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April 3, 2026Tree Genetics & Genomes0 citationsOpen Access

Long-read Iso-Seq re-annotation of the Pyrus communis ‘Bartlett’ doubled haploid genome

JEJon EilersHZHuiting ZhangCGChristopher Gottschalk

Key Points

  • The aim is to enhance the quality of the ‘Bartlett’ doubled haploid genome annotation using new data and methods.
  • Used a polished version of the doubled haploid genome for re-annotation.
  • Incorporated an Iso-Seq RNA-seq dataset from eleven tissue types.
  • Included RNA-seq evidence from nine public transcriptomes covering ten tissue types.
  • Employed a new annotation pipeline to improve quality metrics.
  • Achieved improved BUSCO and OMArk scores indicating better annotation quality.
  • Increased gene capture and accurate gene model representation.
  • Expanded the number of represented orthogroups and their completeness based on high-quality similarities.

Abstract

As genome sequencing becomes more accessible to non-model species, it is key to ensure high-quality genome annotations exist. These efforts include the re-annotation of important genomes when newer data and software are available. Here, we present a re-annotation of the ‘Bartlett’ doubled haploid (DH) genome, which has served as the reference genome for European pear research. We employed a newly developed annotation pipeline that incorporated a polished version of the DH genome, an Iso-Seq RNA-seq dataset developed by sampling eleven different tissue types from adult trees and in vitro treelets, and RNA-seq evidence from nine publicly available transcriptomes encompassing ten tissue types. The resulting re-annotation exhibited improved BUSCO and OMArk scores, increased gene capture, and improved gene model accuracy. Further, we saw increases in the number of orthogroups represented, as well as improved completeness of those orthogroups, based on Core Orthogroup similarity to recent high-quality pome annotations. Together, the improvements generated from this annotation will enable efficient use for molecular biology, genetic evolution studies, and other downstream applications.

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Cite This Study

Eilers et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ecb5a333a821460d6d7https://doi.org/10.1007/s11295-026-01734-z
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