonable petit stade.

En lutte biologique oeuf parasite Trichogramma spp. sont ete utilisé en grand maniere souvent avec variant resultat. Dans parasite de l'etat larvaire Apanteles flavipes et Sturmiopsis inferens sont ete utilised pour petit mániere et c'est necesaire qúon confirme dans des entre pays. Lé importe Tachinids né establish pas contre Chilo sp. On n'a pas fait beaucoup de travaille pour predateurs moins l'indigéns predateur joue un rôle de significant dans reduire l'ravageux nuisibles. Dans les entomopathogens due virus la granulose affecte de Chilo infuscatellus c'est bein pour la controle de la ravageux nuisibles et il faut plusieurs evaluations dans different agroclimatique regions. Les possibilité dans la future pour lutte biologique de Chilo spp. dans canne à sucre sont aussi indicatè.

Type
Biological Control
Copyright
Copyright © ICIPE 1990

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References

REFERENCES

Abraham, C. C. and Pradhan, S. (1976) Studies on developing races of Trichogramma australicum Girault suitable for high temperature, low humidity conditions. Madras Agric. J. 63, 550556.Google Scholar
Ananthanarayana, K. and David, H. (1982) Construction of life table for shoot borer. Annual Report, Sugarcane Breeding Institute, Coimbatore. pp. 163164.Google Scholar
Anonymous (1981) Annual Report, All India Coordinated Research Project on Biological Control of Crop Pests and Weeds, Bangalore pp. 112.Google Scholar
Anonymous (1987) Final report, ICAR Research Scheme on Taxonomy, Biology, Ecology of Spiders of Saurashtra and North Gujarat Regions. Sir P. P. Institute of Science, Bhavnagar University, Gujarat.Google Scholar
Araujo, J. R. De., Botelho, P. S. M., De Campos, H., De Almeida, L. C., and Degaspari, N. (1984) Influence of the number of Apanteles flavipes released on the effectiveness of the control of the sugarcane borer, D. saccharalis. Cadernos Planal Sugar 3, 1221.Google Scholar
Atma, Ram and Sharma, A. K. (1977) Selective breeding for improving the fecundity and sex ratio of Trichogramma fasciatum (Perkins.) (Trichogrammatidae: Hymenoptera) an egg parasite of Lepidopterous hosts. Entomon 2, 133137.Google Scholar
Bennett, F. D. (1969) Tachinid flies as biological control agents for sugar cane moth borers. In Pests of Sugar cane (Edited by Williams, J. R., Metcalfe, J. R., Mungomery, R. W. and Mathes, R.), pp. 177198. Elsevier Publishing Co., Amsterdam.Google Scholar
Bennett, F. D., Cock, M. J. W. and Diaz, C. F. A. (1983) Allorhogas sp. n. (Braconidae) a potential biological control agent for graminaceous stem borers from Mexico. Entomol. Newsl. Int. Soc. Sugar Cane Technol. 14, 912.Google Scholar
Betbeder-Matibet, M. and Malinge, P. (1967) A biological control success: Control of Chilo sacchariphagus, the spotted sugar-cane borer, in Madagascar by the introduced parasite, Apanteles flavipes. Agron. Trop. 22, 11961220.Google Scholar
Bleszynski, S. (1969) The taxonomy of the crambine moth borers of sugar-cane. In Pests of Sugarcane (Edited by Williams, J. R., Metcalfe, J. R., Mungomery, R. W. and Mathes, R.) pp. 1159. Elsevier Publishing Co., Amsterdam.Google Scholar
Bleszynski, S. (1970) A revision of the world species of Chilo Zincken (Lepidoptera: Pyralidae). Bull. Br. Mus.(Nat. His.) Entomol. 25, 101195.Google Scholar
Box, H. E. (1953) List of Sugar-cane Insects. Commonwealth Institute of Entomology, London.Google Scholar
Brenière, J. (1960) Utilisation de Trichogramma australicum Gir. dans la lutte biologique centre le borer de la canne à sucre à Madagascar. Doc. Inst. Rech. Agron. Madagascar 14, 34.Google Scholar
Brenière, J. (1965a) Les Trichogrammes, parasites de Proceras sacchariphagus Boj. borer de la canne à sucre à Madagascar. I. Ecologie de Trichogramma australicum Gir., parasite autochtone. Effect du renforcement de la population parasite. Entomophaga 10, 8396.CrossRefGoogle Scholar
Brenière, J. (1965b) Les Trichogrammes, parasites de Proceras sacchariphagus Boj. borer de la canne à sucre à Madagascar. IV Etude comparee de plusieurs especes de Trichogrammes. Entomophaga 10, 273294.CrossRefGoogle Scholar
Brenière, J., Pfeffer, P., Betbeder-Matibet, M. and Etienne, J. (1966) Tentative d'introduction à Madagascar et la Reunion de Diatraeophaga striatalis parasite de Proceras sacchariphagus' Borer ponctué de la canne à sucro. Entomophaga 11, 231238.CrossRefGoogle Scholar
Brenière, J., Bordat, D., Vercambre, B., Hamza, H. and Renand, M. (1985) Biological control operations against the maize borer, Chilo partellus (Swinhoe) in the island of Ngazidja. Agron. Trop. 40, 157166.Google Scholar
Butani, D. K. (1958) Parasites and predators recorded on sugar-cane pests in India. Indian J. Entomol. 43, 441443.Google Scholar
Chaudhary, J. P., Yadav, S. R. and Bharadwaj, S. C. (1981) Biological control of sugar-cane stalk borer, Chilo auricilius Ddg. Indian J. Agric. Res. 14, 147154.Google Scholar
Chen, C. B. (1955) Biological control of sugar-cane borers in Taiwan. Taiwan Sugar 11, 2225.Google Scholar
Chen, C. B. (1963) An effective criticism of utilizing indigenous egg parasites Trichogramma minutum and T. australicum and introducing parasites for controlling sugar-cane borers. J. Agric. Assoc. China, New Series 44, 18.Google Scholar
Chen, C. B. and Hung, T. H. (1960) Introduction and artificial propagation of Lixophaga diatraeae Towns, for control of sugar-cane borers in Taiwan. Proc. Int. Soc. Sugar Cane Technol. 10, 942947.Google Scholar
Chen, C. B. and Hung, T. H. (1968) Experimental results with biological control of sugarcane borers in Taiwan. Proc. Int. Soc. Sugar Cane Technol. 13, 13001304.Google Scholar
David, H. and Easwaramoorthy, S. (1981) Scope of utilization of Sturmiopsis inferens Tns. for the control of sugarcane stalk borer. Proc. National Symposium on Sugar-cane Stalk Borer, Karnal, pp. 103108.Google Scholar
David, H. and Easwaramoorthy, S. (1985) Recent advances in the biological control of sugar-cane pests. In Advances in Biological Control Research in India (Edited by Joseph, K. J. and Abdurahiman, U. C.), pp. 200213. University of Calicut, Calicut.Google Scholar
David, H., Easwaramoorthy, S. and Jayanthi, R. (eds.) (1986) Sugarcane Entomology in India. Sugar-cane Breeding Institute, Coimbatore.Google Scholar
David, H., Easwaramoorthy, S., Kurup, N. K., Shanmugasundaram, M. and Santhalakshmi, G. (1989) A simplified mass culturing technique for Sturmiopsis inferens Tns. J. Biol. Control 3, 13.Google Scholar
David, H., Easwaramoorthy, S., Nandagopal, V., Kurup, N. K., Shanmugasundaram, M. and Santhalakshmi, G. (1981) Influence of different temperatures on the tachinid parasite, Sturmiopsis inferens (Dip.). Entomophaga 26, 333338.CrossRefGoogle Scholar
David, H., Easwaramoorthy, S., Nandagopal, V., Kurup, N. K., Shanmugasundaram, M. and Santhalakshmi, G. (1988) Larvipositional behaviour of Sturmiopsis inferens Tns. (Tachinidae, Diptera) on sugar-cane shoot borer in India. Trop. Pest Manage. 34, 267– 270.CrossRefGoogle Scholar
David, H., Easwaramoorthy, S., Nandagopal, V., Shanmugasundaram, M., Santhalakshmi, G., Arputhamani, M. and Kunjukrishnakurup, N. (1980) Laboratory studies on Sturmiopsis inferens Tns. a parasite of sugar-cane shoot borer, Chilo infuscatellus Snell. Entomon 5, 191200.Google Scholar
D'Emmerez, De, Charmoy, D. (1916) Moth borers affecting sugar-cane in Mauritius. Dep. Agric. Mauritius Sci. Series Bull. 5, 27.Google Scholar
Diakonoff, A. (1941) Bladscheedewants een vijand van boorderrupsen (A leaf sheath bug enemy of borer larvae). Arch. Siukerind Ned and Ned-Ind. 2, 205213.Google Scholar
Easwaramoorthy, S. (1980) Estimation of damage and losses caused by sugar-cane pests. In Sugarcane Pest Management in India (Edited by Balasubramanian, M. and Solayappan, A. R.) pp. 518. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Easwaramoorthy, S. (1984) Studies on granulosis viruses of sugar-cane shoot borer, Chilo infuscatellus Snellen and internode borer C. sacchariphagus indicus (Kapur). Ph.D. thesis, Tamil Nadu Agricultural University, Coimbatore.Google Scholar
Easwaramoorthy, S. (1986) New approaches in sugar-cane pest control. In Sugar-cane Entomology in India (Edited by David, H., Easwaramoorthy, S. and Jayanthi, R.), pp. 437457. Sugarcane Breeding Institute, Coimbatore.Google Scholar
Easwaramoorthy, S. and David, H. (1979) A granulosis virus of sugar-cane shoot borer, Chilo infuscatellus Snell., (Lepidoptera: Crambidae). Curr. Sci. 48, 685686.Google Scholar
Easwaramoorthy, S. and Jayaraj, S. (1987a) Survey for the distribution of granulosis virus infection in sugar-cane borers, Chilo infuscatellus Snellen and C. sacchariphagus indicus (Kapur). Trop. Pest Manage. 33, 200201.CrossRefGoogle Scholar
Easwaramoorthy, S. and Jayaraj, S. (1987b) Environmental persistence of granulosis virus of sugar-cane shoot borer, Chilo infuscatellus Snell. J. Biol. Control 1, 3136.Google Scholar
Easwaramoorthy, S. and Jayaraj, S. (1987c) Safety of two granulosis viruses infecting sugar-cane borers to certain parasites and predators. J. Biol. Controll, 106110.Google Scholar
Easwaramoorthy, S. and Jayaraj, S. (1987d) Lack of susceptibility of Indian honey bee, Apis cerena indica Fabr. to two granulosis viruses infecting sugar-cane borers. Indian Bee J. 49, 12.Google Scholar
Easwaramoorthy, S. and Jayaraj, S. (1988a) Effect of temperature and storage time on the infectivity of granulosis virus of sugar-cane shoot borer, Chilo infuscatellus Snell. J. Biol. Control 2, 106108.Google Scholar
Easwaramorthy, S. and Jayaraj, S. (1988b) Effect of two granulosis viruses on the silkworms, Bombyx mori meridionalis F. and Philosamia ricini B. Entomon 13, 5759.Google Scholar
Easwaramoorthy, S. and Jayaraj, S.(1989a) Vertical transmission of granulosis virus of sugar-cane shoot borer, Chilo infuscatellus Snell. Trop. Pest Manage. 35, 352353.CrossRefGoogle Scholar
Easwaramoorthy, S. and Nandagopal, V. (1986) Life tables of internode borer, Chilo sacchariphagus indicus (K.) on a resistant and susceptible variety of sugarcane. Trop. Pest Manage. 32, 221228.CrossRefGoogle Scholar
Easwaramoorthy, S. and Santhalakshmi, G. (1987) Occurrence of a fungal disease in sugar-cane shoot borer, Chilo infuscatellus Snell. Entomon 12, 394395.Google Scholar
Easwaramoorthy, S. and Santhalakshmi, G. (1988) Efficacy of granulosis virus in the control of shoot borer, Chilo infuscatellus Snellen. J. Biol. Control 2, 2628.Google Scholar
Easwaramoorthy, S., Kurup, N. K. and Santhalakshmi, G. (1988) Arthropod predators in sugar-cane pest management. In Biocontrol Technology for Sugarcane Pest Management (Edited by David, H. and Easwaramoorthy, S.) pp. 208257. Sugar cane Breeding Institute, Coimbatore.Google Scholar
Easwaramoorthy, S., Nandagopal, V. and David, H. (1983) Seasonal importance of parasites and predators of sugar-cane internode borer, Chilo sacchariphagus indicus (K.). Proc. Symposium on Insect Ecology and Resource Management, Muzzaffarnagar, pp. 5861.Google Scholar
Easwaramoorthy, S., Nandagopal, V. and David, H. (1984) Predators of sugar-cane internode borer, Chilo sacchariphagus indicus K. Proc. Annu. Conv. Sugar Technol. Assoc. India, pp. 179182.Google Scholar
Easwaramoorthy, S., Kurup, N. K., Shanmugasundaram, M. and David, H. (1980) An exotic tachinid parasite Diatraeophaga striatilis Tns. establishes on sugar-cane internode borer. Proc. Annu. Conv. Deccan Sugar Technol. Assoc. 30, 147148.Google Scholar
Easwaramoorthy, S., David, H., Santhalakshmi, G., Shanmugasundaram, M., Nandagopal, V. and Kurup, N. K. (1989) Toxicity of certain insecticides to Sturmiopsis inferens a larval parasite of sugar-cane moth borers. Entomophaga 35, 130136.Google Scholar
Estioko, B. R. (1961) A review of sugarcane insect pest control in various parts of the world for the last 5 years, 1956–1960. Proc. Philippine Sugar Technol. Conv. 9, 8996.Google Scholar
Etienne, J. (1966) Introduction de Diatraeophaga striatalis à la Reunion. Rap. Inst. de Recherches Agron. Tropic Cult. vivrieres, Reunion 1965, 6478.Google Scholar
Fournier, D. and Etienne, J. (1981) Effect of parasitism by Nosematidae on the reproduction of Chilo sacchariphagus (Boj.) (Lepidoptera, Pyralidae). Agron. Trop. 36, 382388.Google Scholar
Ghani, M. A. and Williams, J. R. (1963) An attempt to establish the Javanese fly, Diatraeophaga striatalis Towns., in Mauritius for control of the cane moth borer, Proceras sacchariphagus Boj. with notes upon parasites of cane moth borers in Java. Proc. Int. Soc. Sugar Cane Technol. 11, 626642.Google Scholar
Gupta, B. D. (1951) A resume of the trials conducted during 1941–1944 with Trichogramma evanescens minutum Riley against the stem borer, Argyria sticticraspis Hmpsn., and the root borer, Emmalocera depressella Swinh., in Uttar Pradesh. Proc. Bienn. Conf. Sugar Cane Res. and Dev. Wkrs. India, 1, 1523.Google Scholar
Hattori, I. (1971) Stem borers of graminaceous crops in south east Asia. Proc. Symposium on Rice Insects. Tokyo, pp. 145153.Google Scholar
Huffaker, C. B. (1976) Augmentation of natural enemies in the People's Republic of China. In Biological Control by Augmentation of Natural Enemies (Edited by Ridgeway, R. L. and Vinson, S. B.) pp. 329339. Plenum Press, New York.Google Scholar
Irshad, M., Mirza, and Rahatullah, S. (1982) Control of the sugarcane borers, Chilo infuscatellus and Tryporyza nivella by Bactospeine, a microbial pesticide. Pertanica 5, 262264.Google Scholar
Ishii, T. (1940) The problems of biological control in Japan. Proc. 6th Pacific Science Congress 1939, 4, 356367.Google Scholar
Jai Rao, K. (1967) Trials with Taiwan strain of Lixophaga diatraeae in India. Tech. Bull. Commonw. Inst. Biol. Control 9, 2529.Google Scholar
Jai Rao, K. and Baliga, H. (1968) Sturmiopsis inferens Towns., a tachinid parasite of sugar-cane and paddy stem borers. Tech. Bull. Commonw. Inst. Biol. Control 10, 3338.Google Scholar
Jepson, W. F. (1954) A Critical Review of the World Literature on the Lepidopterous Stalk Borers of Tropical Graminaceous Crops. Commonwealth Institute of Entomology, London.Google Scholar
Kalra, A. N. and Chandra, J. (1978) Laboratory behaviour and biology of Sturmiopsis parasitica Curran, an exotic parasite of moth borers of sugar-cane. Proc. Ann. Conv. Deccan Sugar Technol. Assoc. 28, 6164.Google Scholar
Kalra, A. N. and Chandra, J. (1980) Laboratory and field evaluation of two exotic dipterous parasites against sugar-cane stalk borer, Chilo auricilius Ddgn. Indian J. Agric. Res. 14, 4246.Google Scholar
Kalra, A. N. and Kumar, S. (1963) Preliminary trials with a bacterial spore powder for the control of the stalk borer and internode borer of sugar-cane. Indian J. Sugar Cane Res. Dev. 8, 75.Google Scholar
Kamalakara, Rao (1980) Biological control of sugar-cane shoot borer and internode borer in the factory area of the Jeypore Sugar Company Ltd., Chagallu, W. G. District, Andhra Pradesh. In Biological Control of Sugar Cane Pests in India (Edited by Sithanantham, S. and Solayappan, A. R.), pp. 3738. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Kunhikannan, K. (1931) The mass rearing of the egg parasites of sugar-cane moth borer in Mysore (Preliminary experiments). J. Mysore Agric. Exp. U. 12, 5761.Google Scholar
Lakshminarayana, K. (1983) Pest management in sugar-cane in Andhra Pradesh. In Sugarcane Pest Management in India (Edited by Balasubramanian, M. and Solayappan, A. R.), pp. 6370. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Lee, Tsui-Ying (1961) The development of Trichogramma evanescens Westw. and its influence on the embryonic development of its host, Attacus cynthia ricini. Acta Entomol. Sin. 10, 339– 353.Google Scholar
Liu, A. C., Sun, Y. R., Wang, Z. Y. and Liu, G. F. (1985) The role of biological control in integrated management of sugar-cane pests. Kunchong Tiandi 7, 216222.Google Scholar
Macedo, N. and Botelho, F. S. M. (1986) Ten years of biological control of Diatraea saccharalis by Apanteles flavipes in Sao Paulo state (Brazil). Proc. Int. Soc. Sugar Cane Technol. 19, 551562.Google Scholar
Macedo, N., Mendonca, A. F., Memo, J. A. and Pinazz, A. F. (1984) Evaluation of the economic advantages of 10 years of biological control of Diatraea spp. through Apanteles flavipes Cameron in the state of Alagoas (Brazil). Entomol. Newsl., Int. Soc. Sugar Cane Technol. 16, 910.Google Scholar
Manjunath, T. M. (1988) Mass production and utilization of Trichogramma. In Biocontrol Technology for Sugar-cane Pest Management (Edited by David, H. and Easwaramoorthy, S.), pp. 111130. Sugar cane Breeding Institute, Coimbatore.Google Scholar
Mehta, U. K. and David, H. (1980) A granulosis virus disease of sugar-cane internode borer. Madras Agric. J. 67, 616619.Google Scholar
Metcalfe, J. R. (1969) The estimation of losses caused by sugar-cane moth borers. In Pests of Sugarcane (Edited by Williams, J. R., Metcalfe, J. R., Mungomery, R. W. and Mathes, R.), pp. 6179. Elsevier Publishing Company, Amsterdam.Google Scholar
Metcalfe, J. R. and Brenière, J. (1969) Egg parasites (Trichogramma spp.) for control of sugar-cane moth borers. In Pests of Sugar-cane (Edited by Williams, J. R., Metcalfe, R. W., Mungomery, R. W. and Mathes, R.), pp. 81116. Elsevier Publishing Company, Amsterdam.Google Scholar
Misra, M. P., Pawar, A. D. and Srivastava, U. L. (1986) Biocontrol of sugar-cane moth borers by releasing Trichogramma parasites at Harinagar, West Champaran, Bihar. Indian J. Plant Prot. 14, 8991.Google Scholar
Mohanraj, G. and Saxena, A. P. (1964) On the introduction into India of some tachinid parasites of sugar-cane moth borers. Tech. Bull. Commonw. Inst. Biol. Control 4, 4361.Google Scholar
Mohyuddin, A. I., Inayatullah, C. I. and King, E. G. (1981) Host selection and strain occurrence In A. flavipes (Cameron) (Hymenoptera: Braconidae) and its bearing on biological control of graminaceous stem borers (Lepidoptera: Pyralidae). Bull. entomol. Res. 71, 573581.CrossRefGoogle Scholar
Morel, G., Vercambre, B., Bergoin, M., and Louis, C. (1981) A cytoplasmic polyhedrosis in the spotted borer, Chilo sacchariphagus Boj. (Lepidoptera, Pyralidae). Agron. Trop. 36, 378381.Google Scholar
Moutia, L. A. (1942) Annual Rep. Department of Agriculture, Mauritius 1941, pp. 1421.Google Scholar
Moutia, L. A. (1943) Annual Rep. Department of Agriculture, Mauritius, 1942, pp. 1216.Google Scholar
Moutia, L. A. (1944) Annual Rep. Department of Agriculture, Mauritius, 1943. pp. 1215.Google Scholar
Moutia, L. A. and Courtois, C. M. (1952) Parasities of the moth borers of sugar-cane in Mauritius. Bull. entomol. Res. 43, 325359.CrossRefGoogle Scholar
Nagarkatti, S. (1980) Trichogrammatid parasites of sugar-cane borers in India—Distribution and identification. In Biological Control of Sugarcane Pests in India (Edited by Sithanantham, S. and Solayappan, A. R.), pp. 1320. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Nagarkatti, S. and Nagaraja, H. (1977) Biosystematics of Trichogramma and Trichogrammatoidea species. Annu. Rev. Entomol. 22, 157176.CrossRefGoogle Scholar
Nagarkatti, S. and Rao, V. P. (1975) Biology and rearing technique for Sturmiopsis parasitica (Curr.) (Diptera: Tachinidae) a parasite of graminaceous borers in Africa. Bull. Entomol. Res. 65, 65170.CrossRefGoogle Scholar
Nandagopal, V., Santhalakshmi, G., Shanmugasundaram, M., Kunju Krishna Kurup, N., Easwaramoorthy, S. and David, H. (1980) Laboratory evaluation of two exotic tachinid parasites for the control of sugar-cane borers. Pestol. 4, 1012.Google Scholar
Narayanan, E. S. and Mookherjee, P. B. (1953) Two decades of field trials in India with Trichogramma against the sugarcane borer, Argyria sp., and the root borer, Emmalocera depressella. Proc. Indian Sci. Congr. 40, 148149.Google Scholar
Pawar, A. D. (1987) Biological control of sugarcane pests in India. Plant Prot. Bull. 39, (1 and 2), 16.Google Scholar
Pu, C. L. and Liu, C. C. (1962) Sugar-cane borer control by Trichogramma evanescens Westw. Acta Entomol. Sin. 11, 409414.Google Scholar
Ramachandra Iyer, S., Krishnamurthy, S. and Basheer, M. (1951) Biological control of the early shoot borer, Argyria sticticraspis Hampson by Trichogramma minutum Riley in the Madras State. Proc. Bienn. Conf. Sugar Cane Res. and Dev. Wkrs. India. 1, 3139.Google Scholar
Rao, V. P. (1969a) Biological control of stalk moth borers in the old world—Part I. Indian Sugar 18, 813823.Google Scholar
Rao, V. P. (1969b) Biological control of stalk moth borers in the old world—Part II. Indian Sugar 18, 899920.Google Scholar
Rao, Y. R. V. G. and Rao, Y. S. (1980) Suitability tests with indigenous and exotic natural enemies of Chilo auricilius Ddgn. in the laboratory. Indian J. Agric. Res. 14, 169179.Google Scholar
Sankaran, T. and Manjunath, T. M. (1988) Biological control: Progress and problems. In Forty Years of Entomology in India (Edited by Bap Reddy, B.), pp. 7583. Plant Protection Association of India, Hyderabad.Google Scholar
Scaramuzza, L. C. (1930) Preliminary report on a study of the biology of Lixophaga diatraeae Tns. J. econ. Entomol. 23, 9991004.CrossRefGoogle Scholar
Seshagiri Rao, D. S., Puttarudriah, M. and Sastry, K. S. S. (1956) Biological control of sugar-cane borers in Mysore—A brief review of work done in regard to the production and liberation of Trichogramma evanescens minutum R. in Mysore. Proc. Int. Soc. Sugar Cane Technol. 9, 810814.Google Scholar
Sithanantham, S. (1980) Inundative release of Trichogramma and integration with insecticidal methods. In Biological Control of Sugarcane Pests in India (Edited by Sithanantham, S. and Solayappan, A. R.), pp. 4360. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Sithanantham, S., Muthuswamy, S. and Durai, R. (1973) Experiments on the inundative release of Trichogramma australicum Gir. in the biological control of sugar-cane stem borer, Chilo indicus Kapur. Madras Agric. J. 60, 457461.Google Scholar
Sivasankaran, P. (1988) Preliminary studies on Beauveria bassiana a fungal pathogen of sugarcane shoot borer, Chilo infuscatellus Snellen. M.Sc. (Agric) Thesis, Tamil Nadu Agricultural University, Coimbatore.Google Scholar
Skoroszewski, R. W. and Van Hamburg, H. (1987) The release of Apanteles flavipes (Cameron) (Hymenoptera: Braconidae) against stalk borers of maize and grain sorghum in South Africa. J. Entomol. Soc. S. Afr. 50, 249255.Google Scholar
Solayappan, A. R. (1980) Mass production of Trichogramma for release in factory area. In Biological Control of Sugarcane Pests in India (Edited by Sithanantham, S. and Solayappan, A. R.), pp. 2935. The Tamil Nadu Co-operative Sugar Federation, Madras.Google Scholar
Steinhaus, E. A. and Marsh, G. A. (1962) Report of diagnosis of diseased insects (1951–1961). Hilgardia 33, pp. 452.CrossRefGoogle Scholar
Subramaniam, T. V. (1937) Preliminary experiments on the mass production of Trichogramma parasites for control against sugar-cane borer in Mysore. Indian J. Agric. Sci. 7, 149155.Google Scholar
Subramaniam, T. V. (1941) Control of sugar-cane borers by the egg parasite Trichogramma minutum R. in Mysore. J. Mysore Agric. Exp. U. 19, 183187.Google Scholar
Subramaniam, T. V. and Seshagiri Rao, D. (1940) Biological control of sugar-cane borers in Mysore-Technique for the mass breeding of the flour moth (Corcyra cephalonica St.) as host material for the bulk production of th borer egg parasite, Trichogramma minutum Dep. Agric. Mysore (Entomology Series) 12, 112.Google Scholar
Takano, S. (1940) On the biological control of sugar-cane insects in Formosa. Rep. Jap. Ass. Adv. Sci. 15, 231233.Google Scholar
Takano, S. and Yanagihara, M. (1939) Researches on injurious and beneficial animals of sugar-cane. Sugar Exp. Stn. Extra Res. 2, pp. 311.Google Scholar
Tan, S. W. and Koh, H. L. (1980) Integrated control of sugar-cane borers in the north west Peninsula Malaysia and Lampung, Sumatra, Indonesia. Proc. Int. Soc. Sugar Cane Technol. 17, 16931703.Google Scholar
Ubandi, Haranto and Sunaryo, (1986) Introduction of Allorhogas pyralophagus (Braconidae) in Lampung (Indonesia) with preliminary notes on its biology. Proc. Int. Soc. Sugar Cane Technol. 19, 563567.Google Scholar
Usman, S., Puttarudriah, M., Appanna, M. and Shivasankara Sastry, K. S. (1964) Report of Work Done During the Period from 10th September 1948 to 31st March 1965. Department of Agriculture, Mysore State, pp. 102.Google Scholar
Usman, S., Shivasankara Sastry, K. S. and Puttarudriah, M. (1957) Report of Work Done on the Control of the Sugarcane Borers in the Visvesvaraya Canal Tract. Department of Agriculture, Mysore State, pp. 69.Google Scholar
Varadharajan, G. (1976) The scope and prospects in the utilisation of Trichogramma australicum Gir. for the control of sugar-cane internode borer, Chilo indicus K. in Tamil Nadu. Madras Agric. J. 64, 561571.Google Scholar
Varma, A., Nigam, H. and Singh, K. (1987) Laboratory and field evaluation of an exotic parasite Allorhogas pyralophagus Marsh (Hymenoptera: Braconidae) against sugar-cane stalk borer, Chilo auricilius Ddgn. (Lepidoptera: Pyralidae). Entomon 12, 367372.Google Scholar
Vignes, W. G. Des. (1981) Biological control of small moth borer (Diatraea spp.) on sugarcane in Trinidad. Entomol. Newsl. Int. Soc. Sugar Cane Technol. 10, 56.Google Scholar
Vinson, J. (1942) Biological control of Diatraea mauriciella Wlk. in Mauritius. I. Investigations in Ceylon in 1939. Bull. entomol. Res. 33, 3965.CrossRefGoogle Scholar
Williams, J. R. (1966) Annual Report Mauritius Sugar Industry Research Institute 1966, pp. 6167.Google Scholar
Williams, J. R. (1967) Annual Report Mauritius Sugar Industry Research Institute, 1967, 6169.CrossRefGoogle Scholar
Williams, J. R. (1968) Annual Report Mauritius Sugar Industry Research Institute 1968, 6570.Google Scholar
Williams, J. R. and Mamet, J. R. (1962) The insects and other invertebrates of sugar-cane in Mauritius and Reunion. Occasional Papers, Mauritius Sugar Industry Research Institute 8, pp. 23.Google Scholar
Williams, J. R. and Moutia, L. A. (1954) Some aspects of sugar-cane entomology in Mauritius. Proc. Int. Soc. Sugar Cane Technol. 8, 570573.Google Scholar
Yanagihara, M. (1934) Results of studies on Sesamia inferens Wlk., a serious pest of sugar-cane in Taichu Prefecture, Formosa. J. Formosan Sugar Planters Assoc. 12, 53.Google Scholar
Yen, D., Fung-Yean, (1962) Insect pathogens and microbial control of insects in Taiwan. Q. J. Taiwan Museum 15, 117122.Google Scholar