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Leaf litter selection by detritivore and geophagous earthworms

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Summary

Litterbag experiments with 10 different kinds of leaf litter showed that detritivore (Lumbricus species) and geophagous (Aporrectodea species) earthworms prefer certain litter types over others, since different numbers of worms were found below the litter after 50–52 days of exposure in a pasture. The detritivores preferred Fraxinus, Tilia, and predecomposed Ulmus and Fagus litter to Fagus litter and paper, while geophages preferred Tilia litter to Alnus and Ulmus litter, so that the two groups of earthworms showed different preferences. The detritivores seemed to be more selective than the geophages. The palatability of the litter was examined in relation to the C: N ratio, the lignin concentration and the initial and final polyphenol concentration. The numbers of detritivores were significantly correlated with the C: N ratio and the final polyphenol concentration, so that selection of litter seems to be related to palatability. The numbers of geophages were not significantly correlated with any of the parameters for palatability. The disappearance of litter after 50–52 days appeared to be due to detritivore activity, since the numbers found below the litter were positively and significantly correlated with the litter disappearance. There was no significant correlation with geophage activity. This indicates that detritivores use litter as food, and therefore influence the composition of the litter layer.

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References

  • Bocock KL (1964) Changes in the amounts of dry matter, nitrogen, carbon and energy in decomposing woodland leaf litter in relation to the activities of the soil fauna. J Ecol 52:273–284

    Google Scholar 

  • Bornebush CH (1953) Laboratorieforsøg til belysning af regnormenes biologi. Dan Skoyforen Tidsskr 38:557–579

    Google Scholar 

  • Cooke A (1983) The effects of fungi on food selection by Lumbricus terrestris. In: Satchell JE (ed) Earthworm ecology. Chapman and Hall, London, pp 365–373

    Google Scholar 

  • Cooke A, Luxton M (1980) Effects of microbes on food selection by Lumbricus terrestris. Rev Ecol Biol Sol 17:365–370

    Google Scholar 

  • Goering HK, Van Soest PJ (1970) Forage fiber analyses. Agric Handb 379, Agric Res Serv US Dep Agric, Washington DC

    Google Scholar 

  • Heath GW, Arnold MK, Edwards C (1966) Studies in leaf litter breakdown: I. Breakdown rates of leaves of different species. Pedobiologia 6:1–12

    Google Scholar 

  • Hesse PR (1971) Soil chemical analysis. John Murray, London

    Google Scholar 

  • Holter P (1983) Effect of earthworms on the disappearance rate of cattle droppings. In: Satchell JE (ed) Earthworm ecology. Chapman and Hall, London, pp 49–58

    Google Scholar 

  • Holter P (1988) Cellulolytic activity in dung pats in relation to their disappearance rate. In: Harrison AF, Latter PM, Walton DW (eds) Cotton strip assay: An index of decomposition in soils. Inst Terrestr Ecol Symp 24, Grange-over-Sands, Oct. 1985, pp 72–77

  • Holter P, Hendriksen NB (1988) Respiratory loss and bulk export of organic matter from cattle dung pats: A field study. Holartic Ecol 11:81–86

    Google Scholar 

  • Jensen V (1974) Decomposition of angiosperm tree leaf litter. In: Dickinson CH, Pugh GFJ (eds) Biology of plant litter decomposition. Academic Press, London, pp 69–104

    Google Scholar 

  • King HGC, Heath GW (1967) The chemical analysis of small samples of leaf material and the relationship between the disappearance and composition of leaves. Pedobiologia 7:192–197

    Google Scholar 

  • Lee KE (1985) Earthworms. Academic Press, Sydney

    Google Scholar 

  • Lindquist B (1941) Undersökningar över några skandinaviska dagg-maskarters betydelse för lövförnans omvandling och för mulljordens struktur i svensk skogsmark. Senven Skogsvardsfoeren Tidsskr 1941:179–239

    Google Scholar 

  • Mommaerts-Billiet F (1971) Aspects dynamiques de la partition de la litière de feuilles. Bull Soc R Bot Belg 104:181–195

    Google Scholar 

  • Raw F (1962) Studies of earthworm populations in orchards: I. Leaf burial in apple orchards. Ann Appl Biol 50:389–404

    Google Scholar 

  • Richards B (1987) The microbiology of terrestrial ecosystems. Longman, New York, NY

    Google Scholar 

  • Ricker WE (1973) Linear regression in fishery research. J Fish Bd. Can 30:409–434

    Google Scholar 

  • Satchell JE, Low DG (1967) Selection of leaf litter by Lumbricus terrestris. In: Graff O, Satchell JE (eds) Soil organisms. North Holland, Amsterdam, pp 102–119

    Google Scholar 

  • Snedecor GW, Cochran WG (1967) Statistical methods, 6th edn. The Iowa State University Press, Ames, Iowa

    Google Scholar 

  • Swift MJ, Heal OW, Anderson JM (1979) Decomposition in terrestrial ecosystems. Blackwell, Oxford

    Google Scholar 

  • Williamson M (1972) The analysis of biological populations. Edward Arnold, London

    Google Scholar 

  • Wright MA (1972) Factors governing ingestion by the earthworm Lumbricus terrestris with special reference to apple leaves. Ann Appl Biol 70:175–188

    Google Scholar 

  • Zar JH (1984) Biostatistical analysis. Prentice-Hall Int, Englewood Cliffs, New Jersey

    Google Scholar 

  • Zucker WV (1983) Tannins: Does structure determine function? An ecological perspective. Am Nat 121:335–365

    Google Scholar 

Download references

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Hendriksen, N.B. Leaf litter selection by detritivore and geophagous earthworms. Biol Fertil Soils 10, 17–21 (1990). https://doi.org/10.1007/BF00336119

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  • DOI: https://doi.org/10.1007/BF00336119

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