Toward high‐quality genomes: Standards, challenges, and strategies for assembly and annotation

Abstract Genomes provide the fundamental basis for understanding biological systems. Owing to rapid advances in sequencing technologies and assembly methods, the number of sequenced genomes has increased substantially. A high‐quality genome should have high continuity, completeness, and accuracy in its assembly, along with comprehensive and precise annotations of protein‐coding genes and other functional genomic elements. However, it is still difficult to fully achieve these standards due to technical limitations and the inherent genome complexity, especially for plant genomes. This review summarizes current major sequencing technologies and strategies for genome assembly and annotation, elucidates the major challenges encountered in the pursuit of truly high‐quality genomes, and provides practical strategies for meeting high‐quality genome standards. Finally, we highlight several emerging opportunities and promising research directions across the genomic landscape.

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Publication Details

Journal
Journal of Systematics and Evolution
Published
2026-09-16
DOI
https://doi.org/10.1111/jse.70118
Primary Topic
Genomics and Phylogenetic Studies
Type
article
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article

Toward high‐quality genomes: Standards, challenges, and strategies for assembly and annotation

Yuannian Jiao, Yu Wang, Xin Yi, Kunpeng Li
Journal of Systematics and Evolution
Genomics and Phylogenetic Studies
article

Toward high‐quality genomes: Standards, challenges, and strategies for assembly and annotation

Yuannian Jiao, Yu Wang, Xin Yi, Kunpeng Li
article en

Abstract

Abstract Genomes provide the fundamental basis for understanding biological systems. Owing to rapid advances in sequencing technologies and assembly methods, the number of sequenced genomes has increased substantially. A high‐quality genome should have high continuity, completeness, and accuracy in its assembly, along with comprehensive and precise annotations of protein‐coding genes and other functional genomic elements. However, it is still difficult to fully achieve these standards due to technical limitations and the inherent genome complexity, especially for plant genomes. This review summarizes current major sequencing technologies and strategies for genome assembly and annotation, elucidates the major challenges encountered in the pursuit of truly high‐quality genomes, and provides practical strategies for meeting high‐quality genome standards. Finally, we highlight several emerging opportunities and promising research directions across the genomic landscape.

Journal of Systematics and Evolution
Beijing Botanical Garden (CN), Institute of Botany of the Slovak Academy of Sciences (SK), State Key Laboratory of Plant Genomics (CN), Institute of Botany (CN), University of Chinese Academy of Sciences (CN), China National Botanical Garden
Openalex Percentile: Top 18%
Genomics and Phylogenetic Studies
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Toward high‐quality genomes: Standards, challenges, and strategies for assembly and annotation — Yuannian Jiao, Yu Wang, et al. · Journal of Systematics and Evolution (2026) | TGRS Research Map | TGRS