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Mechanisms of stabilization of earthworm casts and artificial casts
Authors:J C Y Marinissen  A R Dexter
Institution:(1) Department of Soil Science and Geology, Agricultural University, P.O.B. 37, 6700 AA Wageningen, The Netherlands;(2) Department of Soil Science, Waite Agricultural Research Institute, The University of Adelaide, 5064 Glen Osmond, South Australia, Australia
Abstract:Summary Fresh casts were collected from the earthworm species Aporrectodea caliginosa, and artificial casts were also made. The casts were subjected to ageing, drying-rewetting, and sterilization by hexanol vapour. Clay dispersion was determined, as a measure of the lack of stability of the casts. Two soils were used, the topsoil of a recently reclaimed polder soil in the Netherlands and the topsoil from a South Australian duplex soil. For both soils the fresh worm casts had higher dispersible clay than the artificial casts. During ageing, both types of casts became more stable. There are strong indications that this was mainly due to changes on the surface of the casts. Fungi developed on the surface of 6-day-old worm casts made of Australian soil. This gave a higher stability to the casts compared to artificial casts of the same age without fungal growth. With both types of casts, hexanol inhibited fungal growth on the surface of the casts, reducing the stabilizing effect of ageing. The fungus did not develop on Dutch soil casts until after 42 days, and the development of a higher stability with age was also less marked than in the Australian soil. When the casts were subjected to a drying and rewetting cycle before analysis, they became much more stable than the casts that were analyzed wet. The drying-rewetting cycle removed most of the differences between the worm casts and the artificial casts, and also removed any effects of ageing.Dedicated to the late Prof. Dr. W. Kühnelt
Keywords:Aggregate stability  Aporrectodea caliginosa  Casts  Dispersion index  Age-hardening  Fungal hyphae  Earthworms
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