- Patent Number:
5,512,280
- Appl. No:
08/329,472
- Application Filed:
October 26, 1994
- نبذة مختصرة :
A method for long term storage of a stable monodispersed aqueous suspension of conidia has been developed. This is based on the use of surfactants in a concentration range significantly higher than expected that is completely compatible with conidia, generally in the range of between 1 and 2% (w/v) in an aqueous suspension of between 0.01 and 50% (w/v) conidia. Fungal propagules (conidia) of entomopathogenic fungi such as M. anisopliae and B. bassiana can be successfully combined with higher than expected concentrations of commercially available anionic surfactants and wetting agents such as dioctyl sulfosuccinates (DSS) salts and derivatives thereof with no apparent negative impact upon either viability or insecticidal activity of the conidia. Other surfactants, dispersants and non-fungicidal materials can be added to the stabilized conidial suspensions without loss of viability, dispersibility, or shelf-life. Examples demonstrate the usefulness of these materials in the stabilization of conidial suspensions that remain viable and effective for the control of insects. The conidial formulations described in the examples can be applied in either dry or wet form.
- Inventors:
Johal, Sarjit S. (Hopkinton, MA); Marold, Lorraine M. (Worcester, MA)
- Assignees:
EcoScience Corporation (Northboro, MA)
- Claim:
We claim
- Claim:
1. A conidial formulation comprising fungal conidia in combination with an anionic sulfosuccinate surfactant in a concentration of between 0.001 and 100% (weight surfactant/volume), wherein the surfactant inhibits germination of the conidia and is not metabolized or degraded by the fungus.
- Claim:
2. The formulation of claim 1 wherein the surfactant comprises esters of sulpho saturated and unsaturated aliphatic dicarboxylic acids.
- Claim:
3. The formulation of claim 1 wherein the concentration of surfactant is between 0.2 and 20% (w/v).
- Claim:
4. The formulation of claim 3 wherein the concentration of surfactant is between 0.5 and 5% (w/v).
- Claim:
5. The formulation of claim 2 wherein the concentration of surfactant is between 1 and 2% (w/v).
- Claim:
6. The formulation of claim 1 wherein the conidia is selected from the group consisting of Metarhizium and Beauveria fungi.
- Claim:
7. The formulation of claim 1 wherein the conidia and surfactant are mixed together in a dry form.
- Claim:
8. The formulation of claim 1 wherein the conidial formulation comprises a monodispersion of conidia in an aqueous solution containing surfactant.
- Claim:
9. The formulation of claim 1 further comprising material selected from the group consisting of cationic surfactants, oils, and nonionic and anionic surfactants which do not inhibit mycelial growth or are degraded by the conidia.
- Claim:
10. A method of making a conidial formulation comprising fungal conidia in combination with an anionic sulfosuccinate surfactant in a concentration of between 0.001 and 100% (weight surfactant/volume), wherein the surfactant is not degraded by the fungus and inhibits germination of the conidia, comprising mixing the conidia with the surfactant.
- Claim:
11. The method of claim 10 wherein the surfactant comprises esters of sulpho saturated and unsaturated aliphatic dicarboxylic acids.
- Claim:
12. The method of claim 10 wherein the concentration of surfactant is between 0.2 and 20% (w/v).
- Claim:
13. The method of claim 12 wherein the concentration of surfactant is between 0.5 and 5% (w/v).
- Claim:
14. The method of claim 13 wherein the concentration of surfactant is between 1 and 2% (w/v).
- Claim:
15. The method of claim 10 wherein the conidia is selected from the group consisting of Metarhizium and Beauveria fungi.
- Claim:
16. The method of claim 10 wherein the conidia and surfactant are in a dry form and are mixed together and added to an aqueous solution to adhere surfactant to the surface of the conidia.
- Claim:
17. The method of claim 10 wherein the conidia is dispersed in an aqueous solution containing the surfactant.
- Claim:
18. The method of claim 10 further comprising adding to the conidial-surfactant mixture a material selected from the group consisting of cationic surfactants, oils, and nonionic and anionic surfactants which do not inhibit conidial adhesion or germination.
- Claim:
19. A method for killing insects comprising administering to the insects an effective amount of a conidial formulation comprising fungal conidia in combination with an anionic sulfosuccinate surfactant in a concentration of between 0.001 and 100% (weight surfactant/volume), wherein the surfactant is not degraded by the fungus and inhibits germination of the conidia.
- Claim:
20. The method of claim 19 wherein the surfactant comprises esters of sulpho saturated and unsaturated aliphatic dicarboxylic acids.
- Claim:
21. The method of claim 19 wherein the concentration of surfactant is between 0.2 and 20% (w/v).
- Claim:
22. The method of claim 19 wherein the concentration of surfactant is between 0.5 and 5% (w/v).
- Claim:
23. The method of claim 20 wherein the concentration of surfactant is between 1 and 2% (w/v).
- Claim:
24. The method of claim 19 wherein the conidia is selected from the group consisting of Metarhizium and Beauveria fungi.
- Claim:
25. The method of claim 19 wherein the conidia and surfactant are in a dry form and are administered as a powder or dry dispersion.
- Claim:
26. The method of claim 19 wherein the conidial formulation comprises a monodispersion in an aqueous solution containing surfactant and is applied by spraying to the insects or the area they travel through.
- Claim:
27. The method of claim 19 further comprising administering with the conidia-surfactant mixture material selected from the group consisting of cationic surfactants, oils, and nonionic and anionic surfactants which do not inhibit conidial adhesion or germination.
- Claim:
28. The method of claim 19 wherein the insects are selected from the group consisting of cockroaches, ants, termites, flies, wasps, mealworms, waxmoths, and corn root worms.
- Current U.S. Class:
424/935; 435/260; 4352/541
- Current International Class:
C12N 114; C12N 104; A01N 6304
- Patent References Cited:
2176423 October 1939 Jaeger
4008351 February 1977 Inoue et al.
4246258 January 1981 Ayers et al.
4877617 October 1989 Namikoshi et al.
4885310 December 1989 Kern
4925663 May 1990 Stimac
4959268 September 1990 Hagiwara et al.
5057315 October 1991 Gunner et al.
5057316 October 1991 Gunner et al.
5288634 February 1994 Harman et al.
- Other References:
Derwent Abs. 94-183915/22 2A9304811--(Mar. 30, 1994) Grigas et al.
Angus, T. A. and P. Luthy, "Formulationof Microbial Insecticides: III, Liquid Formulations, " Microbial control of Insects and Mites, Academic Press, Ed., 626-628 (1971).
Boucias, D. G., et al., "Nonspecific Factors Involved in Attachment of Entomopathogenic Deuteromycetes to Host Cuticle," App. and Env. Micro. 54(7):1795-1805 (1988).
Daoust, Richard A., et al., "Effect of Formulation on the Viability of Metarhizium anisopliae Conidia," J. Inver. Pathol. 41:151-16 (1983).
Daoust, Richard A., and Donald W. Roberts, "Studies on the Prolonged Storage of Metarhizium anisopliae Conidia: Effect of Temperature and Relative Humidity on Conidial Viability and Virulence against Mosquitoes," J. Inver. Path. 41:143-150 (1983).
Daoust, Richard A. and Donald W. Roberts, "Studies on the Prolonged Storage of Metarhizium anisopliae conidia: Effect of Growth Substrate on Conidial and Virulence against Mosquitoes," J. Inver. Path. 41:161-170 (1983).
Dillon, Roderick James and Anthony Keith Charnley, "A technique for accelerating and synchronising germination of conidia of the entomopathogenic fungus Metarhizium anisoplae" Arch. Microbiol. 142:204-206 (1985).
Ferron, P., "Biological Control of Insect Pests by Entomogenous Fungi," Ann. Rev. Entomol. 23:409-442 (1978).
Reinecke, P., et al., "A New Microbial Insecticide for Use in Horticultural Crops," Brighton Crop Protection Conference--Pests and Diseases 49-54 (1990).
Roberts, Donald W. and Amy S. Campbell, "Stability of Entomopathogenic Fungi," Entomol. Sci. Am., Miscellaneous Publications, 10:19-76 (1977).
Sandhu, S. S. et al., "Studies on Prolonged Storage of Beauveria bassiana Conidia: Effects of Temperatures and Relative Humidity on Conidial Viability and Virulence against Chickpea Borer, Helicoverpa armigera," Biocontrol Sci. and Tech. 3:47-53 (1993).
Ward, Michael G., "Formulationof Biological Insecticides," Advances in Pesticide Formulation Technology, American Chemical Society, Ed., Chapter 13:175-184 (1984).
- Primary Examiner:
Lilling, Herbert J.
- Attorney, Agent or Firm:
Arnall Golden & Gregory
- الرقم المعرف:
edspgr.05512280
No Comments.