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Enhanced leaf chlorophyll levels in plants treated with seaweed extract

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Abstract

Application to the soil of an aqueous alkaline extract ofAscophyllum nodosum resulted in higher concentrations of chlorophyll in the leaves of treated plants in comparison to control plants treated with an equivalent volume of water. Positive results were obtained with all species tested (tomato, dwarf French bean, wheat, barley, maize). When the seaweed extract was applied as a foliar spray, similar effects on leaf chlorophyll contents were obtained, except in the case of dwarf French bean plants, for which no significant difference was recorded between test and control plants. When the betaines present in the seaweed extract were applied as a mixture in the same concentrations as those in the diluted seaweed extract (γ-aminobutyric acid betaine 0.96 mg L−1, δ-aminovaleric acid betaine 0.43 mg L−1, glycinebetaine 0.34 mg L−1), very similar leaf chlorophyll levels were recorded for the seaweed extract and betaine treated plants. This suggests strongly that the enhanced leaf chlorophyll content of plants treated with seaweed extract is dependent on the betaines present.

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References

  • Bergmann H, Eckert H (1984) Einfluss von Glycinbetain auf die Wasserausnutzung von WinterweizenTriticum aestivum L. Biologia Plantae 26: 384–387.

    Google Scholar 

  • Blunden G (1991) Agricultural uses of seaweeds and seaweed products. In Guiry MD, Blunden G (eds), Seaweed Resources in Europe: Uses and Potential. J. Wiley & Sons, Chichester, 65–81.

    Google Scholar 

  • Blunden G, Cripps AL, Gordon SM, Mason TG, Turner CH (1986) The characterisation and quantitative estimation of betaines in commercial seaweed extracts. Bot. mar. 29: 155–160.

    Google Scholar 

  • Bokarev KS, Ivanova RP (1971) The effect of certain derivatives and analogs of choline and betaine on content of free amino acids in leaves of two species of potato differing with respect to frost resistance. Soviet Plant Physiol. 18: 302–305 (In Russian).

    Google Scholar 

  • Fletcher RA (1982) An improved bioassay for cytokinins using cucumber cotyledons. Plant Physiol. 69: 675–677.

    Google Scholar 

  • Génard H, Le Saos J, Billard J-P, Trémolières A, Boucaud J (1991) Affect of salinity on lipid composition, glycine betaine content and photosynthetic activity in chloroplasts ofSuaeda maritima. Plant Physiol. Biochem. 29: 421–427.

    Google Scholar 

  • Kraska T, Schonbeck F (1992) Resistance induction in plants by trigonelline and possible mechanisms. In Tyihák E (ed), Proceedings of 3rd International Conference on Role of Formaldehyde in Biological Systems. Methylation and Demethylation Processes. Hungarian Biochemical Society, 163–168.

  • Manninger K, Csösz M, Tyihák E (1992) Biochemical immunization of wheat plants to biotrophic fungi by endogenous, fully N-methylated compounds. In Tyihák E (ed), Proceedings of 3rd International Conference on Role of Formaldehyde in Biological Systems. Methylation and Demethylation Processes. Hungarian Biochemical Society, 157–162.

  • Pollard A, Wyn Jones RG (1979) Enzyme activities in concentrated solutions of glycinebetaine and other solutes. Planta 144: 291–298.

    Google Scholar 

  • Storey R, Wyn Jones RG (1975) Betaine and choline levels in plants and their relationship to NaCl stress. Plant Sci. Lett. 4: 161–168.

    Google Scholar 

  • Tyihák E, Blunden G, Ma Y-C (1994) Quantitative estimation of betaines in commercial seaweed extracts using overpressured layer chromatography. J. appl. Phycol. 6: 469–473.

    Google Scholar 

  • Tyihák E, Sarhan ART, Cong NT, Barna B, Kiraly Z. (1988) The level of trigonelline and other quaternary ammonium compounds in tomato leaves in ratio to the changing nitrogen supply. Plant and Soil 109: 285–287.

    Google Scholar 

  • Whapham CA, Blunden G, Jenkins T, Hankins SD (1993) Significance of betaines in the increased chlorophyll content of plants treated with seaweed extract. J. appl. Phycol. 5: 231–234.

    Google Scholar 

  • Whapham CA, Jenkins T, Blunden G, Hankins SD (1992) Increased chlorophyll content of tomato leaves treated with seaweed extracts. Br. phycol. J. 27: 102.

    Google Scholar 

  • Wu Y, Jenkins T, Blunden G, Whapham CA, Hankins SD (1997) The role of betaines in alkaline extracts ofAscophyllum nodosum in the reduction ofMeloidogyne javanica andM. incognita infestations of tomato plants. Fundam. appl. Nematol. 20: in press.

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Correspondence to Gerald Blunden.

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Blunden, G., Jenkins, T. & Liu, YW. Enhanced leaf chlorophyll levels in plants treated with seaweed extract. J Appl Phycol 8, 535–543 (1996). https://doi.org/10.1007/BF02186333

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  • DOI: https://doi.org/10.1007/BF02186333

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