Hostname: page-component-78c5997874-v9fdk Total loading time: 0 Render date: 2024-11-10T11:15:26.411Z Has data issue: false hasContentIssue false

Relative intrinsic toxicity of seven insecticides to foragers of the Indian hive bee, Apis cerana indica F.

Published online by Cambridge University Press:  19 September 2011

S. Lingappa
Affiliation:
Department of Entomology, University of Agricultural Sciences, Bangalore-560 024, India
A. Jagadish
Affiliation:
Department of Entomology, University of Agricultural Sciences, Bangalore-560 024, India
K. Shivaramu
Affiliation:
Department of Entomology, University of Agricultural Sciences, Bangalore-560 024, India
H. P. Prabhuswamy
Affiliation:
Department of Entomology, University of Agricultural Sciences, Bangalore-560 024, India
Get access

Abstract

Intrinsic toxicity of seven insecticides including bromophos, bromophos-ethyl and deltamethrin to the Indian hive bee Apis cerano indica is reported. Bromophos was safer than endosulfan, while deltamethrin was the most toxic.

Résumé

Pour la première fois, les riveaux de toxicité intrinsèque des insecticides comme bromophos, bromophos-ethyl et delamethrin à l'abeille ruchiene undienne, Apis cerana indica sont reportés. Bromophos est plus sauf que l'endosulfan. Deitamethrin etait la plus toxique.

Type
Research Article
Copyright
Copyright © ICIPE 1985

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Abbot, W. S. (1925) A method for computing the effectiveness of an insecticide. J. econ. Ent. 18, 265267.CrossRefGoogle Scholar
Atkins, E. L., Greywood, E. A. and Macdonald, R. L. (1973) Toxicity of pesticides and other chemicals to honey bees—Laboratory studies. Univ. Calif, agric, ext. ser. M-26.Google Scholar
Attri, B. S. and Sharma, P. L. (1969) Toxicity of some new insecticides to Indian honey bee (Apis indica F.). Pesticides 3, 2729.Google Scholar
Bai, A. R. K. and Reddy, C. C. (1977) Laboratory toxicity of some insecticides to Apis cerana indica. J. apic. Res. 16, 161162.Google Scholar
Crane, E. and Walker, P. (1983) The impact of pest management on bees and pollination. International Bee Research Association, U.K., pp. 4548.Google Scholar
Goulden, C. H. (1952) Methods of statistical analysis. Bombay Asia Ltd, pp. 394417.Google Scholar
Graves, J. B. and Mackenson, O. (1965) Topical application and insecticide resistance studies on honey bees. J. econ. Ent. 58, 990993.CrossRefGoogle Scholar
Hameed, S. P., Adlakha, R. L. and Giamzo, S. P. (1973) Relative toxicity of some insecticides to Apis mellifera. Madras agric. J. 60, 552556.Google Scholar
Kapil, R. P. and Lamba, D. P. S. (1974) Toxicity of some important insecticides to Apis cerana Fab. Indian J. Ent. 36, 610.Google Scholar
Mishra, R. C. and Verma, A. K. (1982) Relative toxicity of some insecticides to Apis cerana indica F. workers. Indian Bee J. 44, 6971.Google Scholar
Pimentel, D.et al. (1980) Environmental and social costs of pesticides—a preliminary assessment. Oikos 34, 126140.CrossRefGoogle Scholar
Singh, M., Sharma, P. L. and Dhaliwal, H. S. (1974) Toxicity of insecticides to honey bee workers Apis cerana indica. Pesticides 8, 2829.Google Scholar