Effects of earthworms and organic litter distribution on plant performance and aphid reproduction
- 1 September 2003
- journal article
- Published by Springer Nature in Oecologia
- Vol. 137 (1) , 90-96
- https://doi.org/10.1007/s00442-003-1329-x
Abstract
Human management practices and large detritivores such as earthworms incorporate plant litter into the soil, thereby forming a heterogeneous soil environment from which plant roots extract nutrients. In a greenhouse experiment we investigated effects of earthworms and spatial distribution of 15N-labelled grass litter on plants of different functional groups [Lolium perenne (grass), Plantago lanceolata (forb), Trifolium repens (legume)]. Earthworms enhanced shoot and root growth in L. perenne and P. lanceolata and N uptake from organic litter and soil in all plant species. Litter concentrated in a patch (compared with litter mixed homogeneously into the soil) increased shoot biomass and 15N uptake from the litter in L. perenne and enhanced root proliferation in P. lanceolata when earthworms were present. Growth of clover (T. repens) was rather independent of the presence of earthworms and organic litter distribution: nevertheless, clover took up more nitrogen in the presence of earthworms and exploited more 15N from the added litter than the other plant species. The magnitude of the effects of earthworms and organic litter distribution differed between the plant species, indicating different responses of plants with contrasting root morphology. Aphid (Myzus persicae) reproduction was reduced on P. lanceolata in the presence of earthworms. We suggest that earthworm activity may indirectly alter plant chemistry and hence defence mechanisms against herbivores.Keywords
This publication has 5 references indexed in Scilit:
- The nitrogen handling characteristics of white clover (Trifolium repens L.) cultivars and a perennial ryegrass (Lolium perenne L.) cultivarJournal of Experimental Botany, 2000
- Links between the detritivore and the herbivore system: effects of earthworms and Collembola on plant growth and aphid developmentOecologia, 1999
- An Arabidopsis MADS Box Gene That Controls Nutrient-Induced Changes in Root ArchitectureScience, 1998
- Patchy habitats, division of labour and growth dividends in clonal plantsTrends in Ecology & Evolution, 1997
- Protozoa, Nematoda and Lumbricidae in the rhizosphere of Hordelymus europeaus (Poaceae): faunal interactions, response of microorganisms and effects on plant growthOecologia, 1996