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Journal Article

Vertical partitioning between sister species of R hizopogon fungi on mesic and xeric sites in an interior D ouglas‐fir forest

Kevin J. Beiler; Suzanne W. Simard; Valerie LeMay; Daniel M. Durall
Molecular Ecology · Vol. 21, Issue 24 · pp. 6163-6174 · 2012

Abstract

Understanding ectomycorrhizal fungal ( EMF ) community structure is limited by a lack of taxonomic resolution and autecological information. R hizopogon vesiculosus and R hizopogon vinicolor ( B asidiomycota) are morphologically and genetically related species. They are dominant members of interior D ouglas‐fir ( P seudotsuga menziesii var . glauca ) EMF communities, but mechanisms leading to their coexistence are unknown. We investigated the microsite associations and foraging strategy of individual R . vesiculosus and R . vinicolor genets. Mycelia spatial patterns, pervasiveness and root colonization patterns of fungal genets were compared between R hizopogon species and between xeric and mesic soil moisture regimes. R hizopogon spp. mycelia were systematically excavated from the soil and identified using microsatellite DNA markers. R hizopogon vesiculosus mycelia occurred at greater depth, were more spatially pervasive, and colonized more tree roots than R . vinicolor mycelia. Both species were frequently encountered in organic layers and between the interface of organic and mineral horizons. They were particularly abundant within microsites associated with soil moisture retention. The occurrence of R . vesiculosus shifted in the presence of R . vinicolor towards mineral soil horizons, where R . vinicolor was mostly absent. This suggests that competition and foraging strategy may contribute towards the vertical partitioning observed between these species. R hizopogon vesiculosus and R . vinicolor mycelia systems occurred at greater mean depths and were more pervasive in mesic plots compared with xeric plots. The spatial continuity and number of trees colonized by genets of each species did not significantly differ between soil moisture regimes.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2012-12-01
Publication Year2012
Volume21
Issue24
Pages6163-6174
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.12076
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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