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Biological Herbicides: Discovery, Development, Deployment

Published online by Cambridge University Press:  12 June 2017

George E. Templeton*
Affiliation:
Dep. Plant Pathol., Univ. of Arkansas, Fayetteville, AR 72701

Extract

Chemical herbicides are without question the most effective immediate solution to most weed problems. They are not, however, the only option or necessarily the best for all weed control situations (23, 24, 34). Recent commercialization of two biological herbicides illustrates another weed control technology with potential (24, 27, 44, 50). Abbott Laboratories marketed the fungus Phytophthora palmivora Butler in 1981 for control of strangler vine (Morrenia odorata Lindl.) in Florida citrus groves. The Upjohn Company will market the fungus (Colletotrichum gloeosporioides f. sp. aeschynomene (c.g.a.) in 1982 for control of northern jointvetch [Aeschynomene virginica (L.) B.S.P.] in Arkansas rice (Oryza sativa L.) and soybean [Glycine max (L.) Merr.] fields (45).

Type
Research Article
Copyright
Copyright © 1982 by the Weed Science Society of America 

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References

Literature Cited

1. Andres, L. A. 1981. Biological control of naturalized and native plants-. Conflicting interests, pages 341349 in Papavizas, G. C., ed. Biological Control in Crop Production (Beltsville Agric. Res. Center Symp. No. 5) Allanheld, Osmun and Co., Publishers, Totowa, NJ.Google Scholar
2. Andres, L. A., Davis, C. J., Harris, P., and Waphere, A. J. 1976. Biological control of weeds. Pages 481499 in Huffaker, C. B. and Messenger, P. S., eds. Theory and Practice of Biological Control. Academic Press, New York.CrossRefGoogle Scholar
3. Anonymous. 1975. Report to Criteria and Evaluation Division, Office of Pesticide Programs, Environmental Protection Agency 68-01-2454-Fungal Biocontrols Workshop, June 22–25, Fayetteville, AR. Amer. Inst. Biol. Sci. Arlington, VA. 43 pp.Google Scholar
4. Batra, S.W.T. 1981. Biological control of weeds: Principles and prospects. Pages 4561 in Papavizas, G. C., ed. Biological Control in Crop Production (Beltsville Agric. Res. Center Symp. No. 5) Allanheld, Osmun and Co., Publishers, Totowa, NJ.Google Scholar
5. Beasley, J. N., Patterson, L. T., Templeton, G. E., and Smith, R. J. Jr. 1975. Responses of animals to a fungus used as a biological herbicide. Ark. Farm Res. 24(6):16.Google Scholar
6. Bower, R. C. 1982. Commercialization of microbial biological control agents. Pages 157173 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
7. Boyette, C. D., Templeton, G. E., and Smith, R. J. Jr. 1979. Control of winged waterprimrose and northern jointvetch with fungal pathogens. Weed Sci. 27:497501.CrossRefGoogle Scholar
8. Capo, B. T. and TeBeest, D. O. 1981. Environmental conditions for infection of Anoda cristata with Alternaria macrospora . Phytopathology 71:865 (Abstr.) Google Scholar
9. Charudattan, R. 1982. Regulation of microbial biological control agents. Pages 175188 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
10. Churchill, B. W. 1982. Mass production of microorganisms for biological control. Pages 139156 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
11. Couch, T. L. and Kenney, D. S. 1981. Mass production of biological agents for plant disease, weed and insect control. Pages 143150 in Papavizas, G. C., ed. Biological Control in Crop Production (Beltsville Agric. Res. Center Symp. No. 5) Allanheld, Osmun and Co., Publishers, Totowa, NY.Google Scholar
12. Cullen, J. M. 1978. Evaluating the success of the programme for the biological control of Chondrilla juncea . Pages 117121 in Freeman, T. E., ed. Proc. Fourth Intl. Symp. on Biological Control of Weeds. Univ. of Fla, Gainesville, FL.Google Scholar
13. Daniel, J. T., Templeton, G. E., and Smith, R. J. Jr. 1974. Control of Aeschynomene sp. with Colletotrichum gloeosporioides Penz. f. sp. aeschynomene U. S. Patent 3,849,104.Google Scholar
14. Daniel, J. T., Templeton, G. E., Smith, R. J., and Fox, W. T. 1973. Biological control of northern jointvetch in rice with an endemic fungal disease. Weed Sci. 21:303307.CrossRefGoogle Scholar
15. Emge, R. G. and Kingsolver, C. H. 1977. Biological control of rush skeletonweed with Puccinia chondrillina . Proc. Am. Phytopathol. Soc. 4:215.Google Scholar
16. Emge, R. G. and Templeton, G. E. 1981. Biological control of weeds with plant pathogens. Pages 219226 in Papavizas, G. C., ed. Biological Control in Crop Production (Beltsville Agric. Res. Center Symp. No. 5) Allanheld, Osmun and Co., Publishers, Totowa, NJ.Google Scholar
17. Freeman, T. E. and Charudattan, R. 1981. Biological control of weeds with plant pathogens. Prospectus-1980. Proc. V. Intl. Symp. on Biological Control of Weeds. pp. 293299.Google Scholar
18. Hasan, S. 1974. First introduction of a rust fungus in Australia for biological control of skeleton weed. Phytopathology 64:253254.Google Scholar
19. Holcomb, G. E. 1982. Constraints on disease development. Pages 6171 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
20. Klerk, R. A., Smith, R. J. Jr., TeBeest, D. O., and Templeton, G. E. 1981. Interaction of pesticides and a mycoherbicide for the control of northern jointvetch (Aeschynomene virginica) in rice. Abstr., Twentieth Annu. Meeting, Arkansas Agric. Pesticide Assoc., December 8–9, 1981, Fayetteville, AR. pp. 78 (Abstract).Google Scholar
21. Klerk, R. A., Smith, R. J. Jr., TeBeest, D. O., and Templeton, G. E. 1982. Interaction of pesticides with mycoherbicide c.g.a. for the control of northern jointvetch in rice. Abstr., 1982 Meeting, South. Weed Sci. Soc. (In press).Google Scholar
22. Leonard, K. J. 1982. The benefits and potential hazards of genetic heterogeneity in plant pathogens. Pages 99112 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
23. McWhorter, C. G. 1978. Disciplinary challenges: Weed science. In: Development of Optimum Crop Production Systems for The Midsouth. Proc. Symp., Univ. of Ark., Fayetteville, AR. March 7–9. Special Rep. 67. Agric. Exp. Stn., Univ. of Ark, Div. of Agric., Fayetteville, AR. pp. 4144.Google Scholar
24. McWhorter, C. F. and Chandler, J. M. 1982. Conventional weed control technology. Pages 527 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
25. Nickle, W. R. 1981. Nematodes with potential for biological control of insects and weeds. Pages 181199 in Papavizas, G. D., ed. Biological Control in Crop Production (Beltsville Agr. Res. Center Symp. no. 5) Allanheld, Osmun and Co., Publishers, Totowa, NJ.Google Scholar
26. Quimby, P. C. 1982. Impact of diseases on plant populations. Pages 4760 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
27. Ridings, W. H., Mitchell, D. J., Shoulties, 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. Fourth Intl. Symp. on the Biological Control of Weeds. Univ. of Fla, Gainesville, FL.Google Scholar
28. Scheepens, P. C. 1980. Bestrijding van de Amerikaanse Vogelkers met Pathogene Schimmels; een perspectief, CABO-verslag nr. 29. Wageningen, Netherlands. 14 pp.Google Scholar
29. Scheepens, P. C. and van Zon, J.C.J. 1982. Microbial herbicides. In Kurstak, E., ed. Microbial Pesticides. Marcel Dekker, New York. (In press).Google Scholar
30. Shrum, R. T. 1982. Creating epiphytotics. Pages 113136 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
31. Smith, R. J. Jr. 1982. Integration of microbial biological control agents with existing pest management programs. Pages 189203 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
32. Smith, R. J. Jr., Daniel, J. T., Fox, W. T., and Templeton, G. E. 1973. Distribution in Arkansas of a fungus disease used for biocontrol of northern jointvetch in rice. Plant Dis. Rep. 57:695697.Google Scholar
33. Smith, R. J. Jr., Fox, W. T., Daniel, J. T., and Templeton, G. E. 1973. Can plant diseases be used to control weeds? Ark. Farm Res. 22(4): 12.Google Scholar
34. Smith, R. J. Jr. and Moody, K. 1981. Weed control practices in rice. Pages 458462 in Kommedahl, T., ed. Proc. Symp. IX Intl. Congr. Plant Prot., Washington, DC., August 5–11, 1979. Vol. II. Integrated Plant Protection for Agriculture Crops and Forest Trees. Burgess Publ. Co., Minneapolis, MN.Google Scholar
35. TeBeest, D. O., and Brumley, J. M. 1978. Colletotrichum gloeosporioides borne within the seed of Aeschynomene virginica . Plant Dis. Rep. 62:675678.Google Scholar
36. TeBeest, D. O., Templeton, G. E., and Smith, R. J. Jr. 1978. Decline of a biocontrol fungus in field soil during winter. Ark. Farm Res. 27(1):12.Google Scholar
37. TeBeest, D. O., Templeton, G. E., and Smith, R. J. Jr. 1978. Temperature and moisture requirements for development of anthracnose on northern jointvetch. Phytopathology 68:389393.Google Scholar
38. TeBeest, D. O., Templeton, G. E., and Smith, R. J. Jr. 1978. Histopathology of Colletotrichum gloeosporioides f. sp. aeschynomene in northern jointvetch. Phytopathology 68:12711275.Google Scholar
39. Templeton, G. E. 1982. Status of weed control with plant pathogens. Pages 2944 in Charudattan, R. and Walker, H. L., eds. Biological Control of Weeds with Plant Pathogens. John Wiley and Sons, New York.Google Scholar
40. Templeton, G. E. 1975. EPA issues first experimental use permit for biological control fungus. Rice J. 78(7):2930.Google Scholar
41. Templeton, G. E. 1976. Colletotrichum malvarum spore concentration and agricultural process. U.S. Patent 3,999,973.Google Scholar
42. Templeton, G. E., and Smith, R. J. Jr. 1977. Managing weeds with pathogens. Pages 167176 in Plant Disease: An Advanced Treatise. Horsfall, J. G. and Cowling, E. B., eds. Vol. I. Academic Press, New York.Google Scholar
43. Templeton, G. E., Smith, R. J. Jr., and Klomparens, W. 1980. Commercialization of fungi and bacteria for biological control. Biocontrol News Inf. 1(4):291294.Google Scholar
44. Templeton, G. E., Smith, R. J. Jr., TeBeest, D. O., Beasley, J. N., and Klerk, R. A. 1981. Field evaluation of dried fungus spores for biocontrol of curley indigo in rice and soybeans. Ark. Farm Res. 30(6):8.Google Scholar
45. Templeton, G. E., TeBeest, D. O., and Smith, R. J. Jr. 1976. Development of an endemic fungal pathogen as a mycoherbicide for biocontrol of northern jointvetch in rice. Proc. IV Intl. Symp. on Biological Control of Weeds. pp. 214216.Google Scholar
46. Templeton, G. E., TeBeest, D. O., and Smith, R. J. Jr. 1979. Biological weed control with mycoherbicides. Annu. Rev. Phytopathol. 17:301310.CrossRefGoogle Scholar
47. Templeton, G. E., and Trujillo, E. E. 1981. The use of plant pathogens in the biological control of weeds. Pages 345350 in Pimentel, D., ed. CRC Handb. Pest Manage. in Agric. Vol. II. CRC Press Inc., Boca Raton, FL.Google Scholar
48. van Zon, J.C.J. and Scheepens, P. C. 1979. Current status of biological weed control. Pages 325331 in Proc. Eur. Weed Res. Soc. Symp. The Influence of Different Factors on the Development and Control of Weeds, 1979. Centrum Voor Agro Biologisch Onderzoek, Wageningen, The Netherlands.Google Scholar
49. Walker, H. L. 1981. Granular formulation of Alternaria macrospora for control of spurred anoda (Anoda cristata) Weed Sci. 29:342345.Google Scholar
50. Woodhead, S. W., Ridings, W. H., and Schoulties, C. L. 1981. Field efficacy of Phytophthora palmivora for control of milkweed vine. Phytopathology 71:913 (Abstract).Google Scholar