De Novo Long-Read Genome Assembly and Annotation of the Luna Moth (Actias luna) Fully Resolves Repeat-Rich Silk Genes

Author:

Markee Amanda1ORCID,Godfrey Rebekah Keating2,Frandsen Paul B3ORCID,Weng Yi-Ming1,Triant Deborah A4,Kawahara Akito Y1

Affiliation:

1. McGuire Center for Lepidoptera and Biodiversity, Florida Museum of Natural History, University of Florida , Gainesville, FL 32611 , USA

2. Department of Biological Sciences, Florida International University , Miami, FL 33199 , USA

3. Department of Plant and Wildlife Sciences, Brigham Young University , Provo, UT 84602 , USA

4. Department of Biochemistry and Molecular Genetics, University of Virginia , Charlottesville, VA 22908 , USA

Abstract

Abstract We present the first long-read de novo assembly and annotation of the luna moth (Actias luna) and provide the full characterization of heavy chain fibroin (h-fibroin), a long and highly repetitive gene (>20 kb) essential in silk fiber production. There are >160,000 described species of moths and butterflies (Lepidoptera), but only within the last 5 years have we begun to recover high-quality annotated whole genomes across the order that capture h-fibroin. Using PacBio HiFi reads, we produce the first high-quality long-read reference genome for this species. The assembled genome has a length of 532 Mb, a contig N50 of 16.8 Mb, an L50 of 14 contigs, and 99.4% completeness (BUSCO). Our annotation using Bombyx mori protein and A. luna RNAseq evidence captured a total of 20,866 genes at 98.9% completeness with 10,267 functionally annotated proteins and a full-length h-fibroin annotation of 2,679 amino acid residues.

Funder

National Science Foundation

McGuire Center for Lepidoptera and Biodiversity

MGCL

Florida Museum of Natural History

University of Florida Research Opportunity Fund

UF-ROF

SNRE

Publisher

Oxford University Press (OUP)

Reference61 articles.

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