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May 2, 20260 citations

Phylogenetic Placement Using SCAMPP and Batch-SCAMPP.

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EWEleanor WedellCSChengze ShenTWTandy Warnow

Key Points

  • The aim is to explore SCAMPP and Batch-SCAMPP methods for enhancing phylogenetic placement in large trees.
  • Described SCAMPP and Batch-SCAMPP methods for phylogenetic placement.
  • Applied methods in metagenomics and tree growth.
  • Provided availability details on GitHub and PyPI.
  • SCAMPP and Batch-SCAMPP significantly improve scalability of phylogenetic placement techniques.
  • Both methods maintain high accuracy in taxon identification and abundance profiling.

Abstract

Phylogenetic placement is the problem of adding sequences to an existing phylogenetic tree. While many techniques have been developed for this problem, methods based on optimizing maximum likelihood, such as pplacer and EPA-ng, have been shown to provide the highest accuracy. Unfortunately, these methods are limited to at most moderately large placement trees due to their design. SCAMPP and Batch-SCAMPP are two methods that have been developed to improve the scalability of both pplacer and EPA-ng to very large trees, while maintaining high accuracy. Here, we describe these methods and show how to use them in two applications: metagenomics, including taxon identification and abundance profiling, and incrementally growing large trees. SCAMPP and Batch-SCAMPP are available in open-source form on GitHub and PyPI.

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Cite This Study

Wedell et al. (2026) studied this question.

synapsesocial.com/papers/69f594e171405d493afffc3dhttps://doi.org/10.1007/978-1-0716-4836-0_3
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