De novo phasing resolves haplotype sequences in complex plant genomes.

Plant Biotechnol J

Department of Environmental Horticulture, University of Seoul, Seoul, Korea.

Published: June 2022

AI Article Synopsis

  • - Genome phasing is a new method that creates detailed genetic assemblies by distinguishing between different versions of genes (haplotypes), which traditional methods often ignore, leading to mixed genomic results.
  • - This review examines popular phasing tools like TrioCanu, FALCON-Phase, and ALLHiC and highlights the significant genetic differences revealed by haplotype-resolved assemblies, which can affect plant characteristics such as gene expression and chromosomal arrangements.
  • - The authors also discuss the current limitations of genome phasing techniques and propose future research directions to enhance their effectiveness, making it easier for scientists to study complex plant genomes.

Article Abstract

Genome phasing is a recently developed assembly method that separates heterozygous eukaryotic genomic regions and builds haplotype-resolved assemblies. Because differences between haplotypes are ignored in most published de novo genomes, assemblies are available as consensus genomes consisting of haplotype mixtures, thus increasing the need for genome phasing. Here, we review the operating principles and characteristics of several freely available and widely used phasing tools (TrioCanu, FALCON-Phase, and ALLHiC). An examination of downstream analyses using haplotype-resolved genome assemblies in plants indicated significant differences among haplotypes regarding chromosomal rearrangements, sequence insertions, and expression of specific alleles that contribute to the acquisition of the biological characteristics of plant species. Finally, we suggest directions to solve addressing limitations of current genome-phasing methods. This review provides insights into the current progress, limitations, and future directions of de novo genome phasing, which will enable researchers to easily access and utilize genome-phasing in studies involving highly heterozygous complex plant genomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129073PMC
http://dx.doi.org/10.1111/pbi.13815DOI Listing

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