Genome Assembly of the Cold-Tolerant Leaf Beetle Gonioctena quinquepunctata, an Important Resource for Studying Its Evolution and Reproductive Barriers between Species

Author:

Lukicheva Svitlana1ORCID,Flot Jean-François1,Mardulyn Patrick1

Affiliation:

1. Evolutionary Biology and Ecology & Interuniversity Institute of Bioinformatics in Brussels – (IB), Université Libre de Bruxelles (ULB), Brussels, Belgium

Abstract

Abstract Coleoptera is the most species-rich insect order, yet is currently underrepresented in genomic databases. An assembly was generated for ca. 1.7-Gb genome of the leaf beetle Gonioctena quinquepunctata by first assembling long-sequence reads (Oxford Nanopore; ± 27-fold coverage) and subsequently polishing the resulting assembly with short sequence reads (Illumina; ± 85-fold coverage). The unusually large size (most Coleoptera species are associated with a reported size below 1 Gb) was at least partially attributed to the presence of a large fraction of repeated elements (73.8%). The final assembly was characterized by an N50 length of 432 kb and a BUSCO score of 95.5%. The heterozygosity rate was ±0.6%. Automated genome annotation informed by RNA-Seq resulted in 40,568 predicted proteins, which is much larger than the typical range 17,000–23,000 predicted for other Coleoptera. However, no evidence of a genome duplication was detected. This new reference genome will contribute to our understanding of genetic variation in the Coleoptera. Among others, it will also allow exploring reproductive barriers between species, investigating introgression in the nuclear genome, and identifying genes involved in resistance to extreme climate conditions.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

Reference56 articles.

1. Basic local alignment search tool;Altschul;J Mol Biol,1990

2. Repbase update, a database of repetitive elements in eukaryotic genomes;Bao;Mob DNA,2015

3. Genome assembly of the ragweed leaf beetle: a step forward to better predict rapid evolution of a weed biocontrol agent to environmental novelties;Bouchemousse;Genome Biol Evol,2020

4. BRAKER2: automatic eukaryotic genome annotation with GeneMark-EP+ and AUGUSTUS supported by a protein database;Brůna;NAR Genom Bioinform,2021

5. Fast and sensitive protein alignment using DIAMOND;Buchfink;Nat Methods,2015

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