Molecular phylogenetic biodiversity assessment of arctic and boreal ectomycorrhizal Lactarius Pers. (Russulales; Basidiomycota) in Alaska, based on soil and sporocarp DNA
- 5 May 2009
- journal article
- Published by Wiley in Molecular Ecology
- Vol. 18 (10) , 2213-2227
- https://doi.org/10.1111/j.1365-294x.2009.04192.x
Abstract
Despite the critical roles fungi play in the functioning of ecosystems, especially as symbionts of plants and recyclers of organic matter, their biodiversity is poorly known in high-latitude regions. In this paper, we discuss the molecular diversity of one of the most diverse and abundant groups of ectomycorrhizal fungi: the genus Lactarius Pers. We analysed internal transcribed spacer rDNA sequences from both curated sporocarp collections and soil polymerase chain reaction clone libraries sampled in the arctic tundra and boreal forests of Alaska. Our genetic diversity assessment, based on various phylogenetic methods and operational taxonomic unit (OTU) delimitations, suggests that the genus Lactarius is diverse in Alaska, with at least 43 putative phylogroups, and 24 and 38 distinct OTUs based on 95% and 97% internal transcribed spacer sequence similarity, respectively. Some OTUs were identified to known species, while others were novel, previously unsequenced groups. Non-asymptotic species accumulation curves, the disparity between observed and estimated richness, and the high number of singleton OTUs indicated that many Lactarius species remain to be found and identified in Alaska. Many Lactarius taxa show strong habitat preference to one of the three major vegetation types in the sampled regions (arctic tundra, black spruce forests, and mixed birch-aspen-white spruce forests), as supported by statistical tests of UniFrac distances and principal coordinates analyses (PCoA). Together, our data robustly demonstrate great diversity and nonrandom ecological partitioning in an important boreal ectomycorrhizal genus within a relatively small geographical region. The observed diversity of Lactarius was much higher in either type of boreal forest than in the arctic tundra, supporting the widely recognized pattern of decreasing species richness with increasing latitude.Keywords
This publication has 49 references indexed in Scilit:
- The fungal dimension of biodiversity: magnitude, significance, and conservationPublished by Elsevier ,2009
- Molecular diversity assessment of arctic and borealAgaricustaxaMycologia, 2008
- Genetic diversity of ectomycorrhizal Basidiomycetes from African and Indian tropical rain forestsMycorrhiza, 2007
- Perspectives in the new RussulalesMycologia, 2006
- Diversity of Basidiomycetes in Michigan Agricultural SoilsApplied and Environmental Microbiology, 2006
- Eukaryotic microbes, species recognition and the geographic limits of species: examples from the kingdom FungiPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2006
- UniFrac: a New Phylogenetic Method for Comparing Microbial CommunitiesApplied and Environmental Microbiology, 2005
- Evidence and Implications of Recent Climate Change in Northern Alaska and Other Arctic RegionsClimatic Change, 2005
- Biodiversity, Distributions and Adaptations of Arctic Species in the Context of Environmental ChangeAMBIO, 2004
- Multiple Comparisons of Log-Likelihoods with Applications to Phylogenetic InferenceMolecular Biology and Evolution, 1999