articleApplied and Environmental MicrobiologyFeb 2, 2013BRONZE OA

Improved Selection of Internal Transcribed Spacer-Specific Primers Enables Quantitative, Ultra-High-Throughput Profiling of Fungal Communities

University of California, Davis

PubMed
Indexed incrossrefdoajpubmed

Abstract

Ultra-high-throughput sequencing (HTS) of fungal communities has been restricted by short read lengths and primer amplification bias, slowing the adoption of newer sequencing technologies to fungal community profiling. To address these issues, we evaluated the performance of several common internal transcribed spacer (ITS) primers and designed a novel primer set and work flow for simultaneous quantification and species-level interrogation of fungal consortia. Primer comparison and validation were predicted in silico and by sequencing a "mock community" of mixed yeast species to explore the challenges of amplicon length and amplification bias for reconstructing defined yeast community structures. The amplicon…

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Authors

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Topics & keywords

Keywords
  • Amplicon
  • Amplicon sequencing
  • Biology
  • Primer (cosmetics)
  • Computational biology
  • Internal transcribed spacer
  • In silico
  • Deep sequencing
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