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Species effects on earthworm density in tropical tree plantations in Hawaii

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Summary

Tree species differ in the quantity and quality of litter produced, and these differences may significantly affect ecosystem structure and function. I examined the importance of tree species in determining earthworm densities in replicated stands of Eucalyptus saligna Sm. and Albizia falcataria (L.) Fosberg, and in mixed stands (25% albizia and 75% eucalyptus). Mean earthworm densities ranged from 92 m-2 in the pure eucalyptus, to 281 m-2 in the mixture, and a maximum of 469 m-2 in the pure albizia stands. Only two earthworm species were present, Pontoscolex corethrurus and Amynthas gracilis. Leaf biomass on the forest floor was highest in the pure eucalyptus and lowest in the pure albizia stands, whereas the annual fine litterfall production was lowest in the pure eucalyptus and highest in the albizia stands. The N content of fine litterfall was correlated positively with earthworm density, and the fine litterfall biomass: N ratio was correlated negatively with earthworm density. Greater leaf biomass on the forest floor under eucalyptus stands despite lower rates of litterfall suggests that litter quality, rather than litter quantity, was primarily responsible for the greater earthworm density in the albizia stands. Some biogeochemical effects of tree species in the tropics may be mediated through effects on earthworm populations.

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References

  • Apler GH (1990) Alteration of earthworm community biomass by the alien Myrica faya in Haiwai'i. Oecologia 82:414–416

    Google Scholar 

  • Barois I, Lavelle P (1986) Changes in respiration rate and some physicochemical properties of a tropical soil during transit through Pontoscolex corethrurus (Glassoscolecidae, Oligochaeta). Soil Biol Biochem 18:539–541

    Google Scholar 

  • Barois I, Verdier B, Kaiser P, Lavelle P, Mariotti A, Rangel P (1987) Influence of the tropical earthworm Pontoscolex corethrurus (Glossoscolecidae) on the fixation and mineralization of nitrogen. In: Bonvicini AM, Omodeo P (eds) On earthworms. Mucchi Editore, Modena, Italy, pp 151–159

    Google Scholar 

  • Binkley D, Valentine D (1991) Fifty-year biogeochemical effects of green ash, white pine, and Norway spruce in a replicated experiment. For Ecol Manage 40:13–25

    Google Scholar 

  • Binkley D, Dunkin KA, DeBell D, Ryan MG (1992) Production and nutrient cycling in mixed plantations of Eucalyptus and Albizia in Hawaii. For Sci 38:393–408

    Google Scholar 

  • Boettcher SE, Kalisz PJ (1991) Single-tree influence on earthworms in forest soils in eastern Kentucky. Soil Sci Soc Am J 55:862–865

    Google Scholar 

  • Brown AHF, Harrison AF (1983) Effects of tree mixtures on earthworm populations and nitrogen and phosphorus status in Norway spruce (Picea abies) stands. In: Lebrun P, Aneré HM, DeMedts A, Grégoire-Wibo C, Wauthy G (eds) Proceedings of the VIII Int Colloquium of Soil Zoology. Imprimeur DIEU-BRICHART, Ottignies-Louvain-la-Neuve, pp 101–108

    Google Scholar 

  • Cuendet G (1984) A comparative study of the earthworm population of four different woodland types in Wytham woods, Oxford. Pedobiologia 26:421–439

    Google Scholar 

  • DeBell DS, Whitesell CD, Schubert TH (1989) Using N2-fixing Albizia to increase growth of Eucalyptus plantations in Hawaii. For Sci 35:64–75

    Google Scholar 

  • Dunkin K (1989) Nitrogen-fixing albizia increases nitrogen cycling in eucalyptus plantations. MS thesis, Colorado State Univ, Fort Collins, Colorado

    Google Scholar 

  • Ferrière G, Bouché MB (1985) Première mesure écophysiologique d'un débit d'élément dans un compartiment endogé: Le débit d'azote de Nicodrilus longus Ude (Lubricidae oligochaeta) dans la prairie de Citeaux. CR Acad Sci 301:789–794

    Google Scholar 

  • Kalisz PJ, Dotson DB (1989) Land-use history and the occurrence of exotic earthworms in the mountains of eastern Kentucky. Am Midl Nat 122:228–297

    Google Scholar 

  • Lavelle P (1988) Earthworm activities and the soil systems. Biol Fertil Soils 6:237–251

    Google Scholar 

  • Lavelle P, Barois I, Cruz I, Fragoso C, Hernandez A, Pineda A, Rangel P (1987) Adaptive strategies of Pontoscolex corethrurus (Glossoscolecidae, Oligachaeta), a peregrine hemophagous earthworm of the humid tropics. Biol Fertil Soils 5:188–194

    Google Scholar 

  • Lavelle B, Barois I, Martin A, Zaidi Z, Schaefer R (1989) Management of earthworm populations in agro-ecosystems: A possible way to maintain soil quality? In: Clarholm M, Bergström L (eds) Ecology of arable land. Kluwer Academic Publishers, New York, pp 109–122

    Google Scholar 

  • Nelson D, Sommers L (1980) Total nitrogen of soil and plant tissue. J Assoc Anal Chem 63:770–778

    Google Scholar 

  • Neter J, Wasserman W (1985) Applied linear statistical models. Richard D Irwin Inc, Homewood, Illinois

    Google Scholar 

  • Rhoades C (1991) Factors influencing soil pH beneath Eucalyptus and Albizia plantations. MS thesis, Colorado State Univ, Fort Collins, Colorado

    Google Scholar 

  • Satchell JE (1967) Lumbricidae. In: Burges A, Raw F (eds) Soil biology. Academic Press, London, pp 259–322

    Google Scholar 

  • Satchell JE, Lowe DG (1967) Selection of leaf litter by Lumbricus terrestris. In: Graf O, Satchell JE (eds) Progress in soil biology: Proceedings of the Colloquium on dynamics of soil communities. Fr Vieweg Braunschweig, pp 102–119

    Google Scholar 

  • SAS Inc (1987) SAS guide for personal computers, 6th edn. Cary, North Carolina

  • Springett JA (1983) Effect of five species of earthworm on some soil properties. J Appl Ecol 20:865–872

    Google Scholar 

  • Syers JK, Springett JA (1984) Earthworms and soil fertility. Plant and Soil 76:93–104

    Google Scholar 

  • Turner DP, Franz EH (1985) The influence of western hemlock and western red cedar on microbial numbers, nitrogen mineralization, and nitrification. Plant and Soil 88:259–267

    Google Scholar 

  • Vitousek PM, Walker LR (1989) Biological invasion by Myrica faya in Hawaii: Plant demography, nitrogen fixation, and ecosystem effects. Ecol Monogr 59:247–265

    Google Scholar 

  • Vitousek PM, Walker LR, Whiteaker LD, Mueller-Dombois D, Matson PA (1987) Biological invasion by Myrica faya alters ecosystem development in Hawaii. Science 238:802–804

    Google Scholar 

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Zou, X. Species effects on earthworm density in tropical tree plantations in Hawaii. Biol Fertil Soils 15, 35–38 (1993). https://doi.org/10.1007/BF00336285

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