Affiliation:
1. Department of Biological Sciences, Lehigh University, Bethlehem, PA, USA
2. Biology Department, Temple University, Philadelphia, PA, USA
Abstract
Like their shallow-water counterparts, cold-water corals create reefs that support highly diverse communities, and these structures are subject to numerous anthropogenic threats. Here, we present the genome assembly of Lophelia pertusa from the southeastern coast of the USA, the first one for a deep-sea scleractinian coral species. We generated PacBio continuous long reads data for an initial assembly and proximity ligation data for scaffolding. The assembly was annotated using evidence from transcripts, proteins, and ab initio gene model predictions. This assembly is comparable to high-quality reference genomes from shallow-water scleractinian corals. The assembly comprises 2,858 scaffolds (N50 1.6 Mbp) and has a size of 556.9 Mbp. Approximately 57% of the genome comprises repetitive elements and 34% of coding DNA. We predicted 41,089 genes, including 91.1% of complete metazoan orthologs. This assembly will facilitate investigations into the ecology of this species and the evolution of deep-sea corals.
Funder
Bureau of Ocean Energy Management
NOAA Office of Ocean Exploration and Research
NOAA Deep-Sea Coral Research and Technology Program
Institute for Genomics and Evolutionary Medicine
National Academies of Sciences, Engineering, and Medicine Gulf Research Program, Early-Career Fellowship
Subject
General Agricultural and Biological Sciences
Cited by
1 articles.
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