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Updated: Apr 16, 2026

High-throughput Physical Mapping of Chromosomes using Automated in situ Hybridization
Published on: June 28, 2012
The chromosome-level genome assembly of Sitobion avenae Fabricius (Hemiptera: Aphididae)
Jingting Wang1, Jiaqi Zhang1, Chuting Shi1
1Key Laboratory of Biohazard Monitoring and Green Prevention and Control for Artificial Grassland, Ministry of Agriculture and Rural Affairs, Institute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, 010010, China.
Abstract:
Sitobion avenae (Fabricius), a major pest of cereal crops worldwide, causes significant damage on agricultural production. However, the lack of high-quality genomes has limited in-depth studies on its biology and effective management strategies. Here, we report a chromosome-level genome assembly of S. avenae, generated by combining PacBio long-read sequencing, Illumina short-read sequencing, and Hi-C scaffolding. The assembled genome has a size of 421 Mb, with 99.97% of sequences anchored to nine pseudochromosomes. It comprises only 11 scaffolds, exhibits the scaffold N50 and contig N50 of 39.84 Mb and 28.00 MB, and achieves a BUSCO completeness of 97.30%. Repetitive elements account for 37.40% (157.66 Mb) of the assembly. We annotated 15,369 protein-coding genes and 1,188 non-coding RNAs. This high-quality genome of S. avenae serves as a valuable genomic resource for advancing research on pest management and host adaptation mechanisms in this aphid species.
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