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- W2143146511 abstract "Summary A lnus trees associate with ectomycorrhizal ( ECM ) fungi and nitrogen‐fixing F rankia bacteria and, although their ECM fungal communities are uncommonly host specific and species poor, it is unclear whether the functioning of A lnus ECM fungal symbionts differs from that of other ECM hosts. We used exoenzyme root tip assays and molecular identification to test whether ECM fungi on A lnus rubra differed in their ability to access organic phosphorus ( P ) and nitrogen ( N ) when compared with ECM fungi on the non‐ F rankia host P seudotsuga menziesii . At the community level, potential acid phosphatase ( AP ) activity of ECM fungal root tips from A . rubra was significantly higher than that from P . menziesii , whereas potential leucine aminopeptidase ( LA ) activity was significantly lower for A . rubra root tips at one of the two sites. At the individual species level, there was no clear relationship between ECM fungal relative root tip abundance and relative AP or LA enzyme activities on either host. Our results are consistent with the hypothesis that ECM fungal communities associated with A lnus trees have enhanced organic P acquisition abilities relative to non‐ F rankia ECM hosts. This shift, in combination with the chemical conditions present in A lnus forest soils, may drive the atypical structure of A lnus ECM fungal communities." @default.
- W2143146511 created "2016-06-24" @default.
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- W2143146511 date "2013-12-10" @default.
- W2143146511 modified "2023-10-17" @default.
- W2143146511 title "Testing the link between community structure and function for ectomycorrhizal fungi involved in a global tripartite symbiosis" @default.
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- W2143146511 doi "https://doi.org/10.1111/nph.12638" @default.
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