<p>The tea tussock moth, <i>Euproctis pseudoconspersa</i>, is one of the most notorious tea plant pests globally. Herein, we assembled a high-quality chromosome level genome of <i>E. pseudoconspersa</i> using a combination of PacBio HiFi sequencing and Hi-C scaffolding. The genome size was 374.29 Mb and 99.94% of the assembled sequences were anchored onto 23 chromosomes with a contig N50 of 15.29 Mb and scaffold N50 of 16.84 Mb. The BUSCO completeness of the assembly was estimated to be 98.69%. The genome contained 132.74 Mb repeat sequences and 12 371 protein-coding genes. This high-quality genome provides a significant genetic resource for analyses of phylogenetic relationships and moth evolution, contributing to the development of pest management strategies.</p>

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Chromosome level genome assembly of tea tussock moth, Euproctis pseudoconspersa

  • Kai Zhang,
  • Yaqin Long,
  • Hao Qu,
  • Lu Wang,
  • Min Li,
  • Zongxiu Luo,
  • Xiaoming Cai,
  • Lei Bian,
  • Nanxia Fu,
  • Linbo Chen,
  • Naiyong Liu,
  • Chunli Xiu,
  • Zhaoqun Li

摘要

The tea tussock moth, Euproctis pseudoconspersa, is one of the most notorious tea plant pests globally. Herein, we assembled a high-quality chromosome level genome of E. pseudoconspersa using a combination of PacBio HiFi sequencing and Hi-C scaffolding. The genome size was 374.29 Mb and 99.94% of the assembled sequences were anchored onto 23 chromosomes with a contig N50 of 15.29 Mb and scaffold N50 of 16.84 Mb. The BUSCO completeness of the assembly was estimated to be 98.69%. The genome contained 132.74 Mb repeat sequences and 12 371 protein-coding genes. This high-quality genome provides a significant genetic resource for analyses of phylogenetic relationships and moth evolution, contributing to the development of pest management strategies.