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  Earthworms (Lumbricus terrestris) affect plant seedling recruitment and microhabitat heterogeneity

Milcu, A., Schumacher, J., & Scheu, S. (2006). Earthworms (Lumbricus terrestris) affect plant seedling recruitment and microhabitat heterogeneity. Functional Ecology, 20(2), 261-268. doi:10.1111/j.1365-2435.2006.01098.x.

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BGC0940.pdf (Publisher version), 153KB
 
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Milcu, A., Author
Schumacher, J.1, Author           
Scheu, S., Author
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1Department Biogeochemical Processes, Prof. E.-D. Schulze, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497751              

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Free keywords: Anecic earthworms Lumbricidae Regeneration niche Seed size Secondary seed dispersal Grassland community Tallgrass prairie Soil Seeds Succession Diversity Regeneration Disturbance Collembola Vegetation
 Abstract: 1. The effects of the anecic earthworm Lumbricus terrestris L. on plant seedling recruitment and spatial aggregation were investigated in a microcosm glasshouse experiment by varying plant seed size (small and large); functional groups (grasses, legumes, herbs); plant species diversity (1, 3, 6); and plant functional group diversity (1, 3). 2. Generally, earthworms buried seeds quickly irrespective of seed size and species. Secondary seed dispersal (phase II dispersal) by earthworms affected plant community composition depending mainly on seed size but less on plant functional group identity and diversity: small-seeded species were repressed whereas large-seeded were promoted. 3. Although, in general, recruitment of seedlings was less in the presence of L. terrestris, recruited seedlings benefited from establishing in the vicinity of earthworm burrows. The strong aggregation of plants in the vicinity of earthworm burrows resulted in plant communities with a more heterogeneous small-scale architecture. Earthworm burrows and middens acted as an important regeneration niche for emergent seedlings by reducing microsite and nutrient limitations. 4. In conclusion, seed dispersal, seed burial, seedling recruitment, and the spatial distribution of seedlings of plant species of different functional groups and with a wide range of seed size are strongly affected by L. terrestris, and this probably affects plant community composition. [References: 44]

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 Dates: 2006
 Publication Status: Issued
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 Identifiers: Other: BGC0940
DOI: 10.1111/j.1365-2435.2006.01098.x
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Title: Functional Ecology
Source Genre: Journal
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Publ. Info: Oxford, U.K. : Blackwell Scientific Publications
Pages: - Volume / Issue: 20 (2) Sequence Number: - Start / End Page: 261 - 268 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/954925501172
ISSN: 0269-8463