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Allelopathic influence ofSorghum bicolor on weeds during germination and early development of seedlings

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Abstract

The allelopathic interaction between sorghum [Sorghum bicolor (L.) Moench] and 10 species of grass and broadleaf weeds was investigated. Germination of weed seeds was slightly inhibited or stimulated, depending on species, when incubated in closed Petri dishes with germinating sorghum. Subsequent radicle and hypocotyl or coleoptile elongation of weeds was significantly inhibited by the germinating sorghum. For weeds interplanted with sorghum and grown under greenhouse conditions. The inhibitory effect on some weed species was still evident after 2 months of growth. Significant differences were found in the dry matter per weed plant grown in pots in proximity to sorghum vs. weeds grown in monoculture. Aqueous leachates from pots planted with sorghum alone or from a system in which sorghum roots protruded into water had strong allelopathic activity. These results indicate that water-soluble allelochemicals are produced by germinating sorghum seeds and that production of these substances continues during seedling growth.

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References

  • Abdul-Wahab, A.S., andRice, E.L. 1967. Plant inhibition by Johnson grass and its possible significance in old-field succession.Bull. Torrey Bot. Club 94:486–497.

    Google Scholar 

  • Burgos-Leon, W., Gaury, F., Nicou, R., Chopart, J.L., andDommeroues, Y. 1980. Études et travaux: Un cas de fatigue des sols induite par la culture du sorgho.Agron. Trop. (Paris) 35:319–334.

    Google Scholar 

  • Guenzi, W.D., andMcCalla, T.M. 1962. Inhibition of germination and seedling development by crop residues.Soil Sci. 26:456–458.

    Google Scholar 

  • Guenzi, W.D., McCalla, T.M., andNorstadt, F.A. 1967. Presence and persistence of phyto toxic substances in wheat, oat, corn, and sorghum residues.Agron. J. 59:163–165.

    Google Scholar 

  • Hoagland, D.R. andArnon, D.I. 1950. The water culture method for growing plants without soil. Univ. Calif. Agr. Exp. Stn. Circ. 347.

  • Lawrence, T., andKilcher, M.R. 1961. The effect of fourteen root extracts upon germination and seedling length of fifteen plant species.Can. J. Plant Sci. 43:308–313.

    Google Scholar 

  • Lehle, F.R., andPutnam, A.R. 1982. Quantification of allelopathic potential of sorghum residues by novel indexing of Richard's function fitted to cumulative cress seed germination curves.Plant Physiol. 69:1212–1216.

    Google Scholar 

  • Nicollier, G.F., Pope, D.F., andThompson, A.C. 1983. Biological activity of dhurrin and other compounds from Johnson grass (Sorghum halepense).J. Agric. Food Chem. 31:744–748.

    Google Scholar 

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Agricultural Research Service, U.S. Department of Agriculture.

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Panasiuk, O., Bills, D.D. & Leather, G.R. Allelopathic influence ofSorghum bicolor on weeds during germination and early development of seedlings. J Chem Ecol 12, 1533–1543 (1986). https://doi.org/10.1007/BF01012370

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  • DOI: https://doi.org/10.1007/BF01012370

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