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DeVine®—The Way It Was Developed—An Industrialist's View

Published online by Cambridge University Press:  12 June 2017

Donald S. Kenney*
Affiliation:
Plant Sci., Abbott Lab. Agric. Res. Ctr., Long Grove, IL 60047

Extract

The use of biological control agents for the control of noxious pests is not new conceptual research. There are examples that predate by centuries the modern use of both herbicides and insecticides. For example, the successful control of insects by biological control was shown in 1762 by the introduction of the Mynah bird (Gracula religiosa Linnaeus) from India to Mauritius (4). In 1888, the Vedalia beetle (Rodolia cardinalis Muslant) was introduced to control the cottony-cushion scale (Icerya purchasi Maskell) of citrus (3). An example of biological control of weeds was reported in 1863 when it was observed that an infestation of prickly pear cactus (Opuntia humifusa Raf. # OPUHU) was decimated by the imported cochineal insect (Dactylopius tomentosus Lam.) (5).

Type
Research Article
Copyright
Copyright © 1986 by the Weed Science Society of America 

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References

Literature Cited

1. Burnett, H. C., Tucker, D.P.H., Patterson, M. E., and Ridings, W. H. 1973. Biological Control of Milkweed Vine With a Race of Phytophthora citrophthora . Proc. Fl. State Hortic. Soc. 86:111115.Google Scholar
2. Burnett, H. C., Tucker, D.P.H., and Ridings, W. H. 1974. Phytophthora Root and Stem Rot of Milkweed Vine. Plant Dis. Rep. 58:355357.Google Scholar
3. DeBach, P. 1974. The First Foreign Explorers. Pages 89100 in DeBach, P., ed. Biological Control by Natural Enemies. University Press, Cambridge.Google Scholar
4. DeBach, P. 1974. Early Naturalists and Experiments. Page 72 in DeBach, P., ed., Biological Control by Natural Enemies. University Press, Cambridge.Google Scholar
5. DeBach, P. 1974. Early Naturalists and Experiments. Page 78 in DeBach, P., ed. Biological Control by Natural Enemies. University Press, Cambridge.Google Scholar
6. DeBach, P. 1974. Early Naturalists and Experiments. Page 152 in DeBach, P., ed. Biological Control by Natural Enemies. University Press, Cambridge.Google Scholar
7. Kenney, D. S. and Couch, T. L. 1980. Mass Production of Biological Agents for Plant Disease, Weed and Insect Control. Pages 143150 in Papavizas, G. C., ed. Biological Control in Crop Protection. BARC Symp. No. 5, Allanheld, Osmun, Totowa.Google Scholar
8. Ridings, W. H., Burnett, H. C., Schoulties, C. L., and El-Gholl, N. E. 1976. Biological Control of Milkweed Vine in Florida Citrus Groves With a Pathotype of Phytophthora citrophthora . Pages 224240 in Freeman, T. E., ed. Proc. IV Int. Symp. on Biol. Control of Weeds. Univ. Florida, Gainesville.Google Scholar
9. Ridings, W. H., Shoulties, C. L., El-Gholl, N. E., and Mitchell, D. J. 1977. The Milkweed Vine Pathotype of Phytophthora citrophthora as a Biological Control Agent of Morrenia odorata . Proc. Int. Soc. Citric. 3:877881.Google Scholar
10. Ridings, W. H., Shoulties, C. L., Kannwishcer, M. E., Woodhead, S. H., and El-Gholl, N. E. 1982. Pages 240241 in Charudathan, L. R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar