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Tropical Soda Apple (Solanum viarum): A New Weed Threat in Subtropical Regions

Published online by Cambridge University Press:  12 June 2017

J. Jeffrey Mullahey
Affiliation:
Wildlife and Range Sci. Dep., Southwest Florida Res. Educ. Cent., Univ. Florida, IFAS, P.O. Drawer 5127, Immokalee, FL 33934
Michele Nee
Affiliation:
The New York Botanical Garden, Bronx, N.Y. 10458-5126
Richard P. Wunderlin
Affiliation:
Dep. Bio., Univ. South Florida, Tampa, FL 33620-5150
Kris R. Delaney
Affiliation:
Inc. 2557 U.S. 27 South, Sebring, FL 33870

Extract

In 1990, a broadleaf weed growing on a cattle ranch in Hendry County in southwest Florida was identified as tropical soda apple (Solanum viarum Dunal), a species native to Argentina and Brazil (5) (Figure 1). Tropical soda apple (TSA) was apparently collected in Florida from Glades County in 1988 (University of Florida Herbarium) but was observed on the Hendry County ranch as early as 1987. Having foliage unpalatable to livestock, this noxious weed can infest a pasture or rangeland within one to two years resulting in lower stocking rates (animals per hectare). However, livestock and wildlife (feral hogs, deer, raccoons) will eat the fruit and disseminate the seed via feces. Fruit production occurs throughout the year (primarily September through May) thus providing high numbers (40000 to 50 000 per plant) of viable seed (75% germination) for seed dispersal. Our objectives are to alert those concerned with weed control of the presence of TSA in subtropical regions of the U.S., to discuss the ecology and taxonomy of this weed, and to indicate areas for future research.

Type
Weed Alert!
Copyright
Copyright © 1993 by the Weed Science Society of America 

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References

Literature Cited

1. Association of Official Seed Analysts. 1981: Rules for testing seed. J. Seed Technol. 6:46.Google Scholar
2. Devassay, A. and Nair, E.V.G. 1983. Studies on medicinal plants. Sachitra-Ayurved. 35:601604.Google Scholar
3. Kaul, B. L. and Zutshi, U. 1982. Cultivation of Solanum khasianum Clarke for steroid: problems and promises. p. 2331 in Atal, C. K. and Kapur, B. M., eds. Cultivation and Utilization of Medicinal Aromatic Plants. Regional Research Laboratory, Council of Scientific and Industrial Research, Jammu-Tawi.Google Scholar
4. Morton, Conrad V. 1976. A revision of the Argentine species of Solanum . Cordoba, Republica Argentina, Academia Nacional Deciencies.Google Scholar
5. Nee, M. 1979. A revision of Solanum section Acanthophora. Ph.D. diss. Univ. of Wisconsin, Madison.Google Scholar
6. Nee, M. 1991. Synopsis of Solanum Section Acanthophora: A group of interest for glycoalkaloids. p. 258266 in Hawkes, J. G., Lester, R. N., Nee, M., Estrada, N., eds. Solanaceae III: Taxonomy, Chemistry, Evolution. Royal Botanic Gardens Kew, Richmond, Surrey, UK.Google Scholar
7. Patil, S. and Laloraya, M. M. 1981. Effect of spacing on the yield of solasodine in Solanum viarum Dunal: Source of raw material for the synthesis of steroids. Indian J. Plant Physiol. 24:237242.Google Scholar
8. Pingle, A. R. and Dnyansagar, V. R. 1980. Solanum viarum as a source of solasodine. Indian Drugs 17:366370.Google Scholar
9. Reddy, G. S. and Krishnan, R. 1988. Selection for berry yield and its components in ess-spiny diploid and advanced generation autotetraploids of Solanum viarum Dunal. South Indian Hortic. 36:131135.Google Scholar
10. Reddy, G. S., Krishnan, R., and Chandravadana, M. W. 1991. Planting density and arrangement for higher berry and solasodine yields in Solanum viarum; rectangular vs square spacing. Trop. Agric. (Trindad) 68:279283.Google Scholar
11. Saini, A. D., Mukherjee, M., and Biswas, R. C. 1965. Studies on the physiology of Solanum khasianum Clarke. Indian J. Plant Physiol. 8:103112.Google Scholar
12. Vincente, M. 1972. Germinacao de sementes de Solanum viarum Dunal. I: Tempo de armazenamento. Rev. Brasil Biol. 32:351354.Google Scholar
13. Vincente, M. 1972. Germinacao de sementes de Solanum viarum Dunal. II: Temperatura. Rev. Brasil Biol. 32:355360.Google Scholar
14. Vincente, M. 1972. Germinacao de sementes de Solanum viarum Dunal. III: Luz. Rev. Brasil Biol. 32:585591.Google Scholar
15. Vincente, M. 1974. Germinacao de sementes de Solanum viarum Dunal. V: Inibidor da germinaca. Rev. Brasil Biol. 34:8188.Google Scholar