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SubPhaser: a robust allopolyploid subgenome phasing method based on subgenome-specific k-mers. | LitMetric

SubPhaser: a robust allopolyploid subgenome phasing method based on subgenome-specific k-mers.

New Phytol

Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, College of Biological Sciences and Technology, Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, National Engineering Research Center of Tree Breeding and Ecological Restoration, Ministry of Education, Beijing Forestry University, Beijing, 100083, China.

Published: July 2022

AI Article Synopsis

  • Advanced sequencing technology has allowed researchers to characterize complex genomes of polyploid plants, yet many lack known diploid ancestors, complicating the study of their evolution.
  • The new algorithm, SubPhaser, identifies subgenome-specific sequences and accurately phases chromosomes for neoallopolyploid and homoploid hybrid plants, like wheat.
  • While effective for these species, SubPhaser struggles with autopolyploids like alfalfa, demonstrating its utility in understanding subgenome phasing and genome evolution without relying on ancestral data.

Article Abstract

With advanced sequencing technology, dozens of complex polyploid plant genomes have been characterized. However, for many polyploid species, their diploid ancestors are unknown or extinct, making it impossible to unravel the subgenomes and genome evolution directly. We developed a novel subgenome-phasing algorithm, SubPhaser, specifically designed for a neoallopolyploid or a homoploid hybrid. SubPhaser first searches for the subgenome-specific sequence (k-mer), then assigns homoeologous chromosomes into subgenomes, and further provides tools to annotate and investigate specific sequences. SubPhaser works well on neoallopolyploids and homoploid hybrids containing subgenome-specific sequences like wheat, but fails on autopolyploids lacking subgenome-specific sequences like alfalfa, indicating that SubPhaser can phase neoallopolyploid/homoploid hybrids with high accuracy, sensitivity and performance. This highly accurate, highly sensitive, ancestral data free chromosome phasing algorithm, SubPhaser, offers significant application value for subgenome phasing in neoallopolyploids and homoploid hybrids, and for the subsequent exploration of genome evolution and related genetic/epigenetic mechanisms.

Download full-text PDF

Source
http://dx.doi.org/10.1111/nph.18173DOI Listing

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