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Microbial Ecology

Accurate Estimation of Fungal Diversity and Abundance through Improved Lineage-Specific Primers Optimized for Illumina Amplicon Sequencing

D. Lee Taylor, William A. Walters, Niall J. Lennon, James Bochicchio, Andrew Krohn, J. Gregory Caporaso, Taina Pennanen
D. Cullen, Editor
D. Lee Taylor
aDepartment of Biology, University of New Mexico, Albuquerque, New Mexico, USA
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William A. Walters
bDepartment of Molecular Biology and Genetics, Cornell University, Ithaca, New York, USA
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Niall J. Lennon
cBroad Institute of MIT & Harvard, Cambridge, Massachusetts, USA
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James Bochicchio
cBroad Institute of MIT & Harvard, Cambridge, Massachusetts, USA
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Andrew Krohn
dDepartment of Biological Sciences, Northern Arizona University, Flagstaff, Arizona, USA
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J. Gregory Caporaso
dDepartment of Biological Sciences, Northern Arizona University, Flagstaff, Arizona, USA
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Taina Pennanen
eNatural Resources Institute Finland (Luke), Vantaa, Finland
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D. Cullen
USDA Forest Products Laboratory
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DOI: 10.1128/AEM.02576-16
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ABSTRACT

While high-throughput sequencing methods are revolutionizing fungal ecology, recovering accurate estimates of species richness and abundance has proven elusive. We sought to design internal transcribed spacer (ITS) primers and an Illumina protocol that would maximize coverage of the kingdom Fungi while minimizing nontarget eukaryotes. We inspected alignments of the 5.8S and large subunit (LSU) ribosomal genes and evaluated potential primers using PrimerProspector. We tested the resulting primers using tiered-abundance mock communities and five previously characterized soil samples. We recovered operational taxonomic units (OTUs) belonging to all 8 members in both mock communities, despite DNA abundances spanning 3 orders of magnitude. The expected and observed read counts were strongly correlated (r = 0.94 to 0.97). However, several taxa were consistently over- or underrepresented, likely due to variation in rRNA gene copy numbers. The Illumina data resulted in clustering of soil samples identical to that obtained with Sanger sequence clone library data using different primers. Furthermore, the two methods produced distance matrices with a Mantel correlation of 0.92. Nonfungal sequences comprised less than 0.5% of the soil data set, with most attributable to vascular plants. Our results suggest that high-throughput methods can produce fairly accurate estimates of fungal abundances in complex communities. Further improvements might be achieved through corrections for rRNA copy number and utilization of standardized mock communities.

IMPORTANCE Fungi play numerous important roles in the environment. Improvements in sequencing methods are providing revolutionary insights into fungal biodiversity, yet accurate estimates of the number of fungal species (i.e., richness) and their relative abundances in an environmental sample (e.g., soil, roots, water, etc.) remain difficult to obtain. We present improved methods for high-throughput Illumina sequencing of the species-diagnostic fungal ribosomal marker gene that improve the accuracy of richness and abundance estimates. The improvements include new PCR primers and library preparation, validation using a known mock community, and bioinformatic parameter tuning.

FOOTNOTES

    • Received 8 September 2016.
    • Accepted 4 October 2016.
    • Accepted manuscript posted online 7 October 2016.
  • Supplemental material for this article may be found at http://dx.doi.org/10.1128/AEM.02576-16.

  • Copyright © 2016 Taylor et al.

This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license.

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Accurate Estimation of Fungal Diversity and Abundance through Improved Lineage-Specific Primers Optimized for Illumina Amplicon Sequencing
D. Lee Taylor, William A. Walters, Niall J. Lennon, James Bochicchio, Andrew Krohn, J. Gregory Caporaso, Taina Pennanen
Applied and Environmental Microbiology Nov 2016, 82 (24) 7217-7226; DOI: 10.1128/AEM.02576-16

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Accurate Estimation of Fungal Diversity and Abundance through Improved Lineage-Specific Primers Optimized for Illumina Amplicon Sequencing
D. Lee Taylor, William A. Walters, Niall J. Lennon, James Bochicchio, Andrew Krohn, J. Gregory Caporaso, Taina Pennanen
Applied and Environmental Microbiology Nov 2016, 82 (24) 7217-7226; DOI: 10.1128/AEM.02576-16
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